{"690910":{"#nid":"690910","#data":{"type":"news","title":"What It Takes to Deliver a Tech\u2011Heavy World Cup","body":[{"value":"\u003Cp\u003EWith an estimated 500,000 visitors coming to the eight games in Atlanta over the next two months, the 2026 World Cup will be one of the biggest sporting events to come to the city since the 1996 Summer Olympic Games.\u003C\/p\u003E\u003Cp\u003EFIFA President Gianni Infantino likened the scale of each game to that of a Super Bowl. The success of a tournament that large will rely heavily on technology, affecting everything from the players on the pitch, all the way to viewers at home.\u003C\/p\u003E\u003Cp\u003EOn top of the state-of-the-art technology used at many large events, this World Cup will also see the debut of new technology. At the center of much of it will be electrical and computer engineering.\u003C\/p\u003E\u003Cp\u003EExperts from the Georgia Tech School of Electrical and Computer Engineering (ECE) weigh in on how the field is enabling the technology behind the world\u2019s largest sporting event.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2026\/06\/what-it-takes-deliver-tech-heavy-world-cup\u0022\u003ERead Full Story on the ECE News Page\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cem\u003EWith hundreds of thousands of people attending the 104 World Cup games over the next 39 days and billions more watching at home, an immense amount of technology will be needed to ensure a seamless, safe, and enjoyable experience. Experts from ECE explain how electrical and computer engineering are facilitating some of the tournament\u0027s newest and most crucial technology.\u003C\/em\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"With hundreds of thousands of people attending the 104 World Cup games, Georgia Tech experts explain  how electrical and computer engineering are facilitating some of the tournament\u0027s newest and most crucial technology."}],"uid":"36413","created_gmt":"2026-06-24 21:24:12","changed_gmt":"2026-06-24 21:28:36","author":"pdevarajan3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-06-24T00:00:00-04:00","iso_date":"2026-06-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"680512":{"id":"680512","type":"image","title":"What-It-Takes-to-Deliver-a-Tech-Heavy-World-Cup.jpeg","body":null,"created":"1782336352","gmt_created":"2026-06-24 21:25:52","changed":"1782336420","gmt_changed":"2026-06-24 21:27:00","alt":"Stock image that shows a soccer stadium as the center of an AI chip design","file":{"fid":"264785","name":"What-It-Takes-to-Deliver-a-Tech-Heavy-World-Cup.jpeg","image_path":"\/sites\/default\/files\/2026\/06\/24\/What-It-Takes-to-Deliver-a-Tech-Heavy-World-Cup.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/06\/24\/What-It-Takes-to-Deliver-a-Tech-Heavy-World-Cup.jpeg","mime":"image\/jpeg","size":272785,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/06\/24\/What-It-Takes-to-Deliver-a-Tech-Heavy-World-Cup.jpeg?itok=EGonBxq9"}}},"media_ids":["680512"],"related_links":[{"url":"https:\/\/ece.gatech.edu\/news\/2026\/06\/what-it-takes-deliver-tech-heavy-world-cup","title":"Read Full Story on ECE News Page"}],"groups":[{"id":"1188","name":"Research Horizons"},{"id":"367481","name":"SEI Energy"},{"id":"1280","name":"Strategic Energy Institute"}],"categories":[{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"144","name":"Energy"},{"id":"151","name":"Policy, Social Sciences, and Liberal Arts"},{"id":"135","name":"Research"}],"keywords":[{"id":"186858","name":"go-sei"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"145171","name":"Cybersecurity"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39511","name":"Public Service, Leadership, and Policy"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cdiv\u003EZachary Winiecki\u003C\/div\u003E\u003Cdiv\u003EDan Watson, Georgia Tech ECE\u003C\/div\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"667608":{"#nid":"667608","#data":{"type":"news","title":"Georgia Tech Addressing the Nation\u2019s Call for Semiconductors","body":[{"value":"\u003Cp\u003ESemiconductors, or microchips, are vital to life in the modern world. They\u2019re used in the microwave you heated your breakfast in this morning, the car you drove to work, the mobile phone you shouldn\u2019t use while driving, the bank ATM you visited, and the screened device you\u2019re reading this story on.\u003C\/p\u003E\u003Cp\u003EThey\u2019re in our TVs, refrigerators, and washing machines, helping us live comfortable lives. They also help us stay alive as part of the medical network, used in pacemakers, blood pressure monitors, and MRI machines, among other things. Also, our national economic and defense systems rely on them. Basically, semiconductors control and manage the flow of information in the machinery that keeps the world going.\u003C\/p\u003E\u003Cp\u003EAnd right now, at Georgia Tech, researchers are working to innovate chip technology to ensure that U.S. semiconductor development is globally competitive, reliable, sustainable, and resilient, today and in the future.\u003C\/p\u003E\u003Cp\u003E\u201cIf you look at semiconductors, or the whole area of computing, it spans across Georgia Tech \u2014 across many different schools and disciplines,\u201d said \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychudhury\u003C\/a\u003E, professor and Steve W. Chaddick Chair in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering (ECE)\u003C\/a\u003E. \u201cStarting with physics and chemistry, where we essentially learn how different types of materials will react, to materials science and engineering, to electrical engineering and computer engineering, to computer science.\u201d\u003C\/p\u003E\u003Cp\u003EIt\u0027s a diverse, multidisciplinary enterprise from bottom to top, Raychudhury noted. And there is still plenty of room at the bottom, as theoretical physicist Richard P. Feynman famously said more than 60 years ago, predicting that one day we\u2019d be making things at the atomic level. We are. It\u2019s a familiar realm to \u003Ca href=\u0022https:\/\/www.cse.gatech.edu\/people\/victor-fung\u0022\u003EVictor Fung\u003C\/a\u003E and his lab, where they are designing new materials for semiconductors from the ground up, atom by atom.\u003C\/p\u003E\u003Cp\u003E\u201cWe are interested in exploring how to translate the latest advances in AI and machine learning to aid in accelerating computational materials simulations and materials discovery,\u201d said Fung, assistant professor in the \u003Ca href=\u0022https:\/\/www.cse.gatech.edu\/\u0022\u003ESchool of Computational Science\u003C\/a\u003E. \u201cWe\u2019ve been developing methods which can accurately predict a wide range of materials\u2019 properties, to greatly facilitate high-throughput materials screening.\u201d\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.fung-group.org\/\u0022\u003EFung\u2019s lab\u003C\/a\u003E is using AI to discover previously unstudied materials with the electronic properties to build into chips. This approach to creating \u201cdesigner\u201d semiconductors would be significantly faster and cover more of the materials space than current methods.\u003C\/p\u003E\u003Ch3\u003E\u003Cstrong\u003EImproving the Landscape\u003C\/strong\u003E\u003C\/h3\u003E\u003Cp\u003ESmaller, more efficient, and more powerful are all part of the constantly evolving landscape in semiconductor research and development. It\u2019s a very expensive landscape. While many chips are about the size of a fingernail, they are among the most complex human-made objects on Earth. Just building a semiconductor fabrication factory costs billions of dollars.\u003C\/p\u003E\u003Cp\u003EFor a chemical engineer like \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/people\/michael-filler\u0022\u003EMichael Filler\u003C\/a\u003E, that sounds like opportunity.\u003C\/p\u003E\u003Cp\u003E\u201cChemical engineers think about how we produce products on a massive scale,\u201d said Filler, associate professor in the \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/\u0022\u003ESchool of Chemical and Biomolecular Engineering\u003C\/a\u003E and associate director of the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology (IEN)\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EFiller, whose research involves the growing of semiconductor components, like transistors, from seed particles, is aiming to help democratize the process of chip development, bringing down the cost substantially while maintaining performance. In a not too distant future, that could mean an individual at home printing a chip on a machine similar to a 3D printer.\u003C\/p\u003E\u003Cp\u003E\u201cImagine a laser printer that can literally spit out custom electronics in a matter of minutes,\u201d Filler said. \u201cWe\u2019re big believers in the individual\u2019s ability to be creative and know what they want to build for their applications. Ultimately, we\u2019re interested in giving makers and prototypers opportunities to customize electronics.\u201d\u003C\/p\u003E\u003Cp\u003EHe\u2019s in the right place for the far-reaching research he has in mind, adding, \u201cWe are so blessed with great facilities at Georgia Tech. It would be hard to imagine working somewhere else, because very few places have the diversity and quality of tooling we have here.\u201d\u003C\/p\u003E\u003Cp\u003EIEN, which facilitates much of the semiconductor research at Georgia Tech, is based in the Marcus Nanotechnology Building, with its state-of-the-art micro\/nano fabrication facilities such as the shared cleanroom space and a laser machine lab for micromachining.\u003C\/p\u003E\u003Cp\u003EBut it is the range of expertise and creativity among faculty and students who are making IEN and Georgia Tech a thought leader in semiconductor research. This is evidenced by Tech\u2019s recent grant of \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-receives-65-million-grant-semiconductor-research-corporation-jump-20-centers\u0022\u003E$65.7 million from the Semiconductor Research Corporation and the Defense Research Projects Agency to launch two new interdisciplinary research centers.\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003EEvents like \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\/GT-chips-day\u0022\u003EGeorgia Tech Chip Day\u003C\/a\u003E (May 2) and \u003Ca href=\u0022https:\/\/www.nanowireweek2023.info\/\u0022\u003ENanowire Week\u003C\/a\u003E, an international gathering happening in Atlanta in October, also speak to Tech\u2019s growing influence in this area.\u003C\/p\u003E\u003Ch3\u003E\u003Cstrong\u003EAnswering the Call\u003C\/strong\u003E\u003C\/h3\u003E\u003Cp\u003EThe Covid-19 pandemic clarified just how difficult it can be to make more chips. A shortage of semiconductors affected the supply of phones, computers, and other commonly used items during the global shutdown. Increased demand, depleted reserves, and too few manufacturing plants and workers significantly crippled the supply chain.\u003C\/p\u003E\u003Cp\u003E\u201cThe high degree of geographic concentration in certain parts of the semiconductor supply chain has recently created a heightened risk of supply interruptions,\u201d said \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/users\/chelsea-white\u0022\u003EChip White\u003C\/a\u003E, Schneider National Chair in Transportation and Logistics and professor in the \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/\u0022\u003EH. Milton Stewart School of Industrial and Systems Engineering (ISyE)\u003C\/a\u003E. \u201cSuch interruptions and resulting wild fluctuations in semiconductor demand can threaten the nation\u2019s public health, defense, and economic security.\u201d\u003C\/p\u003E\u003Cp\u003EWith that in mind, translational supply chain research is going on in several places on campus, White said, including the \u003Ca href=\u0022https:\/\/www.scl.gatech.edu\/\u0022\u003ESupply Chain and Logistics Institute\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/www.ai4opt.org\/\u0022\u003ENSF AI Research Institute for Advances in Optimization\u003C\/a\u003E. White and his colleagues are developing software platforms for stress testing manufacturing supply chains. The goal is to identify vulnerabilities and risk mitigation procedures to design and operate next generation supply chains for critical industries such as the semiconductor industry, to improve global competitiveness and strike a balance between market forces and national security.\u003C\/p\u003E\u003Cp\u003EIn an effort to address and feed the next generation demand for chips, the Biden administration recently launched a massive effort to outcompete China in semiconductor manufacturing, offering $39 billion in funding incentives for companies seeking to build plants in the U.S.\u003C\/p\u003E\u003Cp\u003EAnother related area of importance in the ongoing development of semiconductors is growing the workforce of the future, and that includes a new wave of researchers. This is a role that \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/jennifer-olson-hasler\u0022\u003EJennifer Hasler \u003C\/a\u003Etakes seriously.\u003C\/p\u003E\u003Cp\u003E\u201cI have a strong interest and belief in mentoring,\u201d said Hasler, ECE professor and founder of the \u003Ca href=\u0022https:\/\/hasler.ece.gatech.edu\/\u0022\u003EIntegrated Computational Electronics lab\u003C\/a\u003E at Georgia Tech. She\u2019s proven, theoretically at least, that the technology already exists to build a silicon-based version of the human cerebral cortex (which would cost billions of dollars to design and build), but one of her favorite roles is working with new, young faculty.\u003C\/p\u003E\u003Cp\u003E\u201cIt\u2019s a personal thing for me, but it\u2019s one of the coolest things I\u2019m involved in,\u201d she said. \u201cWhen they come to Georgia Tech, they see how big this place is, bigger than a company. I like to say to them, \u2018Let\u2019s calm down, take a breath, you\u2019re good, so let\u2019s go make some cool stuff. Let\u2019s get some momentum going.\u2019\u201d\u003C\/p\u003E\u003Cp\u003EFor Raychowdhury, director of the new \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/cocosys\/#:~:text=COCOSYS%20aims%20to%20enable%20the,and%20collective%20and%20collaborative%20intelligence.\u0022\u003ECenter for the Co-Design of Cognitive Systems\u003C\/a\u003E (part of the JUMP 2.0 program), developing the skilled workforce of the future means answering the call of the nation.\u003C\/p\u003E\u003Cp\u003E\u201cThis is one of the largest ECE departments in the country, with many, many talented students,\u201d he said. \u201cAnd given the need and shortage of skilled professionals in this particular area, I think it\u2019s critical for us to create that kind of pipeline.\u201d Last year, ECE undergraduate students started taking a new, two-semester course, sponsored by Apple, in which they actually build microprocessors from scratch.\u003C\/p\u003E\u003Cp\u003E\u201cThis is completely new,\u201d Raychowdhury said. \u201cIt\u2019s expensive to offer this course, but we plan to keep doing it and we\u2019re in conversations with other companies that want to invest in workforce development. So, in addition to doing fantastic research, we want to be sensitive to the needs of the country and a new generation.\u201d\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech\u0027s multidisciplinary semiconductor researchers working to innovate chip technology to ensure U.S. competitiveness\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech\u0027s multidisciplinary semiconductor researchers working to innovate chip technology to ensure U.S. competitiveness"}],"uid":"28153","created_gmt":"2023-05-02 17:25:16","changed_gmt":"2026-06-03 19:07:22","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-02T00:00:00-04:00","iso_date":"2023-05-02T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670757":{"id":"670757","type":"image","title":"IEN cleanroom staff member holding a wafer","body":null,"created":"1683294311","gmt_created":"2023-05-05 13:45:11","changed":"1683294366","gmt_changed":"2023-05-05 13:46:06","alt":"Cleanroom worker holding a wafer","file":{"fid":"253680","name":"IEN-person-wafer.png","image_path":"\/sites\/default\/files\/2023\/05\/05\/IEN-person-wafer.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/05\/IEN-person-wafer.png","mime":"image\/png","size":311467,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/05\/IEN-person-wafer.png?itok=KpXbVZbt"}},"670713":{"id":"670713","type":"image","title":"Semiconductor Researchers","body":"\u003Cp\u003ELeft to right: Arijit Raychowdhury, Victor Fung, Jennifer Hasler, Michael Filler, Chip White\u003C\/p\u003E\r\n","created":"1683042732","gmt_created":"2023-05-02 15:52:12","changed":"1683042828","gmt_changed":"2023-05-02 15:53:48","alt":"Semiconductor researchers","file":{"fid":"253625","name":"semiconductor team.jpg","image_path":"\/sites\/default\/files\/2023\/05\/02\/semiconductor%20team.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/02\/semiconductor%20team.jpg","mime":"image\/jpeg","size":481819,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/02\/semiconductor%20team.jpg?itok=OfU7eiUh"}}},"media_ids":["670757","670713"],"related_files":{"253625":{"fid":null,"name":"Semiconductor Researchers","file_path":"\/sites\/default\/files\/2023\/05\/02\/semiconductor%20team.jpg","file_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/02\/semiconductor%20team.jpg","mime":"image\/jpeg","size":481819,"description":"\u003Cp\u003ELeft to right: Arijit Raychowdhury, Victor Fung, Jennifer Hasler, Michael Filler, Chip White\u003C\/p\u003E\r\n"}},"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EWriter: \u003Ca href=\u0022jerry.grillo@ibb.gatech.edu\u0022\u003EJerry Grillo\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["jerry.grillo@ibb.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"690279":{"#nid":"690279","#data":{"type":"news","title":"Soft, Skin-Like Nasal Patch Could Transform Sleep Monitoring","body":[{"value":"\u003Cp\u003ESleep-related breathing disorders, including sleep apnea, affect millions of people worldwide but frequently go undiagnosed. One major barrier to diagnosis is the test itself.\u003C\/p\u003E\u003Cp\u003ETraditional sleep monitoring systems often rely on bulky equipment and nasal cannulas \u2014 small tubes inserted into the nostrils to measure airflow. While effective, these systems can be uncomfortable, intrusive, and difficult to tolerate overnight, limiting their use for long-term monitoring at home.\u003C\/p\u003E\u003Cp\u003ENow, researchers led by \u003Ca href=\u0022https:\/\/me.gatech.edu\/faculty\/yeo\u0022\u003E\u003Cstrong\u003EW. Hong Yeo\u003C\/strong\u003E\u003C\/a\u003E, Peterson Professor in Pediatric Research at the \u003Ca href=\u0022https:\/\/me.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/strong\u003E\u003C\/a\u003E, have developed a soft, wireless nasal patch that could offer a more comfortable alternative for monitoring breathing during sleep.\u003C\/p\u003E\u003Cp\u003EThe technology, described in a recent study published in \u003Ca href=\u0022https:\/\/nam12.safelinks.protection.outlook.com\/?url=https%3A%2F%2Fwww.pnas.org%2Fdoi%2F10.1073%2Fpnas.2605960123\u0026amp;data=05%7C02%7Ctracie.troha%40me.gatech.edu%7Cce0da602964f459c097e08deb13aa914%7C482198bbae7b4b258b7a6d7f32faa083%7C1%7C0%7C639143062664873257%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C\u0026amp;sdata=7v2YqFZdB%2F1EBX3YLD0J2SiAQNkex92qZDCERO1qR7E%3D\u0026amp;reserved=0\u0022\u003E\u003Cstrong\u003EProceedings of the National Academy of Sciences (PNAS)\u003C\/strong\u003E\u003C\/a\u003E, uses ultrathin, skin-like wearable electronics to detect subtle movements of the nose caused by breathing without tubes, wires, or direct airflow measurements.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/news\/soft-skin-nasal-patch-could-transform-sleep-monitoring\u0022\u003ERead the full story on the George W. Woodruff School of Mechanical Engineering website\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ESleep-related breathing disorders, including sleep apnea, affect millions of people worldwide but frequently go undiagnosed. One major barrier to diagnosis is the test itself.\u003C\/p\u003E\u003Cp\u003ETraditional sleep monitoring systems often rely on bulky equipment and nasal cannulas \u2014 small tubes inserted into the nostrils to measure airflow. While effective, these systems can be uncomfortable, intrusive, and difficult to tolerate overnight, limiting their use for long-term monitoring at home.\u003C\/p\u003E\u003Cp\u003ENow, researchers led by W. Hong Yeo, Peterson Professor in Pediatric Research at the George W. Woodruff School of Mechanical Engineering, have developed a soft, wireless nasal patch that could offer a more comfortable alternative for monitoring breathing during sleep.\u003C\/p\u003E\u003Cp\u003EThe technology, described in a recent study published in Proceedings of the National Academy of Sciences (PNAS), uses ultrathin, skin-like wearable electronics to detect subtle movements of the nose caused by breathing without tubes, wires, or direct airflow measurements.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Researchers led by W. Hong Yeo, Peterson Professor in Pediatric Research at the Woodruff School, have developed a soft, wireless nasal patch that could offer a more comfortable alternative for monitoring breathing during sleep."}],"uid":"35851","created_gmt":"2026-05-14 21:46:23","changed_gmt":"2026-05-26 15:20:24","author":"aritchie6","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-05-14T00:00:00-04:00","iso_date":"2026-05-14T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"680281":{"id":"680281","type":"image","title":"Figure-5.jpg","body":null,"created":"1778795216","gmt_created":"2026-05-14 21:46:56","changed":"1778795216","gmt_changed":"2026-05-14 21:46:56","alt":"Soft, wireless nasal patch","file":{"fid":"264528","name":"Figure-5.jpg","image_path":"\/sites\/default\/files\/2026\/05\/14\/Figure-5.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/05\/14\/Figure-5.jpg","mime":"image\/jpeg","size":98315,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/05\/14\/Figure-5.jpg?itok=P93vxp6D"}}},"media_ids":["680281"],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187423","name":"go-bio"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:ashley.ritchie@me.gatech.edu\u0022\u003EAshley Ritchie\u003C\/a\u003E\u003Cbr\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"690138":{"#nid":"690138","#data":{"type":"news","title":"From Campus Learning to Industry Leadership","body":[{"value":"\u003Cp\u003EThe most unassuming actions can have the greatest outcomes. For Brandon Harrington, CmpE 2005, M.S. CmpE 2008, walking through the doors of the Pettit Microelectronics Building, then home to the Microelectronics Research Center (MiRC), during his freshman year 25 years ago changed the course of his career.\u003C\/p\u003E\u003Cp\u003EEach week on his way to the Howey Physics Building, Harrington passed the MiRC, wondering what happened behind its doors.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cOne day I got the courage to walk in. I went to the front desk and I asked, \u2018Hey, do you have any jobs for freshmen?\u2019\u201d Harrington recalled. \u201cI was pointed to Bob Rose, so I walked down and had a brief conversation with him where he hired me on the spot.\u201d\u003C\/p\u003E\u003Cp\u003EThat moment\u2014walking in with curiosity and leaving with a job\u2014 shifted Harrington\u2019s career path from pursuing a bachelor\u2019s degree in computer engineering and working in electronic design automation (EDA) to a life in the laboratory advancing microelectronics research.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EWhen he began working for the MiRC in the early 2000s, the cleanroom facilities had only three full-time employees. The small staff gave Harrington opportunities to contribute. He started with smaller tasks, from changing pump oil to sorting nuts and bolts, but his dedication quickly led to greater responsibility.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EAt the time, \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/people\/gary-spinner\u0022\u003EGary Spinner\u003C\/a\u003E, director of cleanroom operations for the \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/\u0022\u003EInstitute for Matter and Systems\u003C\/a\u003E (IMS), played a key role in mentoring students and expanding access to the Institute\u2019s microelectronics facilities. Known for his hands-on approach and commitment to student development, Spinner helped guide the growth of cleanroom operations and the people who worked within them.\u003C\/p\u003E\u003Cp\u003E\u201cGary took note of me and said, \u2018Brandon, please join the co-op program,\u2019\u201d Harrington said. \u201cI quickly found my way into the cleanrooms, and from that point on, I touched basically every system, whether it was the billing software, the access control system, or the toxic gas monitoring.\u201d\u003C\/p\u003E\u003Cp\u003EAs an undergraduate co-op, Harrington advanced through the MiRC, training graduate researchers on tools and developing new or modifying existing efficiency systems. By the time he earned his undergraduate degree, he had accumulated extensive experience in the cleanrooms and graduated with an offer to be a full-time electrical engineer for the MiRC while pursuing his master\u2019s degree.\u003C\/p\u003E\u003Cp\u003EAn unexpected outcome of this role was a friendship that led him to a Ph.D. in electrical engineering. While working full-time, Harrington became good friends with then-Ph.D. student Reza Abdolvand. After Abdolvand joined Oklahoma State University as a faculty member, he asked Harrington if he would come help him start his research group.\u003C\/p\u003E\u003Cp\u003E\u201cI was really good friends with Reza and I thought this was a way I could get his career going,\u201d Harrington said. \u201cSo I left Georgia Tech, around 2008, to pursue my PhD from Oklahoma State.\u201d\u003C\/p\u003E\u003Cp\u003EToday, Harrington supports the industry in a variety of ways, providing consultation for startups and large corporations alike. His work includes early feasibility studies, prototype development, productization, transfer to volume-production foundries, and yield improvement activities.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EHe is now the director of microelectromechanical systems (MEMS) development at \u003Ca href=\u0022https:\/\/www.amfitzgerald.com\/home\/\u0022\u003EAMFitzgerald\u003C\/a\u003E, where he leads a team delivering innovative solutions to clients\u2014all because he followed his curiosity.\u003C\/p\u003E\u003Cp\u003EHarrington\u2019s journey reflects the broader impact of Georgia Tech\u2019s cleanroom facilities\u2014spaces where curiosity can turn into hands-on experience, mentorship, and career-defining opportunities. By providing students access to advanced tools, real-world problem-solving, and a collaborative research environment, the cleanrooms continue to shape the next generation of engineers and innovators, just as they did for a curious freshman who decided to walk through an open door.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EBrandon Harrington\u2019s journey shows how early research opportunities at Georgia Tech can grow into a career shaping advanced engineering industries.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Brandon Harrington\u2019s journey shows how early research opportunities at Georgia Tech can grow into a career shaping advanced engineering industries."}],"uid":"35272","created_gmt":"2026-05-05 13:56:21","changed_gmt":"2026-05-05 14:01:34","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-05-05T00:00:00-04:00","iso_date":"2026-05-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"680170":{"id":"680170","type":"image","title":"Brandon_harrington_feature.png","body":null,"created":"1777989388","gmt_created":"2026-05-05 13:56:28","changed":"1777989388","gmt_changed":"2026-05-05 13:56:28","alt":"A smiling man in a blazer stands indoors next to a wall-mounted plaque displaying \u201cThe Sigmon Carver Outstanding Co-Op Achievement Award\u201d and a list of recipients.","file":{"fid":"264412","name":"Brandon_harrington_feature.png","image_path":"\/sites\/default\/files\/2026\/05\/05\/Brandon_harrington_feature.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/05\/05\/Brandon_harrington_feature.png","mime":"image\/png","size":2882156,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/05\/05\/Brandon_harrington_feature.png?itok=xlrHlm7u"}}},"media_ids":["680170"],"groups":[{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"130","name":"Alumni"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EWriter:\u003C\/strong\u003E Gabriel Buggi | Communications Student Assistant\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMedia Contact:\u0026nbsp;\u003C\/strong\u003E \u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Communications Manager\u003C\/p\u003E\u003Cp\u003EThe Institute for Matter and Systems\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"689226":{"#nid":"689226","#data":{"type":"news","title":"Energy Day Brings Leaders Together to Tackle AI Power Demands ","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003EMore than 300 leaders from industry, government, and academia gathered on Georgia Tech\u2019s campus for Energy Day, a one-day conference focused on one of today\u2019s most urgent challenges: meeting the rapidly growing energy demands of artificial intelligence (AI). \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EHeld on March 19, the event was co-hosted by Georgia Tech\u2019s\u202f\u003Ca href=\u0022http:\/\/matter-systems.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EInstitute for Matter and Systems\u003C\/a\u003E\u202f(IMS) and\u202f\u003Ca href=\u0022https:\/\/research.gatech.edu\/energy\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EStrategic Energy Institute\u003C\/a\u003E\u202f(SEI) with plenary support from the\u202f\u003Ca href=\u0022https:\/\/epicenter.energy.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EEnergy Policy and Innovation Center\u003C\/a\u003E. This year\u2019s theme, Energy for AI, anchored discussions on how energy systems must evolve to support an increasingly digital and computer-intensive world. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cEnergy Day demonstrates how critical it is to align research, industry, and policy to manage rising power demand and modernize our energy systems,\u201d said \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/4478\u0022\u003EYuanzhi Tang\u003C\/a\u003E, SEI\u2019s executive director. \u201cAt Georgia Tech, we are committed to advancing solutions that translate research into impact at the speed innovation demands.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThis year\u2019s Energy Day continued the momentum of past events, beginning with \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-battery-day-reveals-opportunities-energy-storage-research\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EBattery Day\u003C\/a\u003E in 2023. As research priorities have expanded, the event has grown to highlight Georgia Tech and the state of Georgia as national hubs for next-generation energy innovation, advanced manufacturing, and data-driven infrastructure. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe program was structured to foster high-level dialogue through keynote presentations and panel discussions, as well as deeper, focused tracks on specialized technical topics. The morning session featured a fireside chat between presenting sponsor GE Vernova and Georgia Tech Executive Vice President for Research Tim Lieuwen, followed by a keynote address from Vanessa Chan, former U.S. Department of Energy official and expert in commercialization and innovation, and two panels focused on policy, materials, and the evolving energy ecosystem.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cGreat ideas usually come out when you bring together different perspectives,\u201d said \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/2926\u0022\u003EEric Vogel\u003C\/a\u003E, executive director of IMS. \u201cThat\u2019s why we have this event. It helps scientists think more broadly, connects policymakers to science, and demonstrates the strength of Georgia Tech\u2019s research community.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EIn the afternoon, attendees split into three technical tracks addressing critical challenges at the intersection of energy and AI \u2014 from power delivery and storage to materials, infrastructure, and system resilience.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EDesigned to bring together researchers, policy makers, industry leaders, and students, Energy Day continues to drive interdisciplinary collaboration. Conversations throughout the day centered on three ideas: the magnitude and certainty of rising global energy demand, the urgency of scaling solutions efficiently, and the necessity of broad collaboration across research, industry, policy, and workforce pathways.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe event concluded with a student poster session featuring more than 20 research presentations, highlighting emerging work from across Georgia Tech. Three were recognized for excellence:\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u003Cstrong\u003EFirst place:\u003C\/strong\u003E Douglas Nelson \u2014 Improving Energy Efficiency in Fume Hoods and Ultra-Low Temperature Freezers\u0026nbsp;\u003Cbr\u003E\u003Cstrong\u003EFinalist:\u003C\/strong\u003E Erik Barbosa \u2014 Multiscale Approach for Thermochemical Energy Storage in Buildings\u0026nbsp;\u003Cbr\u003E\u003Cstrong\u003EFinalist:\u003C\/strong\u003E Ricardo Cruzado Valladares \u2014 Energy-Water Nexus for Sustainable AI Data Centers\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EMore than 300 experts from industry, government, and academia gathered at Georgia Tech to explore how energy systems must evolve to support the rapid growth of artificial intelligence.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"More than 300 experts from industry, government, and academia gathered at Georgia Tech to explore how energy systems must evolve to support the rapid growth of artificial intelligence. "}],"uid":"35272","created_gmt":"2026-03-27 18:53:00","changed_gmt":"2026-03-27 19:06:45","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-03-27T00:00:00-04:00","iso_date":"2026-03-27T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"679766":{"id":"679766","type":"image","title":"Energy-Day-photos_0003_DSC_0456-LR.png","body":"\u003Cp\u003EEric Vogel welcomed attendees to Energy Day.\u003C\/p\u003E","created":"1774637673","gmt_created":"2026-03-27 18:54:33","changed":"1774637673","gmt_changed":"2026-03-27 18:54:33","alt":"A man stands at a podium speaking in front of a large screen displaying \u201cGeorgia Tech Energy Day: Energy for AI.\u201d The setting is a conference room with stage lighting and an audience out of frame.","file":{"fid":"263965","name":"Energy-Day-photos_0003_DSC_0456-LR.png","image_path":"\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0003_DSC_0456-LR.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0003_DSC_0456-LR.png","mime":"image\/png","size":845836,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/Energy-Day-photos_0003_DSC_0456-LR.png?itok=nIqE6XEs"}},"679765":{"id":"679765","type":"image","title":"Energy-Day-photos_0002_DSC_0526-LR.png","body":"\u003Cp\u003EGeorgia Tech EVPR Tim Lieuwen (left) with Amit Kulkarni (center) and Jim Walsh (right), both speakers from GE Vernova.\u003C\/p\u003E","created":"1774637673","gmt_created":"2026-03-27 18:54:33","changed":"1774637673","gmt_changed":"2026-03-27 18:54:33","alt":"Three men sit on stage in a panel discussion, smiling and holding microphones. Water bottles rest on small tables beside their chairs.","file":{"fid":"263964","name":"Energy-Day-photos_0002_DSC_0526-LR.png","image_path":"\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0002_DSC_0526-LR.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0002_DSC_0526-LR.png","mime":"image\/png","size":1124177,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/Energy-Day-photos_0002_DSC_0526-LR.png?itok=QVABcM4a"}},"679763":{"id":"679763","type":"image","title":"Energy-Day-photos_0000_DSC_9011-LR.png","body":"\u003Cp\u003EMarta Hatzell served as Energy Day emcee.\u003C\/p\u003E","created":"1774637673","gmt_created":"2026-03-27 18:54:33","changed":"1774637673","gmt_changed":"2026-03-27 18:54:33","alt":"A wide view of a conference room shows attendees seated and facing a stage with a large screen reading \u201cGeorgia Tech Energy Day: Energy for AI.\u201d Marta Hatzell stands at a podium to the right of the screen.","file":{"fid":"263962","name":"Energy-Day-photos_0000_DSC_9011-LR.png","image_path":"\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0000_DSC_9011-LR.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0000_DSC_9011-LR.png","mime":"image\/png","size":951439,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/Energy-Day-photos_0000_DSC_9011-LR.png?itok=i4h-upHs"}},"679762":{"id":"679762","type":"image","title":"DSC_0602-LR.jpeg","body":"\u003Cp\u003EVanessa Chan gave the keynote presentation at Energy Day.\u003C\/p\u003E","created":"1774637673","gmt_created":"2026-03-27 18:54:33","changed":"1774637673","gmt_changed":"2026-03-27 18:54:33","alt":"Vanessa Chan speaks at a podium at the Georgia Tech Hotel and Conference Center, addressing an audience. She holds a clicker and stands behind a laptop during a formal presentation.","file":{"fid":"263961","name":"DSC_0602-LR.jpeg","image_path":"\/sites\/default\/files\/2026\/03\/27\/DSC_0602-LR.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/DSC_0602-LR.jpeg","mime":"image\/jpeg","size":747615,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/DSC_0602-LR.jpeg?itok=__7ajwHl"}},"679764":{"id":"679764","type":"image","title":"Energy-Day-photos_0001_DSC_0751-LR.png","body":"\u003Cp\u003EYaunzhi Tang (left) moderated the Beyond Scarcity: Building Resilient Critical Materials Supply Chains for Energy Systems panel.\u003C\/p\u003E","created":"1774637673","gmt_created":"2026-03-27 18:54:33","changed":"1774637673","gmt_changed":"2026-03-27 18:54:33","alt":"Three panelists sit on stage during a discussion, with one man gesturing as he speaks while the others listen. The moderator holds a microphone and looks toward him.","file":{"fid":"263963","name":"Energy-Day-photos_0001_DSC_0751-LR.png","image_path":"\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0001_DSC_0751-LR.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/Energy-Day-photos_0001_DSC_0751-LR.png","mime":"image\/png","size":1056746,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/Energy-Day-photos_0001_DSC_0751-LR.png?itok=4ogONbPt"}},"679767":{"id":"679767","type":"image","title":"poster-session.png","body":"\u003Cp\u003EStudents participated in the Energy Day poster session.\u003C\/p\u003E","created":"1774638162","gmt_created":"2026-03-27 19:02:42","changed":"1774638162","gmt_changed":"2026-03-27 19:02:42","alt":"A group of people stand indoors at an event, smiling and posing together while holding large ceremonial checks. Three individuals in front display checks for finalist awards and a first-place prize.","file":{"fid":"263967","name":"poster-session.png","image_path":"\/sites\/default\/files\/2026\/03\/27\/poster-session.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/27\/poster-session.png","mime":"image\/png","size":4210955,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/27\/poster-session.png?itok=_5ad7CtO"}}},"media_ids":["679766","679765","679763","679762","679764","679767"],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Communications Manager\u003C\/p\u003E\u003Cp\u003EThe Institute for Matter and Systems\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"688899":{"#nid":"688899","#data":{"type":"news","title":"Georgia Tech Renews Memorandum of Understanding With Sandia","body":[{"value":"\u003Cp\u003ESince 2020, Georgia Tech has partnered with Sandia National Laboratories, a federally funded research and development center focused on national security. In February, the two institutions renewed their collaboration with a new Memorandum of Understanding (MOU), reaffirming a relationship that has already strengthened research capabilities on both sides.\u003C\/p\u003E\u003Cp\u003EThe partnership has driven progress in areas ranging from hypersonics to bioscience, while also deepening institutional ties beyond research. Joint faculty appointments \u2014 such as\u0026nbsp;\u003Ca href=\u0022https:\/\/me.gatech.edu\/faculty\/mazumdar\u0022\u003EAnirban Mazumdar\u003C\/a\u003E, who holds roles at both Sandia and the\u0026nbsp;\u003Ca href=\u0022https:\/\/me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E\u0026nbsp;\u2014 demonstrate how closely the organizations work together. The collaboration has also expanded student talent pipelines, providing more avenues for Georgia Tech students to pursue careers at the national lab.\u003C\/p\u003E\u003Cp\u003E\u201cAt its core, this partnership is about people,\u201d said\u0026nbsp;Tim Lieuwen, executive vice president for Research at Georgia Tech.\u0026nbsp;\u201cSandia and Georgia Tech share a commitment to discovery and developing the talent, creativity, and collaboration our nation needs.\u201d\u003C\/p\u003E\u003Cp\u003EThe renewed MOU, he said, \u201cstrengthens connections between our researchers, opens new doors for our students, and builds meaningful career pathways into national service. When our communities work together to address national priorities, we not only accelerate technological advances \u2014 we expand opportunities for the people who will shape the future of our nation\u2019s security.\u201d\u003C\/p\u003E\u003Cp\u003EUnder the new MOU, Sandia and Georgia Tech will focus on integrated research across key national security\u2011aligned areas, including secure artificial intelligence and computing, quantum technologies, critical minerals, advanced manufacturing, energy and grid resilience, and hypersonics.\u0026nbsp;The partnership emphasizes connecting manufacturing, computation, and systems approaches directly to national security applications.\u003C\/p\u003E\u003Cp\u003E\u201cTogether, we have been solving new and unprecedented challenges in science and engineering, and now we have a great opportunity to develop this partnership,\u201d said Dan Sinars, Sandia\u2019s deputy chief research officer. \u201cOur research benefits both national security and national prosperity, and keeps the country at the forefront of the world.\u201d\u003C\/p\u003E\u003Cp\u003EWith this strengthened connection, the partners aim to grow their shared research footprint through increased funding, publications, and faculty-led startups. Over the long term, Georgia Tech intends to become one of Sandia\u2019s top hiring pipelines, ensuring that talent developed through joint research continues into national security careers.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EHistory of the Partnership\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EThe Institute\u2019s collaboration with Sandia began in the mid\u20112010s, when the labs selected Georgia Tech as one of its partner institutions. The first MOU, signed in 2015, formalized the relationship and outlined initial technical focus areas.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EIn 2018,\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/george-white\u0022\u003EGeorge White\u003C\/a\u003E, executive director of strategic partnerships, and\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/olof-westerstahl\u0022\u003EOlof Westerstahl\u003C\/a\u003E, \u0026nbsp;senior director strategic initiatives in the Office of Corporate Engagement, helped expand the partnership. They launched \u201cSandia Day,\u201d an event designed to introduce Georgia Tech faculty to Sandia researchers and spark new collaborations. By 2020, the organizations signed a second MOU that expanded the partnership\u2019s technical focus areas to include energy and grid security, materials and nanotechnology, advanced electronics, advanced manufacturing, advanced computing, cyber and information security, bioscience, hypersonics, quantum information science, and engineering sciences.\u003C\/p\u003E\u003Cp\u003EThe results have been substantial. Since 2018, Sandia has sponsored $35 million in research collaborations with Georgia Tech. Researchers from both institutions have co-authored 450 publications since 2016. Research activity continues to accelerate, with $1.6 million in new contracts in the past year alone. As of August 2025, Sandia employs 325 Georgia Tech alumni \u2014 a testament to the impact of the growing talent pipeline.\u003C\/p\u003E\u003Cp\u003E\u201cWe view our work with Sandia as the model for engagement with other national labs,\u201d said White. \u201cWith the new MOU, we will continue to grow the Sandia partnership. I would like to see our footprint double in scope in the next five years.\u201d\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cstrong\u003EThe Sandia partnership will expand research impact, talent pipelines, and national security innovation.\u003C\/strong\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The Sandia partnership will expand research impact, talent pipelines, and national security innovation."}],"uid":"34541","created_gmt":"2026-03-12 16:13:11","changed_gmt":"2026-03-12 18:20:44","author":"Tess Malone","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-03-12T00:00:00-04:00","iso_date":"2026-03-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"679602":{"id":"679602","type":"image","title":"Georgia-Tech-Signing-10.jpg","body":"\u003Cp\u003EPhoto by Alicia Bustillos from Sandia National Laboratories\u003C\/p\u003E","created":"1773332018","gmt_created":"2026-03-12 16:13:38","changed":"1773332018","gmt_changed":"2026-03-12 16:13:38","alt":"Group of people at Georgia Tech\/Sandia MOU signing","file":{"fid":"263782","name":"Georgia-Tech-Signing-10.jpg","image_path":"\/sites\/default\/files\/2026\/03\/12\/Georgia-Tech-Signing-10.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/03\/12\/Georgia-Tech-Signing-10.jpg","mime":"image\/jpeg","size":1227985,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/03\/12\/Georgia-Tech-Signing-10.jpg?itok=fTlNkTlI"}}},"media_ids":["679602"],"groups":[{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"193655","name":"Artificial Intelligence at Georgia Tech"},{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"145171","name":"Cybersecurity"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"193652","name":"Matter and Systems"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ETess Malone, Senior Research Writer\/Editor\u003C\/p\u003E\u003Cp\u003Etess.malone@gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"688452":{"#nid":"688452","#data":{"type":"news","title":"The Challenges and Opportunities of Cold Weather and Technology","body":[{"value":"\u003Cp\u003EWhile Italy\u2019s 2026 Winter Olympics draw the world\u2019s attention to snow and ice, Georgia Tech researchers are also confronting cold at its most extreme.\u003C\/p\u003E\u003Cp\u003ESome labs in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) use liquid nitrogen and liquid helium to chill cryogenic test systems to as low as 4 Kelvins (K), or -452.47 degrees Fahrenheit (F), temperatures that rival the coldest regions of deep space.\u003C\/p\u003E\u003Cp\u003EAt this point, materials and electronic devices stop behaving in familiar ways, which is exactly why ECE researchers use these extreme conditions to explore and\u0026nbsp;develop new semiconductor technologies.\u003C\/p\u003E\u003Cp\u003E\u201cElectronics are very temperature dependent,\u201d Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/john-d-cressler\u0022\u003EJohn Cressler\u003C\/a\u003E said, whose lab houses some of these cryogenic test systems. \u201cWhether you see it or not, every electronic you buy has a tested temperature spec associated with it.\u201d\u003C\/p\u003E\u003Cp\u003ECurrent commercially sold devices, including most cell phones, are made to run between 32 F and 85 F. Researchers in ECE test across a far wider range, as they develop technology with extraterrestrial and quantum computing applications in mind.\u003C\/p\u003E\u003Cp\u003EOther ECE teams work in natural extremes, carrying instruments into polar regions where cold creates challenges that no lab can fully replicate.\u003C\/p\u003E\u003Cp\u003EJust as cold pushes athletes in different ways, it guides ECE research down its own distinct paths.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2026\/02\/challenges-and-opportunities-technology-cold\u0022\u003E\u003Cstrong\u003ERead the full story on the School of Electrical and Computer Engineering\u0027s website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EIn labs chilled to 4 kelvins (-450 degrees!) and on expeditions to polar regions, Georgia Tech scientists are discovering how extreme cold simultaneously challenges and advances technology in computing, space exploration, and the interpretation of Earth\u2019s natural signals.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"In labs chilled to 4 kelvins (-450 degrees!) and on expeditions to polar regions, Georgia Tech scientists are discovering how extreme cold simultaneously challenges and advances technology in computing, space exploration, and more."}],"uid":"36558","created_gmt":"2026-02-20 18:51:26","changed_gmt":"2026-02-20 19:43:10","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-02-20T00:00:00-05:00","iso_date":"2026-02-20T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"679385":{"id":"679385","type":"image","title":"cold-techs--1-.gif","body":null,"created":"1771613526","gmt_created":"2026-02-20 18:52:06","changed":"1771613526","gmt_changed":"2026-02-20 18:52:06","alt":"Tech in the Cold","file":{"fid":"263540","name":"cold-techs--1-.gif","image_path":"\/sites\/default\/files\/2026\/02\/20\/cold-techs--1-.gif","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/20\/cold-techs--1-.gif","mime":"image\/gif","size":23995589,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/20\/cold-techs--1-.gif?itok=4pbIyOsL"}}},"media_ids":["679385"],"related_links":[{"url":"https:\/\/ece.gatech.edu\/news\/2026\/02\/challenges-and-opportunities-technology-cold","title":"Read the Full Story"}],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"1188","name":"Research Horizons"},{"id":"660370","name":"Space"}],"categories":[{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"167686","name":"Semiconductors"},{"id":"1228","name":"memory"},{"id":"179829","name":"cold"},{"id":"623","name":"Technology"},{"id":"170841","name":"silicon-germanium"},{"id":"167146","name":"space"},{"id":"2868","name":"atmosphere"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"},{"id":"193657","name":"Space Research Initiative"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"688369":{"#nid":"688369","#data":{"type":"news","title":"The Future of Healing: Smart Bandage Could Transform Diabetic Wound Care and Beyond","body":[{"value":"\u003Cp\u003EWhile most people don\u2019t think twice about a cut or scrape, for those with diabetes, every wound is a potential threat that requires vigilant care.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EDiabetic foot ulcers, for example, are slow to heal and can increase the risk of infection, hospitalization, and even amputation.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo address this critical challenge, researchers at the Georgia Institute of Technology (Georgia Tech) and the Georgia Tech Research Institute (GTRI) have developed a sensor designed to monitor chronic wounds in real-time. Embedded directly into a bandage, this flexible, low-cost device could transform wound management for diabetic patients and other critical applications \u2014 such as providing direct treatment to soldiers on the battlefield or managing chronic wounds in elderly populations and patients with limited healthcare access \u2014 by reducing invasive bandage changes and ensuring timely medical intervention.\u003C\/p\u003E\u003Cp\u003E\u201cFor diabetic patients with foot ulcers, long-term monitoring and care are essential,\u201d said GTRI Principal Research Engineer and Project Lead Judy Song. \u201cWe were inspired by the success of wearable glucose monitors to develop a compact, affordable sensor tailored to wound care.\u201d\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThis project was supported by GTRI\u2019s Independent Research and Development (IRAD) program between 2022-2025 and reflects the strength of interdisciplinary collaboration across Georgia Tech. Researchers from three out of GTRI\u2019s eight laboratories developed the sensor with experts from the George W. Woodruff School of Mechanical Engineering, the H. Milton Stewart School of Industrial and Systems Engineering and the Wallace H. Coulter Department of Biomedical Engineering at Tech and Emory University.\u003C\/p\u003E\u003Cp\u003EAbout \u003Ca href=\u0022https:\/\/www.hopkinsmedicine.org\/health\/conditions-and-diseases\/diabetes\/foot-ulcers\u0022\u003Eone in four\u003C\/a\u003E people with diabetes will develop a foot ulcer at some point in their lives, making it one of the leading causes of foot amputations. For these patients, nerve damage and poor blood flow hinder the body\u2019s natural healing process and allow wounds to linger and worsen.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EDuring the initial phases of their research, the team noted that nitric oxide (NO) had been previously identified as a key biomarker for wound health due to its central role in the healing process. Nitric oxide improves blood flow, reduces inflammation, promotes tissue growth and fights infection. By tracking nitric oxide levels in wounds, clinicians could determine whether a wound is improving or detect early signs of trouble.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u0022Nitric oxide plays a fascinating, almost paradoxical, role in wound healing,\u201d said GTRI Senior Research Engineer Victoria Razin, who is co-leading the project. \u201cIt\u2019s essential for processes like blood flow and tissue repair, but can also signal when something is going wrong.\u201d\u003C\/p\u003E\u003Cp\u003EAt the core of the smart bandage is a flexible sensor powered by a three-electrode system capable of detecting changes in nitric oxide. The team used advanced Aerosol Jet\u00ae printing techniques to fabricate the sensor, significantly reducing production costs from thousands of dollars to just a few dollars per unit and making the design more affordable and scalable.\u003C\/p\u003E\u003Cp\u003E\u201cTypically, prototyping these sensors can cost thousands of dollars, but our approach brought costs down dramatically,\u201d said Chuck Zhang, the Eugene C. Gwaltney, Jr. Chair and Professor in ISYE and a program director at the National Science Foundation (NSF), who oversaw sensor fabrication for this project. \u201cLower costs let us iterate quickly and deliver something that could have real healthcare impact.\u201d\u003C\/p\u003E\u003Cp\u003ETo test the sensor\u2019s accuracy, the team conducted extensive laboratory studies in both biological and simulated wound conditions.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EIn one set of experiments, endothelial cell cultures were used to create \u201cwounds\u201d by scraping the cell layers. As the cells migrated to repair the gap, nitric oxide production increased, and the sensor successfully tracked these changes in real-time. Additional fluid tests using blood plasma and red blood cells demonstrated that the sensor could reliably detect nitric oxide in a variety of conditions that closely mimic real-world wound environments.\u003C\/p\u003E\u003Cp\u003EThese experiments confirmed that the sensor can identify the fluctuations in nitric oxide associated with different phases of wound healing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ELab testing was led by Dr. Wilbur Lam, a professor in the Department of Biomedical Engineering and at Emory University School of Medicine, with support from Kirby Fibben, a biomedical engineering Ph.D. student at Tech.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u0022There\u2019s a significant clinical need for real time, minimally invasive sensor technologies that detect nitric oxide,\u201d said Dr. Lam. \u201cWhile we\u2019re starting with wound healing, there\u2019s multiple other applications for vascular, hematologic, and pulmonary diseases as well.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe next step in the project is integrating the sensor into a functional wearable device. The team is combining the sensor with a miniaturized potentiostat (MicroPS) \u2013 a small electronic device that measures chemical signals \u2013 along with flexible electronic components and a system to transmit data to a mobile app.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe MicroPS, designed by the GTRI research team, led by GTRI Research Engineer Curtis Mulady, enables compact electrochemical measurements and the wireless platform transmits nitric oxide readings from the bandage to a mobile app via Bluetooth. The app uploads the data to a cloud platform, giving clinicians the ability to remotely monitor wound progress in real time. This system could reduce the need for frequent in-person checkups, enabling earlier interventions and improving outcomes for patients.\u003C\/p\u003E\u003Cp\u003EFuture iterations of the bandage aim to include \u201cclosed-loop\u201d systems capable of both monitoring and treating wounds, said GTRI\u2019s Song. For example, sensors could trigger a response, like releasing therapeutic agents or antimicrobials directly to the wound, when abnormalities are detected.\u003C\/p\u003E\u003Cp\u003EThe researchers are also exploring commercialization pathways, including partnerships with medical device companies or the formation of a startup.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cThis sensor meets a real need for early detection of infection and to evaluate wound healing, and I believe it could have significant commercial success,\u201d said Peter Hesketh, a professor in the School of Mechanical Engineering who led sensor design and performance testing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EOther contributors to this project from GTRI include Mulady, Cora Weidner, Maxwell Blanchard, Rachel Erbrick and Christopher Heist. Zhaonan \u201cZeke\u201d Liu, a postdoctoral fellow in ISYE, assisted with sensor fabrication, while Rizky Ilhamsyah, a graduate research assistant in the School of Mechanical Engineering, contributed to sensor design and performance testing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EWriter: Anna Akins\u0026nbsp;\u003Cbr\u003EPhotos: Sean McNeil\u0026nbsp;\u003Cbr\u003EGTRI Communications\u003Cbr\u003EGeorgia Tech Research Institute\u003Cbr\u003EAtlanta, Georgia USA\u003C\/p\u003E\u003Cp\u003EFor more information, please contact \u003Ca href=\u0022mailto:gtri.media@gtri.gatech.edu\u0022\u003E\u003Cstrong\u003Egtri.media@gtri.gatech.edu\u003C\/strong\u003E\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo learn more about GTRI, visit: \u003Ca href=\u0022https:\/\/gtri.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorgia Tech Research Institute | GTRI\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGTRI and Georgia Tech have developed a smart bandage that could transform wound care for diabetic patients, battlefield soldiers, and others by enabling real-time insights and reducing invasive bandage changes for timely treatment.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"GTRI and Georgia Tech have developed a smart bandage that could transform wound care for diabetic patients, battlefield soldiers, and others by enabling real-time insights and reducing invasive bandage changes for timely treatment."}],"uid":"35874","created_gmt":"2026-02-18 19:06:21","changed_gmt":"2026-02-18 19:18:25","author":"Anna Akins","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-02-18T00:00:00-05:00","iso_date":"2026-02-18T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"679351":{"id":"679351","type":"image","title":"2026_0108_image_ATAS_wound-healing-sensor_23.JPG","body":null,"created":"1771439806","gmt_created":"2026-02-18 18:36:46","changed":"1771439806","gmt_changed":"2026-02-18 18:36:46","alt":"A photo of some of the researchers leading the project written about. ","file":{"fid":"263501","name":"2026_0108_image_ATAS_wound-healing-sensor_23.JPG","image_path":"\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_23.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_23.JPG","mime":"image\/jpeg","size":14672403,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_23.JPG?itok=oXM8Z-Ko"}},"679350":{"id":"679350","type":"image","title":"2026_0108_image_ATAS_wound-healing-sensor_30.JPG","body":null,"created":"1771439636","gmt_created":"2026-02-18 18:33:56","changed":"1771439636","gmt_changed":"2026-02-18 18:33:56","alt":"A photo of some of the researchers leading the project written about. ","file":{"fid":"263500","name":"2026_0108_image_ATAS_wound-healing-sensor_30.JPG","image_path":"\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_30_0.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_30_0.JPG","mime":"image\/jpeg","size":15655217,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_30_0.JPG?itok=IMk9L6R1"}},"679348":{"id":"679348","type":"image","title":"2026_0108_image_ATAS_wound-healing-sensor_13.JPG","body":null,"created":"1771439373","gmt_created":"2026-02-18 18:29:33","changed":"1771439373","gmt_changed":"2026-02-18 18:29:33","alt":"A photo of a Georgia Tech graduate student operating the Aerosol Jet\u00ae printer to fabricate the sensor. ","file":{"fid":"263498","name":"2026_0108_image_ATAS_wound-healing-sensor_13.JPG","image_path":"\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_13.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_13.JPG","mime":"image\/jpeg","size":16282934,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_13.JPG?itok=1OcSDjG3"}},"679347":{"id":"679347","type":"image","title":"2026_0108_image_ATAS_wound-healing-sensor_04.JPG","body":"\u003Cp\u003EGTRI and Georgia Tech\u0027s smart bandage could revolutionize wound care by enabling real-time insights on healing and reducing invasive bandage changes.\u0026nbsp;\u003C\/p\u003E","created":"1771439244","gmt_created":"2026-02-18 18:27:24","changed":"1771439244","gmt_changed":"2026-02-18 18:27:24","alt":"A close-up of the Aerosol Jet printer as it designs a sensor prototype. ","file":{"fid":"263497","name":"2026_0108_image_ATAS_wound-healing-sensor_04.JPG","image_path":"\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_04_1.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_04_1.JPG","mime":"image\/jpeg","size":10790154,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/18\/2026_0108_image_ATAS_wound-healing-sensor_04_1.JPG?itok=LJKojKRi"}}},"media_ids":["679351","679350","679348","679347"],"groups":[{"id":"1276","name":"Georgia Tech Research Institute (GTRI)"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"194685","name":"Manufacturing"},{"id":"194610","name":"National Interests\/National Security"}],"keywords":[{"id":"179693","name":"biomedical sensors"},{"id":"192132","name":"improving human condition"},{"id":"543","name":"National Security"},{"id":"94241","name":"diabetes treatments"},{"id":"12463","name":"Wound Healing"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193653","name":"Georgia Tech Research Institute"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EFor more information, please contact \u003Ca href=\u0022mailto:gtri.media@gtri.gatech.edu\u0022\u003Egtri.media@gtri.gatech.edu\u003C\/a\u003E\u003Cbr\u003EWriter: Anna Akins (anna.akins@gtri.gatech.edu).\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"687672":{"#nid":"687672","#data":{"type":"news","title":"Georgia Tech-Europe Leads Effort to Revolutionize Artifact Preservation ","body":[{"value":"\u003Cdiv\u003E\u003Cdiv\u003E\u003Cp\u003EIn the basement of the Louvre, scientists at the Center for Research and Restoration of the Museums of France (C2RMF) work at the frontier of cultural heritage preservation. Their challenge is to find non-invasive ways to probe ancient and precious artifacts to understand their structural integrity and optimal restoration paths. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAlthough cultural heritage scientists already use an array of advanced scientific techniques, the data from these methods cannot yet be fully integrated to provide a comprehensive, multidimensional view of each artifact. Without a holistic view of structural integrity and design, decision-making about conservation remains complex and risk-laden. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThis challenge is one that Alexandre Locquet, Georgia Tech-Europe professor and research scientist at the Centre National de la Recherche Scientifique (CNRS), and Georgia Tech-Europe Professor David S. Citrin will address in an upcoming Marie Sk\u0142odowska-Curie Actions Doctoral Networks research grant project, \u003Ca href=\u0022https:\/\/unveil-dn.eu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E\u003Cstrong\u003EUNVEIL\u003C\/strong\u003E\u003C\/a\u003E (Unified Nondestructive Evaluation of Historical Artifacts), as part of the IRL 2958 Georgia Tech-CNRS, a joint research partnership between Georgia Tech and the Centre National de la Recherche Scientifique, where Locquet and Citrin lead the \u003Ca href=\u0022https:\/\/irl2958.georgiatech-europe.eu\/terahertznde-nonlineardynamicsgroup\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E\u003Cstrong\u003ETerahertz NDE and nonlinear dynamics group\u003C\/strong\u003E\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAs coordinator of UNVEIL, Locquet will head a consortium of 21 European organizations, whose diverse areas of expertise will combine to advance nondestructive evaluation methods for cultural heritage preservation. With a budget of 3.7 million euros, the project brings together partners such as the C2RMF, with its advanced techniques in cultural heritage science, and the IRL 2958 Georgia Tech-CNRS. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EUNVEIL\u0027s goal is not only to integrate data across multiple techniques to understand cultural artifacts, but also to introduce advanced, engineering-grade methods (e.g., terahertz imaging, ultrasound, and infrared thermography) into cultural heritage science. This dual approach will provide new insights to guide conservation and restoration work, from uncovering an artist\u0027s first sketches, hidden inscriptions, and signatures to detecting structural weaknesses invisible to the naked eye.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe UNVEIL project will combine data from these non-invasive methods to create a 3D augmented-reality digital twin that shows an artifact\u0027s structural integrity and layers, revealing hidden elements, such as inscriptions and underdrawings. Collaborations with European museums and heritage institutions will bring these advances to the public, offering interactive 3D exhibits that allow visitors to explore artifacts beyond their visible surfaces.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ELocquet\u2019s research focuses on terahertz (THz) imaging and spectroscopy for nondestructive evaluation. THz imaging has already demonstrated unique scientific advancements in examining cultural heritage objects, such as deciphering illegible inscriptions on an 18th-century funerary cross, reconstructing the stratigraphy of ancient paper stacks, and revealing hidden signatures and underdrawings beneath layers of paint. These results demonstrate the potential of THz imaging to uncover details inaccessible by other means. As coordinator of UNVEIL, Locquet\u0027s role extends well beyond research. He will guide the consortium as a whole and ensure the integration of all techniques into a unified approach for cultural heritage diagnostics and restoration.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe UNVEIL project will begin in March. Locquet and his team are currently seeking doctoral students in physics and electrical and computer engineering to join the multidisciplinary research team. Interested students are encouraged to send their CV and a letter of interest to \u003Ca href=\u0022mailto:alocquet@georgiatech-metz.fr\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E\u003Cstrong\u003Ealocquet@georgiatech-metz.fr\u003C\/strong\u003E\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/unveil-dn.eu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Elearn more about UNVEIL\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech-Europe, in collaboration with the Centre National de la Recherche Scientifique and a consortium of 21 European organizations, is leading the UNVEIL project to advance the preservation of cultural artifacts.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech-Europe, in collaboration with the Centre National de la Recherche Scientifique and a consortium of 21 European organizations, is leading the UNVEIL project to advance the preservation of cultural artifacts."}],"uid":"36779","created_gmt":"2026-01-26 17:03:40","changed_gmt":"2026-02-04 19:32:26","author":"tcran3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-01-26T00:00:00-05:00","iso_date":"2026-01-26T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"679147":{"id":"679147","type":"image","title":"Research partnership between Georgia Tech and the Centre National de la Recherche Scientifique, where Locquet and Citrin lead the Terahertz NDE and nonlinear dynamics group.","body":"\u003Cp\u003EResearch partnership between Georgia Tech and the Centre National de la Recherche Scientifique, where Locquet and Citrin lead the \u003Ca href=\u0022https:\/\/irl2958.georgiatech-europe.eu\/terahertznde-nonlineardynamicsgroup\/\u0022\u003E\u003Cstrong\u003ETerahertz NDE and nonlinear dynamics group\u003C\/strong\u003E\u003C\/a\u003E.\u003C\/p\u003E","created":"1770042831","gmt_created":"2026-02-02 14:33:51","changed":"1770042831","gmt_changed":"2026-02-02 14:33:51","alt":"Research partnership between Georgia Tech and the Centre National de la Recherche Scientifique, where Locquet and Citrin lead the Terahertz NDE and nonlinear dynamics group.","file":{"fid":"263270","name":"locquet-research.jpg","image_path":"\/sites\/default\/files\/2026\/02\/02\/locquet-research.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/02\/02\/locquet-research.jpg","mime":"image\/jpeg","size":3777174,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/02\/02\/locquet-research.jpg?itok=ID5k9MLm"}}},"media_ids":["679147"],"related_links":[{"url":"https:\/\/europe.gatech.edu\/en","title":"Georgia Tech-Europe"}],"groups":[{"id":"54809","name":"Georgia Tech-Europe (GTE)"}],"categories":[],"keywords":[{"id":"191566","name":"Georgia Tech-Europe"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:trdsc@gatech.edu\u0022\u003ETina Rousselot de Saint Ceran\u003C\/a\u003E\u003Cbr\u003EGeorgia Tech-Europe\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"687042":{"#nid":"687042","#data":{"type":"news","title":"Georgia Tech Climbs to No. 2 University in Federally Sponsored Research Expenditures","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003EUniversity research drives U.S. innovation, and Georgia Institute of Technology is leading the way.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe latest \u003Ca href=\u0022https:\/\/ncses.nsf.gov\/surveys\/higher-education-research-development\/2024#data\u0022\u003EHigher Education Research and Development (HERD) Survey\u003C\/a\u003E from the National Science Foundation (NSF) places Georgia Tech as No. 2 nationally for federally sponsored research expenditures in 2024. This is Georgia Tech\u2019s highest-ever ranking from the NSF HERD survey and a 70% increase over the Institute\u0027s 2019 numbers.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EIn total expenditures from all externally funded dollars (including the federal government, foundations, industry, etc.), Georgia Tech is ranked at No. 6.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ETech remains ranked No. 1 among universities without a medical school \u2014 a major accomplishment, as medical schools account for a quarter of all research expenditures nationally.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cGeorgia Tech\u2019s rise to No. 2 in federally sponsored research expenditures reflects the extraordinary talent and commitment of our faculty, staff, students, and partners. This achievement demonstrates the confidence federal agencies have in our ability to deliver transformative research that addresses the nation\u2019s most critical challenges,\u201d said Tim Lieuwen, executive vice president for Research.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EOverall, the state of Georgia maintained its No. 8 position in university research and development, and for the first time, the state topped the $4 billion mark in research expenditures. Georgia Tech provides $1.5 billion, the largest state university contribution. In the last five years, federal funding for higher education research in the state of Georgia has grown an astounding 46% \u2014 10 points higher than the U.S. rate.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ELieuwen said, \u201cGeorgia Tech is proud to lead the state in research contributions, helping Georgia surpass the $4 billion mark for the first time. Our work doesn\u2019t just advance knowledge \u2014 it saves lives, creates jobs, and strengthens national security. This growth reflects our commitment to drive innovation that benefits Georgia, our country, and the world.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Ch4\u003E\u003Cstrong\u003EAbout the NSF HERD Survey\u003C\/strong\u003E\u0026nbsp;\u003C\/h4\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe NSF HERD Survey is an annual census of U.S. colleges and universities that expended at least $150,000 in separately accounted for research and development (R\u0026amp;D) in the fiscal year. The survey collects information on R\u0026amp;D expenditures by field of research and source of funds and also gathers information on types of research, expenses, and headcounts of R\u0026amp;D personnel.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Ch4\u003E\u003Cstrong\u003EAbout Georgia Tech\u0027s Research Enterprise\u003C\/strong\u003E\u0026nbsp;\u003C\/h4\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe research enterprise at Georgia Tech is led by the Executive Vice President for Research, Tim Lieuwen, and directs a portfolio of research, development, and sponsored activities. This includes leadership of the Georgia Tech Research Institute (GTRI), the Enterprise Innovation Institute, 11 interdisciplinary research institutes (IRIs), Office of Commercialization, Office of Corporate Engagement, plus research centers, and related research administrative support units. Georgia Tech routinely ranks among the top U.S. universities in volume of research conducted.\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"This is the Institute\u2019s best ranking in the National Science Foundation\u2019s annual survey."}],"field_summary":[{"value":"\u003Cp\u003EUniversity research drives U.S. innovation, and Georgia Institute of Technology is leading the way. \u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"This is the Institute\u2019s best ranking in the National Science Foundation\u2019s annual survey."}],"uid":"27561","created_gmt":"2026-01-02 15:18:43","changed_gmt":"2026-01-08 20:52:49","author":"Angela Ayers","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2026-01-05T00:00:00-05:00","iso_date":"2026-01-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"678906":{"id":"678906","type":"image","title":"20250911_IBB_ChipLung-08.jpg","body":null,"created":"1767367131","gmt_created":"2026-01-02 15:18:51","changed":"1767367131","gmt_changed":"2026-01-02 15:18:51","alt":"Two Georgia Tech researchers looking at a biomedical chip.","file":{"fid":"263002","name":"20250911_IBB_ChipLung-08.jpg","image_path":"\/sites\/default\/files\/2026\/01\/02\/20250911_IBB_ChipLung-08_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2026\/01\/02\/20250911_IBB_ChipLung-08_0.jpg","mime":"image\/jpeg","size":89262,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2026\/01\/02\/20250911_IBB_ChipLung-08_0.jpg?itok=65G0LzgZ"}}},"media_ids":["678906"],"groups":[{"id":"244191","name":"Brook Byers Institute for Sustainable Systems"},{"id":"1278","name":"College of Sciences"},{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"193655","name":"Artificial Intelligence at Georgia Tech"},{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"193658","name":"Commercialization"},{"id":"145171","name":"Cybersecurity"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"193654","name":"Enterprise Innovation Institute"},{"id":"193653","name":"Georgia Tech Research Institute"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"},{"id":"39481","name":"National Security"},{"id":"193656","name":"Neuro Next Initiative"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"},{"id":"39491","name":"Renewable Bioproducts"},{"id":"39521","name":"Robotics"},{"id":"193657","name":"Space Research Initiative"},{"id":"194566","name":"Sustainable Systems"},{"id":"39541","name":"Systems"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:angela.ayers@research.gatech.edu\u0022\u003EAngela Ayers\u003C\/a\u003E\u003Cbr\u003EAssistant Vice President of Research Communications\u003Cbr\u003EGeorgia Tech\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"684453":{"#nid":"684453","#data":{"type":"news","title":"Atlanta Youth to Design \u2018Future of Paper\u2019 Exhibit at Papermaking Museum","body":[{"value":"\u003Cp\u003EA new educational initiative is set to teach Atlanta high school students how to create electronics, wearable devices, and other technologies that are built on paper and craft materials.\u003C\/p\u003E\u003Cp\u003EWorkshops hosted by the \u003Ca href=\u0022https:\/\/paper.gatech.edu\/visit-0\u0022\u003E\u003Cstrong\u003ERobert C. Williams Museum of Papermaking\u003C\/strong\u003E\u003C\/a\u003E and led by Georgia Tech Assistant Professor \u003Ca href=\u0022https:\/\/id.gatech.edu\/people\/hyunjoo-oh\u0022\u003E\u003Cstrong\u003EHyunJoo Oh\u003C\/strong\u003E\u003C\/a\u003E will introduce about 60 students from Atlanta Public Schools to paper-based electronics through hands-on workshops.\u003C\/p\u003E\u003Cp\u003EThe Williams Museum will open an exhibit titled \u201cThe Future of Paper\u201d that displays designs created in the workshop alongside visionary examples of paper-based technologies from Georgia Tech researchers.\u003C\/p\u003E\u003Cp\u003EThe exhibit, funded by the National Science Foundation, is slated to open to the public in 2027.\u003C\/p\u003E\u003Cp\u003EOh is a researcher with joint appointments in the \u003Ca href=\u0022https:\/\/ic.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Interactive Computing\u003C\/strong\u003E\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/id.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Industrial Design.\u003C\/strong\u003E\u003C\/a\u003EShe leads the \u003Ca href=\u0022https:\/\/www.codecraft.group\/\u0022\u003E\u003Cstrong\u003EComputational Design and Craft (CoDe Craft) Group\u003C\/strong\u003E\u003C\/a\u003E at Georgia Tech, where her team integrates everyday craft materials with computing to support creative exploration.\u003C\/p\u003E\u003Cp\u003EOh believes paper could be widely used to support prototyping printed circuit boards (PCBs) as a sustainable alternative to silicon. While silicon is the most prominent material used by technology companies to build computer chips, it isn\u2019t biodegradable. And it can be harmful to the environment and contribute to e-waste.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EPaper, however, provides an eco-friendly platform for printing conductive traces and mounting small electronic components. With the expansion of printed electronic tools and techniques, paper and similar materials have become more popular among technologists who develop sensing technologies and wearable devices.\u003C\/p\u003E\u003Cp\u003E\u201cIt\u2019s widely available and accessible,\u201d Oh said. \u201cI can\u2019t think of anything more affordable and approachable that young makers and the broader maker community can use for circuits than paper.\u003C\/p\u003E\u003Cp\u003E\u201cPrinted electronics traditionally required expensive equipment, but with recent innovation in materials science, conductive materials such as conductive pens and paint available in local arts and crafts stores can be used to build circuits on paper. We can also print circuits using a regular office inkjet printer with silver ink.\u201d\u003C\/p\u003E\u003Ch4\u003E\u003Cstrong\u003EShared Vision\u003C\/strong\u003E\u003C\/h4\u003E\u003Cp\u003EShortly after arriving at Georgia Tech in 2019, Oh knew she had to develop a project that would let her partner with the Williams Museum.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI was captivated by the museum\u2019s space and its celebration of paper,\u201d she said. \u201cI wanted a collaboration that would integrate technology in a way that complemented and respected the museum\u2019s existing beauty.\u201d\u003C\/p\u003E\u003Cp\u003EMuseum director Virginia Howell said the project was a perfect match for the museum, which has documented the history of papermaking since it was founded in 1939 by the Massachusetts Institute of Technology. Georgia Tech became the new home of the museum in 2003.\u003C\/p\u003E\u003Cp\u003EWith more than 100,000 objects in its collection \u2014 some dating back as far as 2,000 years ago \u2014 the museum is unique, Howell said. Most papermaking museums are typically located at an historic mill, but the Williams Museum covers the history of papermaking.\u003C\/p\u003E\u003Cp\u003EHowell said that before she met Oh, she had been looking for an exhibit that would display the possible future of papermaking.\u003C\/p\u003E\u003Cp\u003E\u201cWe do the past of paper fantastically well, and we do the present of paper well through our changing exhibitions,\u201d Howell said. \u201cThe future of paper is something we haven\u2019t spent a lot of time interpreting.\u201d\u003C\/p\u003E\u003Ch4\u003E\u003Cstrong\u003ECrafting the Future\u003C\/strong\u003E\u003C\/h4\u003E\u003Cp\u003EOh and Howell agree that young people will shape that future. Oh said paper is commonly linked to art in the education sphere. As the material\u2019s use in technology increases, however, it can funnel the interests of students toward engineering and computing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EIncorporating paper and craft materials can invite more students to explore engineering and computing concepts. After all, a circuit board created on paper isn\u2019t so different from one built on a silicon PCB, Oh said.\u003C\/p\u003E\u003Cp\u003E\u201cThis approach can excite the kind of students who usually feel disconnected from electronics and computing,\u201d she said. \u201cIt gives those who only see themselves as creative or artistic a way to enjoy technology and resonate with it.\u003C\/p\u003E\u003Cp\u003E\u201cUsually when I work with young students, especially girls, if I start with something technical, their interest wanes. But when I present those same ideas through art using familiar materials like paper, they become more engaged and confident. That\u2019s when they start to flourish.\u201d\u003C\/p\u003E\u003Cp\u003EOh and Howell will hold three rounds of 10-week workshops for the students \u2014 spring 2026, fall 2026, and spring 2027. The best designs from those workshops will be displayed in the exhibit.\u003C\/p\u003E\u003Cp\u003E\u201cThey\u2019ll feel more comfortable with computing and engineering as an introductory experience,\u201d Howell said. \u201cWhen they successfully build on it and realize they did this on a sheet of paper, it\u2019s exciting to think what they\u2019ll do when they get more sophisticated tools and access.\u201d\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EA new educational initiative, funded by the National Science Foundation, will teach Atlanta high school students how to create paper-based electronic devices. The workshops, led by Georgia Tech Assistant Professor HyunJoo Oh, will be hosted at the Robert C. Williams Museum of Papermaking. The workshops will culminate in a public exhibition of their work in 2027.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"A new Georgia Tech education initiative will teach Atlanta high school students to design paper-based electronics, with their creations to be featured in an exhibit at the Robert C. Williams Museum of Papermaking."}],"uid":"30829","created_gmt":"2025-09-05 16:49:24","changed_gmt":"2025-12-02 04:24:48","author":"Virginia Howell","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-08-27T00:00:00-04:00","iso_date":"2025-08-27T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677819":{"id":"677819","type":"image","title":"Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","body":null,"created":"1756309437","gmt_created":"2025-08-27 15:43:57","changed":"1756309437","gmt_changed":"2025-08-27 15:43:57","alt":"HyunJoo Oh","file":{"fid":"261760","name":"Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","image_path":"\/sites\/default\/files\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","mime":"image\/jpeg","size":130876,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg?itok=noERIW_h"}}},"media_ids":["677819"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"42941","name":"Art Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"179356","name":"Industrial Design"}],"keywords":[{"id":"194701","name":"go-resarchnews"},{"id":"9153","name":"Research Horizons"},{"id":"138041","name":"Robert C Williams paper making museum"},{"id":"38451","name":"georgia tech school of industrial design"},{"id":"181210","name":"ic-ubicomp-and-wearable"},{"id":"64711","name":"eco-friendly"},{"id":"167355","name":"silicon"},{"id":"7571","name":"PCB"},{"id":"93791","name":"Renewable Bioproducts Institute"},{"id":"191934","name":"National Science Foundation (NSF)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"},{"id":"194566","name":"Sustainable Systems"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"686528":{"#nid":"686528","#data":{"type":"news","title":"Georgia Tech Ranked No. 7 Globally in Interdisciplinary Science Rankings","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003EGeorgia Institute of Technology has been ranked 7th in the world in the \u003Ca href=\u0022https:\/\/www.timeshighereducation.com\/world-university-rankings\/interdisciplinary-science-rankings\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E2026 Times Higher Education Interdisciplinary Science Rankings\u003C\/a\u003E, in association with Schmidt Science Fellows. This designation underscores Georgia Tech\u2019s leadership in research that solves global challenges.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cInterdisciplinary research is at the heart of Georgia Tech\u2019s mission,\u201d said Tim Lieuwen, executive vice president for Research. \u201cOur faculty, students, and research teams work across disciplines to create transformative solutions in areas such as healthcare, energy, advanced manufacturing, and artificial intelligence. This ranking reflects the strength of our collaborative culture and the impact of our research on society.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAs a top R1 research university, Georgia Tech is shaping the future of basic and applied research by pursuing inventive solutions to the world\u2019s most pressing problems. Whether discovering cancer treatments or developing new methods to power our communities, work at the Institute focuses on improving the human condition.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ETeams from all seven Georgia Tech colleges, 11 interdisciplinary research institutes, the Georgia Tech Research Institute, Enterprise Innovation Institute, and hundreds of research labs and centers work together to transform ideas into \u003Ca href=\u0022https:\/\/research.gatech.edu\/real-life\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ereal results\u003C\/a\u003E.\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"The recognition highlights Tech\u2019s leadership in cross-disciplinary research that solves complex challenges."}],"field_summary":[{"value":"\u003Cp\u003EGeorgia Institute of Technology has been ranked 7th in the world in the \u003Ca href=\u0022https:\/\/www.timeshighereducation.com\/world-university-rankings\/interdisciplinary-science-rankings\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E2026 Times Higher Education Interdisciplinary Science Rankings\u003C\/a\u003E, in association with Schmidt Science Fellows. This designation underscores Georgia Tech\u2019s leadership in research that solves global challenges.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech has been ranked 7th in the world in the 2026 Times Higher Education Interdisciplinary Science Rankings"}],"uid":"27561","created_gmt":"2025-11-19 12:50:26","changed_gmt":"2025-11-20 14:07:38","author":"Angela Ayers","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-11-20T00:00:00-05:00","iso_date":"2025-11-20T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"678686":{"id":"678686","type":"image","title":"cancer-researchers.jpg","body":null,"created":"1763591127","gmt_created":"2025-11-19 22:25:27","changed":"1763591127","gmt_changed":"2025-11-19 22:25:27","alt":"Three Georgia Tech researchers working together in the lab on cancer research","file":{"fid":"262747","name":"cancer-researchers.jpg","image_path":"\/sites\/default\/files\/2025\/11\/19\/cancer-researchers.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/11\/19\/cancer-researchers.jpg","mime":"image\/jpeg","size":96118,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/11\/19\/cancer-researchers.jpg?itok=Xb8D05Lg"}}},"media_ids":["678686"],"groups":[{"id":"244191","name":"Brook Byers Institute for Sustainable Systems"},{"id":"155831","name":"Georgia Tech Manufacturing Institute (GTMI)"},{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"1276","name":"Georgia Tech Research Institute (GTRI)"},{"id":"545781","name":"Institute for Data Engineering and Science"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"69599","name":"IPaT"},{"id":"142761","name":"IRIM"},{"id":"1317","name":"News Briefs"},{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"},{"id":"372221","name":"Renewable Bioproducts Institute (RBI)"},{"id":"1188","name":"Research Horizons"},{"id":"367481","name":"SEI Energy"},{"id":"1280","name":"Strategic Energy Institute"}],"categories":[{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"193655","name":"Artificial Intelligence at Georgia Tech"},{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"193658","name":"Commercialization"},{"id":"145171","name":"Cybersecurity"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"193654","name":"Enterprise Innovation Institute"},{"id":"193653","name":"Georgia Tech Research Institute"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"},{"id":"39481","name":"National Security"},{"id":"193656","name":"Neuro Next Initiative"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"},{"id":"39491","name":"Renewable Bioproducts"},{"id":"39521","name":"Robotics"},{"id":"193657","name":"Space Research Initiative"},{"id":"194566","name":"Sustainable Systems"},{"id":"39541","name":"Systems"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAngela Ayers\u003C\/p\u003E","format":"limited_html"}],"email":["angela.ayers@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"686044":{"#nid":"686044","#data":{"type":"news","title":"Adaptive Phased Array Antenna Supports Hypersonic Flight Testing","body":[{"value":"\u003Cp\u003EWhen future hypersonic vehicles are tested far above the Pacific Ocean, the telemetry signals they transmit will be captured by a new type of modular antenna system developed by the Georgia Tech Research Institute (GTRI) in collaboration with prime contractor AV (formerly Blue Halo).\u0026nbsp;\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EKnown as Advanced Phased Array Antenna Technology (APAT), the system uses Radio Frequency System on Chip (RFSoC) technology to process the signals directly on the antenna\u2019s elements, allowing multiple signals to be tracked simultaneously in different directions. Both ground-based and airborne versions of the antenna technology have been built and tested for capturing the telemetry \u2013 data sent from the vehicles to monitor flight factors and conditions.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EBuilt for the Pentagon\u2019s Test Resource Management Center (TRMC), APAT uses commercial-off-the-shelf components paired with bespoke antenna elements and a custom system architecture to create a novel system with unparalleled operational flexibility. It is believed to be the largest all-digital antenna system ever designed by GTRI, which has been developing and building antennas for more than 25 years.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cWe\u2019re combining RF-efficient aperture design with an intelligently-selected RF front-end that goes directly to digital so that when they\u2019re tracking these telemetry streams, they can track multiple streams simultaneously,\u201d said Kevin Cook, a GTRI principal research engineer who is co-principal investigator on the project. \u201cIn earlier analog systems, you\u2019d have to just pick a stream or split the array (or multiple arrays) and lose signal gain. But with digital, you can track as many streams as you want, limited only by the system\u2019s processing power.\u201d\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.gtri.gatech.edu\/newsroom\/adaptive-phased-array-antenna-supports-hypersonic-flight-testing\u0022\u003ERead more in the GTRI Newsroom\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"Telemetry Signals Will be Captured by a New Type of Modular Antenna System "}],"field_summary":[{"value":"\u003Cp\u003EA new modular antenna system will capture telemetry signals from testing hypersonic vehicles over the Pacific Ocean.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"A new modular antenna system will capture telemetry signals from testing hypersonic vehicles over the Pacific Ocean."}],"uid":"27303","created_gmt":"2025-10-28 14:56:40","changed_gmt":"2025-10-28 15:05:25","author":"John Toon","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-10-28T00:00:00-04:00","iso_date":"2025-10-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"678475":{"id":"678475","type":"image","title":"Adaptive Phased Array Antenna ","body":"\u003Cp\u003EIn a GTRI facility, researchers prepare to test a subarray designed for use in the APAT project. (Credit: Sean McNeil, GTRI)\u0026nbsp;\u003C\/p\u003E","created":"1761663054","gmt_created":"2025-10-28 14:50:54","changed":"1761663368","gmt_changed":"2025-10-28 14:56:08","alt":"Researchers test Adaptive Phased Array Antenna","file":{"fid":"262501","name":"APAT-06.jpg","image_path":"\/sites\/default\/files\/2025\/10\/28\/APAT-06.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/10\/28\/APAT-06.jpg","mime":"image\/jpeg","size":2289492,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/10\/28\/APAT-06.jpg?itok=fpMQCYlI"}}},"media_ids":["678475"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"194610","name":"National Interests\/National Security"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39481","name":"National Security"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["gtri.media@gtri.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"685099":{"#nid":"685099","#data":{"type":"news","title":"A Step Forward: New Smart Shoe Insert Could Improve Mobility for People With Walking Problems","body":[{"value":"\u003Cp\u003EMaintaining balance while walking may seem automatic \u2014 until suddenly it isn\u2019t. Gait impairment, or difficulty with walking, is a major liability for stroke and Parkinson\u2019s patients. \u0026nbsp;Not only do gait issues slow a person down, but they are also one of the top causes of falls. And solutions are often limited to time-intensive and costly physical therapy.\u003C\/p\u003E\u003Cp\u003EA new wearable electronic device that can be inserted inside any shoe may be able to address this challenge.\u0026nbsp;The\u0026nbsp;device, developed by Georgia Tech researchers,\u0026nbsp;is made of more than 170 thin, flexible sensors that measure foot pressure \u2014 a key metric for determining whether someone is off-balance. The sensor collects pressure data, which the researchers could eventually use to predict which changes lead to falls.\u003C\/p\u003E\u003Cp\u003EThe researchers presented their work in the paper, \u201c\u003Ca href=\u0022https:\/\/pubs.acs.org\/doi\/10.1021\/acsami.5c08296\u0022\u003EFlexible Smart Insole and Plantar Pressure Monitoring Using Screen-Printed Nanomaterials and Piezoresistive Sensors\u003C\/a\u003E.\u201d It was the cover paper in the August edition of \u003Cem\u003EACSApplied Materials \u0026amp; Interfaces\u003C\/em\u003E.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EPressure Points\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003ESmart footwear isn\u2019t new \u2014 but making it both functional and affordable has been nearly impossible. \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/yeo\u0022\u003EW. Hong Yeo\u2019s\u003C\/a\u003E lab has made its reputation on creating malleable\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/feature\/pacifier\u0022\u003Emedical\u003C\/a\u003E\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/feature\/tbi\u0022\u003Edevices\u003C\/a\u003E. The researchers rely on the common commercial practice of screen-printing electronics to screen-print sensors. They realized they could apply this printing technique to address walking difficulties.\u003C\/p\u003E\u003Cp\u003E\u201cScreen-printing is advantageous for developing medical devices because it\u0027s low-cost and scalable,\u201d said Yeo, the Peterson Professor and Harris Saunders Jr. Professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E. \u201cSo, when it comes to thinking about commercialization and mass production, screen-printing is a really good platform because it\u0027s already been used in the electronics industry.\u201d\u003C\/p\u003E\u003Cp\u003EMaking the device accessible to the everyday user was paramount for Yeo\u2019s team. A key innovation was making sure the wearable is thin enough to be comfortable for the wearer and easy to integrate with other assistive technologies. The device uses Bluetooth, enabling a smartphone to collect data and offer the future possibility of integrating with existing health monitoring applications.\u003C\/p\u003E\u003Cp\u003EPossibilities for real-world adaptation are promising, thanks to these innovations. Lightweight and small, the wearable could be paired with robotics devices to help stroke and Parkinson\u2019s patients and the elderly walk. The high number of sensors could make it easier for researchers to apply a machine learning algorithm that could predict falls. The device could even enable professional athletes to analyze their performance.\u003C\/p\u003E\u003Cp\u003ERegardless of how the device is used, Yeo intends to keep its cost under $100. So far, with funding from the National Science Foundation, the researchers have tested the device on healthy subjects. They hope to expand the study to people with gait impairments and, eventually, make the device commercially available.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI\u0027m trying to bridge the gap between the lack of available devices in hospitals or medical practices and the lab-scale devices,\u201d Yeo said. \u201cWe want these devices to be ready now \u2014 not in 10 years.\u201d\u003C\/p\u003E\u003Cp\u003EWith its low-cost, wireless design and potential for real-time feedback, this smart insole could transform how we monitor and manage walking difficulties \u2014 not just in clinical settings, but in everyday life.\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cstrong\u003EThe affordable wearable measures foot pressure and could improve stroke and Parkinson\u2019s therapy.\u003C\/strong\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The affordable wearable measures foot pressure and could improve stroke and Parkinson\u2019s therapy."}],"uid":"34541","created_gmt":"2025-09-18 22:31:18","changed_gmt":"2025-09-23 15:49:45","author":"Tess Malone","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-09-18T00:00:00-04:00","iso_date":"2025-09-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"678076":{"id":"678076","type":"image","title":"DSC_0589.jpeg","body":"\u003Cp\u003EHong Yeo holds the wearable electronic device made of more than 170 thin, flexible sensors that measure foot pressure \u2014 a key metric for determining whether someone is off-balance. [Photos by Joya Chapman]\u003C\/p\u003E","created":"1758235084","gmt_created":"2025-09-18 22:38:04","changed":"1758237470","gmt_changed":"2025-09-18 23:17:50","alt":"Hong Yeo holds shoe insert.","file":{"fid":"262057","name":"DSC_0589.jpeg","image_path":"\/sites\/default\/files\/2025\/09\/18\/DSC_0589.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/09\/18\/DSC_0589.jpeg","mime":"image\/jpeg","size":3115147,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/09\/18\/DSC_0589.jpeg?itok=x4J_Ca3H"}},"678077":{"id":"678077","type":"image","title":"DSC_0658.jpeg","body":"\u003Cp\u003EThe\u0026nbsp;wearable electronic device, developed by Georgia Tech researchers,\u0026nbsp;is made of more than 170 thin, flexible sensors that measure foot pressure \u2014 a key metric for determining whether someone is off-balance.\u003C\/p\u003E","created":"1758235121","gmt_created":"2025-09-18 22:38:41","changed":"1758235121","gmt_changed":"2025-09-18 22:38:41","alt":"Shoe insert","file":{"fid":"262058","name":"DSC_0658.jpeg","image_path":"\/sites\/default\/files\/2025\/09\/18\/DSC_0658.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/09\/18\/DSC_0658.jpeg","mime":"image\/jpeg","size":1245444,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/09\/18\/DSC_0658.jpeg?itok=MxJTqd2q"}}},"media_ids":["678076","678077"],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"66220","name":"Neuro"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"188084","name":"go-ipat"},{"id":"188087","name":"go-irim"},{"id":"187423","name":"go-bio"},{"id":"172970","name":"go-neuro"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"193658","name":"Commercialization"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"},{"id":"39501","name":"People and Technology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[{"id":"71891","name":"Health and Medicine"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ETess Malone, Senior Research Writer\/Editor\u003C\/p\u003E\u003Cp\u003Etess.malone@gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"684209":{"#nid":"684209","#data":{"type":"news","title":"Atlanta Youth to Design \u2018Future of Paper\u2019 Exhibit at Papermaking Museum","body":[{"value":"\u003Cp\u003EA new educational initiative is set to teach Atlanta high school students how to create electronics, wearable devices, and other technologies that are built on paper and craft materials.\u003C\/p\u003E\u003Cp\u003EWorkshops hosted by the \u003Ca href=\u0022https:\/\/paper.gatech.edu\/visit-0\u0022\u003E\u003Cstrong\u003ERobert C. Williams Museum of Papermaking\u003C\/strong\u003E\u003C\/a\u003E and led by Georgia Tech Assistant Professor \u003Ca href=\u0022https:\/\/id.gatech.edu\/people\/hyunjoo-oh\u0022\u003E\u003Cstrong\u003EHyunJoo Oh\u003C\/strong\u003E\u003C\/a\u003E will introduce about 60 students from Atlanta Public Schools to paper-based electronics through hands-on workshops.\u003C\/p\u003E\u003Cp\u003EThe Williams Museum will open an exhibit titled \u201cThe Future of Paper\u201d that displays designs created in the workshop alongside visionary examples of paper-based technologies from Georgia Tech researchers.\u003C\/p\u003E\u003Cp\u003EThe exhibit, funded by the National Science Foundation, is slated to open to the public in 2027.\u003C\/p\u003E\u003Cp\u003EOh is a researcher with joint appointments in the \u003Ca href=\u0022https:\/\/ic.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Interactive Computing\u003C\/strong\u003E\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/id.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Industrial Design.\u003C\/strong\u003E\u003C\/a\u003EShe leads the \u003Ca href=\u0022https:\/\/www.codecraft.group\/\u0022\u003E\u003Cstrong\u003EComputational Design and Craft (CoDe Craft) Group\u003C\/strong\u003E\u003C\/a\u003E at Georgia Tech, where her team integrates everyday craft materials with computing to support creative exploration.\u003C\/p\u003E\u003Cp\u003EOh believes paper could be widely used to support prototyping printed circuit boards (PCBs) as a sustainable alternative to silicon. While silicon is the most prominent material used by technology companies to build computer chips, it isn\u2019t biodegradable. And it can be harmful to the environment and contribute to e-waste.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EPaper, however, provides an eco-friendly platform for printing conductive traces and mounting small electronic components. With the expansion of printed electronic tools and techniques, paper and similar materials have become more popular among technologists who develop sensing technologies and wearable devices.\u003C\/p\u003E\u003Cp\u003E\u201cIt\u2019s widely available and accessible,\u201d Oh said. \u201cI can\u2019t think of anything more affordable and approachable that young makers and the broader maker community can use for circuits than paper.\u003C\/p\u003E\u003Cp\u003E\u201cPrinted electronics traditionally required expensive equipment, but with recent innovation in materials science, conductive materials such as conductive pens and paint available in local arts and crafts stores can be used to build circuits on paper. We can also print circuits using a regular office inkjet printer with silver ink.\u201d\u003C\/p\u003E\u003Ch4\u003E\u003Cstrong\u003EShared Vision\u003C\/strong\u003E\u003C\/h4\u003E\u003Cp\u003EShortly after arriving at Georgia Tech in 2019, Oh knew she had to develop a project that would let her partner with the Williams Museum.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI was captivated by the museum\u2019s space and its celebration of paper,\u201d she said. \u201cI wanted a collaboration that would integrate technology in a way that complemented and respected the museum\u2019s existing beauty.\u201d\u003C\/p\u003E\u003Cp\u003EMuseum director Virginia Howell said the project was a perfect match for the museum, which has documented the history of papermaking since it was founded in 1939 by the Massachusetts Institute of Technology. Georgia Tech became the new home of the museum in 2003.\u003C\/p\u003E\u003Cp\u003EWith more than 100,000 objects in its collection \u2014 some dating back as far as 2,000 years ago \u2014 the museum is unique, Howell said. Most papermaking museums are typically located at an historic mill, but the Williams Museum covers the history of papermaking.\u003C\/p\u003E\u003Cp\u003EHowell said that before she met Oh, she had been looking for an exhibit that would display the possible future of papermaking.\u003C\/p\u003E\u003Cp\u003E\u201cWe do the past of paper fantastically well, and we do the present of paper well through our changing exhibitions,\u201d Howell said. \u201cThe future of paper is something we haven\u2019t spent a lot of time interpreting.\u201d\u003C\/p\u003E\u003Ch4\u003E\u003Cstrong\u003ECrafting the Future\u003C\/strong\u003E\u003C\/h4\u003E\u003Cp\u003EOh and Howell agree that young people will shape that future. Oh said paper is commonly linked to art in the education sphere. As the material\u2019s use in technology increases, however, it can funnel the interests of students toward engineering and computing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EIncorporating paper and craft materials can invite more students to explore engineering and computing concepts. After all, a circuit board created on paper isn\u2019t so different from one built on a silicon PCB, Oh said.\u003C\/p\u003E\u003Cp\u003E\u201cThis approach can excite the kind of students who usually feel disconnected from electronics and computing,\u201d she said. \u201cIt gives those who only see themselves as creative or artistic a way to enjoy technology and resonate with it.\u003C\/p\u003E\u003Cp\u003E\u201cUsually when I work with young students, especially girls, if I start with something technical, their interest wanes. But when I present those same ideas through art using familiar materials like paper, they become more engaged and confident. That\u2019s when they start to flourish.\u201d\u003C\/p\u003E\u003Cp\u003EOh and Howell will hold three rounds of 10-week workshops for the students \u2014 spring 2026, fall 2026, and spring 2027. The best designs from those workshops will be displayed in the exhibit.\u003C\/p\u003E\u003Cp\u003E\u201cThey\u2019ll feel more comfortable with computing and engineering as an introductory experience,\u201d Howell said. \u201cWhen they successfully build on it and realize they did this on a sheet of paper, it\u2019s exciting to think what they\u2019ll do when they get more sophisticated tools and access.\u201d\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EA new educational initiative, funded by the National Science Foundation, will teach Atlanta high school students how to create paper-based electronic devices. The workshops, led by Georgia Tech Assistant Professor HyunJoo Oh, will be hosted at the Robert C. Williams Museum of Papermaking. The workshops will culminate in a public exhibition of their work in 2027.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"A new Georgia Tech education initiative will teach Atlanta high school students to design paper-based electronics, with their creations to be featured in an exhibit at the Robert C. Williams Museum of Papermaking."}],"uid":"36530","created_gmt":"2025-08-27 15:43:18","changed_gmt":"2025-08-28 16:18:26","author":"Nathan Deen","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-08-27T00:00:00-04:00","iso_date":"2025-08-27T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677819":{"id":"677819","type":"image","title":"Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","body":null,"created":"1756309437","gmt_created":"2025-08-27 15:43:57","changed":"1756309437","gmt_changed":"2025-08-27 15:43:57","alt":"HyunJoo Oh","file":{"fid":"261760","name":"Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","image_path":"\/sites\/default\/files\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg","mime":"image\/jpeg","size":130876,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/08\/27\/Hyunjoo-Oh_86A9064-Enhanced-NR.jpg?itok=noERIW_h"}}},"media_ids":["677819"],"groups":[{"id":"47223","name":"College of Computing"},{"id":"1188","name":"Research Horizons"},{"id":"50876","name":"School of Interactive Computing"}],"categories":[{"id":"42941","name":"Art Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"179356","name":"Industrial Design"}],"keywords":[{"id":"194701","name":"go-resarchnews"},{"id":"9153","name":"Research Horizons"},{"id":"138041","name":"Robert C Williams paper making museum"},{"id":"38451","name":"georgia tech school of industrial design"},{"id":"181210","name":"ic-ubicomp-and-wearable"},{"id":"64711","name":"eco-friendly"},{"id":"167355","name":"silicon"},{"id":"7571","name":"PCB"},{"id":"93791","name":"Renewable Bioproducts Institute"},{"id":"191934","name":"National Science Foundation (NSF)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"},{"id":"39491","name":"Renewable Bioproducts"},{"id":"194566","name":"Sustainable Systems"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"683624":{"#nid":"683624","#data":{"type":"news","title":"Finding Clarity in the Noise: A New Way to Recover Hidden Signals at the Nanoscale","body":[{"value":"\u003Cp\u003EIn the world of nanotechnology, seeing clearly isn\u2019t easy. It\u2019s even harder when you\u2019re trying to understand how a material\u2019s properties relate to its structure at the nanoscale.\u003Cstrong\u003E \u003C\/strong\u003ETools like piezoresponse force microscopy (PFM) help scientists peer into the nanoscale functionality of materials, revealing how they respond to\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/news\/me.gatech.edu\u0022\u003E\u003Cstrong\u003E \u003C\/strong\u003E\u003C\/a\u003Eelectric fields. But those signals are often buried in noise, especially in instances where the most interesting physics happens.\u003C\/p\u003E\u003Cp\u003ENow, researchers at Georgia Tech have developed a powerful new method to extract meaningful information from even the noisiest data, or when, alternatively, the response of the material is the smallest. Their approach, which combines physical modeling with advanced statistical reconstruction, could significantly improve the accuracy and confidence of nanoscale measurement properties.\u003C\/p\u003E\u003Cp\u003EThe team\u2019s findings, led by \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/bassiri-gharb\u0022\u003E\u003Cstrong\u003ENazanin Bassiri-Gharb\u003C\/strong\u003E\u003C\/a\u003E, Harris Saunders, Jr. Chair and Professor in the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/strong\u003E\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Materials Science and Engineering\u003C\/strong\u003E\u003C\/a\u003E (MSE), \u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/smtd.202500318\u0022\u003E\u003Cstrong\u003Eare reported in \u003C\/strong\u003E\u003Cem\u003E\u003Cstrong\u003ESmall Methods\u003C\/strong\u003E\u003C\/em\u003E\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003ECo-lead authors Kerisha Williams, a former MSE Ph.D. student, and Henry Shaowu Yuchi, a former Ph.D. student in the \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/\u0022\u003E\u003Cstrong\u003EH. Milton Stewart School of Industrial and Systems Engineering\u003C\/strong\u003E\u003C\/a\u003E (ISyE), spearheaded the study. Other collaborators include Kevin Ligonde, a Ph.D. student in the Woodruff School; Mathew Repasky, a former Ph.D. student in ISyE; and \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/users\/yao-xie\u0022\u003E\u003Cstrong\u003EYao Xie\u003C\/strong\u003E\u003C\/a\u003E, Coca-Cola Foundation Chair and Professor in ISyE.\u003C\/p\u003E\u003Cp\u003EThis research was initiated through Georgia Tech\u2019s Forming Teams and Moving Teams Forward seed grant program, launched by the Office of the Executive Vice President for Research in 2021. Designed to support cross-disciplinary collaboration, the program helps build research teams that align with the growing national emphasis on large-scale, team-based projects. The grant supported early work by Bassiri-Gharb, Xie, and \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/juan-pablo-correa-baena\u0022\u003E\u003Cstrong\u003EJuan-Pablo Correa-Baena\u003C\/strong\u003E\u003C\/a\u003E, associate professor and Goizueta Early Career Faculty Chair in MSE.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/news\/finding-clarity-noise-new-way-recover-hidden-signals-nanoscale\u0022\u003ERead the full story on the George W. Woodruff School of Mechanical Engineering website\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EIn the world of nanotechnology, seeing clearly isn\u2019t easy. It\u2019s even harder when you\u2019re trying to understand how a material\u2019s properties relate to its structure at the nanoscale.\u003Cstrong\u003E \u003C\/strong\u003ETools like piezoresponse force microscopy (PFM) help scientists peer into the nanoscale functionality of materials, revealing how they respond to\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/news\/me.gatech.edu\u0022\u003E\u003Cstrong\u003E \u003C\/strong\u003E\u003C\/a\u003Eelectric fields. But those signals are often buried in noise, especially in instances where the most interesting physics happens.\u003C\/p\u003E\u003Cp\u003ENow, researchers at Georgia Tech have developed a powerful new method to extract meaningful information from even the noisiest data, or when, alternatively, the response of the material is the smallest. Their approach, which combines physical modeling with advanced statistical reconstruction, could significantly improve the accuracy and confidence of nanoscale measurement properties.\u003C\/p\u003E\u003Cp\u003EThe team\u2019s findings, led by \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/bassiri-gharb\u0022\u003E\u003Cstrong\u003ENazanin Bassiri-Gharb\u003C\/strong\u003E\u003C\/a\u003E, Harris Saunders, Jr. Chair and Professor in the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/strong\u003E\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Materials Science and Engineering\u003C\/strong\u003E\u003C\/a\u003E (MSE), \u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/smtd.202500318\u0022\u003E\u003Cstrong\u003Eare reported in \u003C\/strong\u003E\u003Cem\u003E\u003Cstrong\u003ESmall Methods\u003C\/strong\u003E\u003C\/em\u003E\u003C\/a\u003E.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech researchers develop a method to extract reliable information from noisy data in nanoscale imaging, advancing the study of ferroelectric materials."}],"uid":"35851","created_gmt":"2025-08-07 17:48:04","changed_gmt":"2025-08-22 13:39:57","author":"aritchie6","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-08-07T00:00:00-04:00","iso_date":"2025-08-07T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677607":{"id":"677607","type":"image","title":"IMG_2412.jpg","body":"\u003Cp\u003E\u003Cem\u003ENazanin Bassiri-Gharb, Harris Saunders, Jr. Chair and Professor in the Woodruff School\u0026nbsp;and MSE, and\u0026nbsp;Yao Xie, Coca-Cola Foundation Chair and Professor in ISyE.\u003C\/em\u003E\u003C\/p\u003E","created":"1754588928","gmt_created":"2025-08-07 17:48:48","changed":"1754588928","gmt_changed":"2025-08-07 17:48:48","alt":"Nazanin Bassiri-Gharb, Harris Saunders, Jr. Chair and Professor in the Woodruff School and MSE, and Yao Xie, Coca-Cola Foundation Chair and Professor in ISyE.","file":{"fid":"261520","name":"IMG_2412.jpg","image_path":"\/sites\/default\/files\/2025\/08\/07\/IMG_2412.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/08\/07\/IMG_2412.jpg","mime":"image\/jpeg","size":1659693,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/08\/07\/IMG_2412.jpg?itok=BD1OZR4p"}}},"media_ids":["677607"],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:ashley.ritchie@me.gatech.edu\u0022\u003EAshley Ritchie\u003C\/a\u003E\u003Cbr\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"683386":{"#nid":"683386","#data":{"type":"news","title":"Meet Tommer Ender: Interim Director of the Georgia Tech Research Institute (GTRI)","body":[{"value":"\u003Cp\u003ETommer Ender, Ph.D., serves as the interim Director of the Georgia Tech Research Institute (GTRI) and Senior Vice President for Georgia Tech, stepping into the role following the departure of Jim Hudgens, who became President and CEO of UL Research Institutes in June.\u003Cbr\u003E\u003Cbr\u003EEnder takes the helm at GTRI as it reaches a new milestone in awards and revenue. During fiscal year 2025, GTRI secured $964 million in new awards, up 11% from the previous year, and earned $980 million in revenue. GTRI\u0027s renowned researchers combine science, engineering, economics, policy, and technical expertise to support national security, the state of Georgia, and industry.\u003Cbr\u003E\u003Cbr\u003E\u201cTommer has been a driving force behind GTRI\u2019s growth and evolution, and I\u2019m grateful he\u2019s serving in this interim capacity,\u201d said Tim Lieuwen, Georgia Tech\u2019s executive vice president for research. \u201cHis deep roots at Georgia Tech \u2014 as an alumnus, researcher, and executive \u2014 give him a uniquely steady hand at a pivotal time. He leads with both technical expertise and human insight, a rare combination that will serve GTRI well in the months ahead.\u201d\u003Cbr\u003E\u003Cbr\u003EEnder leads over 3,000 GTRI employees and researchers across a variety of disciplines, including autonomous systems, cybersecurity, electromagnetics, electronic warfare, modeling and simulation, sensors, systems engineering, test and evaluation, and threat systems. As interim Senior Vice President of Georgia Tech, Ender also serves on the President\u2019s Cabinet helping set operational and strategic direction for the Institute and reports to Tim Lieuwen, Georgia Tech\u2019s executive vice president for Research.\u003Cbr\u003E\u003Cbr\u003EWith nearly 25 years of experience focused on national security and systems engineering research, Ender most recently served as GTRI\u2019s Deputy Director for Research, leading the Electronics, Optics, and Systems Directorate (EOSD). He managed operations for an 800-person unit with an annual $300 million research portfolio across three research laboratories, and was also a member of the GTRI Executive Council, helping set GTRI strategy and informing critical decisions impacting the organization. Ender was previously the Director of GTRI\u2019s Electronic Systems (ELSYS) Laboratory, which has over 500 personnel across 12 locations in the United States.\u0026nbsp;\u003Cbr\u003E\u003Cbr\u003EEnder\u2019s personal area of research includes development of collaborative, executable Model -Based Systems Engineering (MBSE) tools utilizing multidisciplinary design optimization and trade space analytics applied to complex problems. He has also served as an instructor and course developer for Georgia Tech\u2019s Professional Master\u2019s in Applied Systems Engineering, and has been a member of several doctoral and master\u2019s thesis committees at Georgia Tech and other universities.\u0026nbsp;\u003Cbr\u003E\u003Cbr\u003E\u201cFor the past two decades, I have had the privilege to work with GTRI\u2019s renowned team of researchers who deliver innovative solutions to the world\u2019s most complex issues,\u201d said Ender. \u201cI am humbled to have been appointed interim Director of GTRI to support our mission focused on national security, improving the human condition, serving the state of Georgia, and educating future technology leaders.\u201d\u003Cbr\u003E\u003Cbr\u003EEnder has been invited to participate in a number of national committees, including at the National Academies of Science, Engineering and Medicine, offering up his expertise in the areas of systems and digital engineering. He is also a Senior Member of the Institute of Electrical and Electronics Engineers (IEEE), and an active member of the International Council on Systems Engineers (INCOSE), National Defense Industrial Association (NDIA), and Military Operations Research Society (MORS), regularly publishing with those organizations.\u0026nbsp;\u003Cbr\u003E\u003Cbr\u003EA three-time alumnus, Ender earned his bachelor\u2019s, master\u2019s and doctorate degrees in Aerospace Engineering from the Georgia Institute of Technology. He is a certified Project Management Professional (PMP) and Certified Systems Engineering Professional (CSEP).\u003Cbr\u003E\u003Cbr\u003EGeorgia Tech will be conducting a national search to identify the permanent director of GTRI, with more details to follow.\u003C\/p\u003E\u003Cp\u003EFor more information, please contact \u003Ca href=\u0022mailto:gtri.media@gtri.gatech.edu\u0022\u003Egtri.media@gtri.gatech.edu\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo learn more about GTRI, visit: \u003Ca href=\u0022https:\/\/gtri.gatech.edu\/\u0022\u003EGeorgia Tech Research Institute | GTRI\u003C\/a\u003E\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ETommer Ender, Ph.D., is the interim Director of GTRI and Senior VP at Georgia Tech, succeeding Jim Hudgens, now President and CEO of UL Research Institutes.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Tommer Ender, Ph.D., is the interim Director of GTRI and Senior VP at Georgia Tech, succeeding Jim Hudgens, now President and CEO of UL Research Institutes."}],"uid":"35874","created_gmt":"2025-07-30 15:26:07","changed_gmt":"2025-07-30 15:44:51","author":"Anna Akins","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-07-30T00:00:00-04:00","iso_date":"2025-07-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677532":{"id":"677532","type":"image","title":"Tommer Ender ","body":"\u003Cp\u003EGTRI\u0027s interim Director Tommer Ender takes the helm as the organization reaches a new milestone in awards and revenue. During fiscal year 2025, GTRI secured $964 million in new awards, up 11% from the previous year, and earned $980 million in revenue.\u0026nbsp;\u003C\/p\u003E","created":"1753889178","gmt_created":"2025-07-30 15:26:18","changed":"1753889178","gmt_changed":"2025-07-30 15:26:18","alt":"A headshot of GTRI\u0027s interim Director Tommer Ender. ","file":{"fid":"261440","name":"Tommer-Ender_interim_director.jpg","image_path":"\/sites\/default\/files\/2025\/07\/30\/Tommer-Ender_interim_director.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/07\/30\/Tommer-Ender_interim_director.jpg","mime":"image\/jpeg","size":3802441,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/07\/30\/Tommer-Ender_interim_director.jpg?itok=6UnzQxuS"}},"677531":{"id":"677531","type":"image","title":"Tommer Ender","body":"\u003Cp\u003EGTRI\u0027s interim Director Tommer Ender takes the helm as the organization reaches a new milestone in awards and revenue. During fiscal year 2025, GTRI secured $964 million in new awards, up 11% from the previous year, and earned $980 million in revenue.\u0026nbsp;\u003C\/p\u003E","created":"1753889178","gmt_created":"2025-07-30 15:26:18","changed":"1753889178","gmt_changed":"2025-07-30 15:26:18","alt":"A photo of GTRI\u0027s interim Director Tommer Ender, who is seated. ","file":{"fid":"261439","name":"Ender_Tommer_.jpg","image_path":"\/sites\/default\/files\/2025\/07\/30\/Ender_Tommer_.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/07\/30\/Ender_Tommer_.jpg","mime":"image\/jpeg","size":62507,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/07\/30\/Ender_Tommer_.jpg?itok=Pr9jIqU3"}}},"media_ids":["677532","677531"],"groups":[{"id":"1276","name":"Georgia Tech Research Institute (GTRI)"}],"categories":[{"id":"136","name":"Aerospace"},{"id":"130","name":"Alumni"},{"id":"132","name":"Institute Leadership"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"44641","name":"institute communications"},{"id":"415","name":"Georgia Tech Research Institute"},{"id":"186313","name":"Aerospace Engineering School"},{"id":"187881","name":"Electronic Systems (ELSYS) Laboratory"},{"id":"543","name":"National Security"},{"id":"188423","name":"improving the human condition"},{"id":"190532","name":"state of Georgia impact"},{"id":"189094","name":"educate future leaders"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193653","name":"Georgia Tech Research Institute"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["gtri.media@gtri.gatech.edu","nikki.troxclair@gtri.gatech.edu","michelle.gowdy@gtri.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"683062":{"#nid":"683062","#data":{"type":"news","title":"Lighting the Way to Faster Data Transfer","body":[{"value":"\u003Cp\u003EThe future of computing is lit, literally.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EAs microchips grow more complex and data demands intensify, traditional electrical connections are hitting their limits. Speed is king in today\u2019s digital systems, but a major bottleneck remains in how quickly information can move between components like processors and memory.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThis lag is one of the most pressing challenges in advanced hardware design. While processors continue to accelerate, the links that connect them can\u0027t keep pace.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EGeorgia Tech researcher \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/ali-adibi\u0022\u003E\u003Cstrong\u003EAli Adibi\u003C\/strong\u003E\u003C\/a\u003E is addressing this problem with $5.3 million in funding over three years from the Defense Advanced Research Projects Agency (DARPA). His project is part of DARPA\u2019s \u003Ca href=\u0022https:\/\/www.darpa.mil\/research\/programs\/happi-heterogeneous\u0022 rel=\u0022noreferrer\u0022\u003E\u003Cstrong\u003EHeterogeneous Adaptively Produced Photonic Interfaces\u003C\/strong\u003E\u003C\/a\u003E (HAPPI) program, which aims to dramatically boost the speed and density of data transmission within microsystems by using light instead of electricity.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cOptical solutions are highly advantageous for providing the required data rates and power consumptions, and our project is formed to address the most important challenges for achieving the system-level performance,\u201d said Adibi, a professor and Joseph M. Pettit Chair in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Electrical and Computer Engineering\u003C\/strong\u003E\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe project brings together a multidisciplinary team, including collaborators from the Massachusetts Institute of Technology, University of Florida, NY CREATES, and NHanced Semiconductors, Inc.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EGoing Vertical\u003C\/strong\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EUnlike traditional optical communication, which connects systems across distances, this project focuses on enabling ultra-fast, low-loss communication \u003Cem\u003Ewithin\u003C\/em\u003Eelectronic systems.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe key innovation is vertically connecting electronic chips in a compact stack. This design helps overcome the limitations of planar optical routing geometries (layouts that guide light horizontally across a chip) which are often not compatible with the dense, 3D chip architectures needed for next-generation computing.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EAdibi\u2019s team is developing a novel 3D optical routing system that can transmit data with minimal loss, high bandwidth, and compact components. The system is designed to scale to large arrays of interconnected chips with minimal interference between data channels.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003ESmarter Design with Machine Learning\u003C\/strong\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EAt the heart of the project is the use of machine learning (ML) to help design and optimize the light-based communication system.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EML is used to shape and fine-tune the tiny structures that guide light through and between chips. This includes finding the best sizes, shapes, and layouts for components like couplers and waveguides, so they can be made smaller, work more efficiently, and fit into dense chip layouts.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cDesigning a complete, scalable 3D optical routing structure involves innumerable variables,\u201d Adibi said. \u201cMachine learning helps us navigate that complexity and find solutions that would be nearly impossible to identify manually.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003ETiny \u0022Mirrors\u0022\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EAnother key innovation involves specialized optical structures, or what Adibi refers to as \u201cartificial mirrors\u201d.\u003C\/p\u003E\u003Cp\u003EThe tiny, precisely shaped structures, called metagratings, are embedded in the chip material to redirect light vertically between layers with minimal loss. These components are designed to guide light efficiently in tight spaces, helping connect stacked chips without losing signal strength.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cImagine light traveling through a chip and suddenly being redirected straight up. That\u2019s the kind of precise control we\u2019re achieving,\u201d Adibi explained.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThese innovations, along with advanced techniques for building vertical light paths through thick silicon layers and new packaging solutions that keep components precisely aligned, have shown promise on their own. But combining them is what enables dense, high-speed, low-loss communication between vertically stacked chips, something that no system has achieved before, according to Adibi.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cAs with any complex system, success depends on how well everything is structured and optimized,\u201d he said. \u201cOnce everything is in alignment, data can move faster, more efficiently, and with less energy consumption for communicating each bit of data.\u201d\u003C\/p\u003E\u003Cp\u003E\u003Cbr\u003E\u003Cem\u003E\u003Cstrong\u003EAbout the Research\u003C\/strong\u003E\u003C\/em\u003E\u003Cbr\u003E\u003Cem\u003EThis research is supported by the Defense Advanced Research Projects Agency (DARPA) \u003C\/em\u003E\u003Ca href=\u0022https:\/\/www.darpa.mil\/research\/programs\/happi-heterogeneous\u0022 rel=\u0022noreferrer\u0022\u003E\u003Cem\u003E\u003Cstrong\u003EHeterogeneous Adaptively Produced Photonic Interfaces (HAPPI) program\u003C\/strong\u003E\u003C\/em\u003E\u003C\/a\u003E\u003Cem\u003E. Notice ID DARPA-SN-24-105.\u003C\/em\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EDARPA is backing Professor Ali Adibi\u2019s work to use light, not electricity, to move data faster and more efficiently in next-generation electronics.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"DARPA is backing Professor Ali Adibi\u2019s work to use light, not electricity, to move data faster and more efficiently in next-generation electronics. "}],"uid":"36172","created_gmt":"2025-07-09 18:43:36","changed_gmt":"2025-07-09 18:49:29","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-07-09T00:00:00-04:00","iso_date":"2025-07-09T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677375":{"id":"677375","type":"image","title":"25-2304-Darpa-Happi-Ali-Adibi-007.JPG","body":"\u003Cp\u003ESilicon-on-insulator (SOI) wafer used in a multi-chip module featuring 3D optical interconnects. \u003Cem\u003E(Photo: Allison Carter)\u003C\/em\u003E\u003C\/p\u003E","created":"1752086638","gmt_created":"2025-07-09 18:43:58","changed":"1752086638","gmt_changed":"2025-07-09 18:43:58","alt":"Photo of Silicon-on-insulator (SOI) wafer","file":{"fid":"261269","name":"25-2304-Darpa-Happi-Ali-Adibi-007.JPG","image_path":"\/sites\/default\/files\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-007.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-007.JPG","mime":"image\/jpeg","size":1306660,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-007.JPG?itok=b2dPJ-8H"}},"677376":{"id":"677376","type":"image","title":"MulitChip.jpg","body":"\u003Cp\u003EA schematic illustration of a multi-chip structure with 3D optical routing. The key parts of Adibi\u0027s proposed system are: 1) multi-layer planar waveguides, 2) free-form couplers, and 3) a dense vertical waveguide array.\u003C\/p\u003E","created":"1752086638","gmt_created":"2025-07-09 18:43:58","changed":"1752086638","gmt_changed":"2025-07-09 18:43:58","alt":"A schematic illustration of a multi-chip structure with 3D optical routing.","file":{"fid":"261270","name":"MulitChip.jpg","image_path":"\/sites\/default\/files\/2025\/07\/09\/MulitChip.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/07\/09\/MulitChip.jpg","mime":"image\/jpeg","size":7987738,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/07\/09\/MulitChip.jpg?itok=KD-djsVC"}},"677374":{"id":"677374","type":"image","title":"25-2304-Darpa-Happi-Ali-Adibi-006.JPG","body":"\u003Cdiv\u003E\u003Cdiv\u003E\u003Cdiv\u003E\u003Cp\u003EBy combining advanced optical techniques, Professor Ali Adibi\u2019s 3D optical routing systems looks to enable vertical chip integration in a way not previously achieved. \u003Cem\u003E(Photo: Allison Carter)\u003C\/em\u003E\u003C\/p\u003E\u003C\/div\u003E\u003C\/div\u003E\u003C\/div\u003E","created":"1752086638","gmt_created":"2025-07-09 18:43:58","changed":"1752086638","gmt_changed":"2025-07-09 18:43:58","alt":"Professor Ali Adibi in front of testing equipment for his 3D optical routing system.","file":{"fid":"261268","name":"25-2304-Darpa-Happi-Ali-Adibi-006.JPG","image_path":"\/sites\/default\/files\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-006.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-006.JPG","mime":"image\/jpeg","size":1563309,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/07\/09\/25-2304-Darpa-Happi-Ali-Adibi-006.JPG?itok=NoOrAjDb"}}},"media_ids":["677375","677376","677374"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"194610","name":"National Interests\/National Security"},{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"682875":{"#nid":"682875","#data":{"type":"news","title":"Hao Appointed to ON Semiconductor Junior Professorship ","body":[{"value":"\u003Cp\u003EGeorgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E assistant professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECong \u201cCallie\u201d Hao\u003C\/a\u003E was appointed to the ON Semiconductor Junior Professorship. The professorship, established in 1999, recognizes an ECE untenured faculty member.\u003C\/p\u003E\u003Cp\u003EHao started at ECE in 2020 as a postdoctoral fellow, then becoming an assistant professor in 2021. She is the director for the \u003Ca href=\u0022https:\/\/sharclab.ece.gatech.edu\/\u0022\u003ESoftware\/Hardware Co-Design for Intelligence and Efficiency (Sharc) Lab\u003C\/a\u003E, while also being part of the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/tig\/vlsi\u0022\u003EVLSI Systems and Digital Design Technical\u003C\/a\u003E Interest Group.\u003Cbr\u003E\u003Cbr\u003E\u201cI\u2019m deeply honored to receive the ON Semiconductor Junior Professorship,\u0022 Hao said. \u0022It means a lot to have my work recognized in this way, especially as agile chip design becomes such a key part of our AI-driven future. I\u2019m excited and grateful for the chance to keep building, learning, and mentoring\u2014this support will help me do even more meaningful research and teaching.\u201d\u003Cbr\u003E\u003Cbr\u003EHao\u2019s research focuses on agile software\/hardware co-design, especially in the joint area of efficient hardware design and machine learning algorithms. She is also passionate about reconfigurable and high-efficiency computing and building useful electronic design automation tools.\u003C\/p\u003E\u003Cp\u003EShe\u2019s received a number of awards and distinctions during her time at ECE, including the NSF CAREER Award and the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/hao-earns-intel-rising-star-faculty-award\u0022\u003EIntel Rising Star Faculty\u003C\/a\u003E Award. Additionally, Hao previously held the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/hao-joins-ece-faculty-appointed-sutterfield-professorship\u0022\u003ESutterfield Family Early Career Professorship\u003C\/a\u003E for the last two years.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe assistant professor, who\u2019s research focuses on software\/hardware co-design, was appointed to the position that recognizes ECE untenured faculty.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The assistant professor, who\u2019s research focuses on software\/hardware co-design, was appointed to the position that recognizes ECE untenured faculty."}],"uid":"36558","created_gmt":"2025-06-24 17:13:35","changed_gmt":"2025-06-25 19:16:13","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-06-24T00:00:00-04:00","iso_date":"2025-06-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677281":{"id":"677281","type":"image","title":"Callie_Hao_B-1.jpg","body":null,"created":"1750878956","gmt_created":"2025-06-25 19:15:56","changed":"1750878956","gmt_changed":"2025-06-25 19:15:56","alt":"Callie Hao","file":{"fid":"261165","name":"Callie_Hao_B-1.jpg","image_path":"\/sites\/default\/files\/2025\/06\/25\/Callie_Hao_B-1_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/06\/25\/Callie_Hao_B-1_0.jpg","mime":"image\/jpeg","size":1667244,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/06\/25\/Callie_Hao_B-1_0.jpg?itok=K0TXTICV"}}},"media_ids":["677281"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"190161","name":"onsemi Junior Professorship"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"682814":{"#nid":"682814","#data":{"type":"news","title":"Kim and Baig Awarded Qualcomm Innovation Fellowship","body":[{"value":"\u003Cp\u003EGeorgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) Ph.D. students Jiho Kim and Danish Baig were awarded a \u003Ca href=\u0022https:\/\/www.qualcomm.com\/research\/university-relations\/innovation-fellowship\/2025-north-america\u0022\u003E2025 Qualcomm Innovation Fellowship\u003C\/a\u003E (QIF).\u003C\/p\u003E\u003Cp\u003ETheir proposal, \u201cNetwork-on-X (NoX): Hierarchical Interconnect Modeling \u0026amp; DSE for 2.5D\/3D Chiplet Architectures,\u201d was one of only 17 selected from a highly competitive pool of 266 submissions across North America, and the only winning team from Georgia Tech.\u003C\/p\u003E\u003Cp\u003EKim and Baig\u2019s project, NoX, addresses a critical gap in modern chiplet-based system design. As the industry shifts toward 2.5D and 3D integration, existing tools fail to account for the intricate interactions between architecture and packaging. NoX proposes a cross-layer simulation framework that models hierarchical communication while incorporating real-world packaging constraints\u2014enabling more accurate and scalable design space exploration for AI and high-performance computing (HPC) systems.\u003C\/p\u003E\u003Cp\u003EThe QIF program invests in Ph.D. students across a broad range of technical research areas, empowering them to take steps toward achieving their research goals. The fellowship will provide Baig and Kim with one year of support to pursue their research, as well as offer mentorship from Qualcomm engineers.\u003C\/p\u003E\u003Cp\u003EKim is advised by professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECong (Callie) Hao\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/sharclab.ece.gatech.edu\/\u0022\u003ESharc Lab\u003C\/a\u003E. Her research focuses on field programmable gate arrays design and architecture-packaging co-design, with an emphasis on developing technology-aware simulators for emerging chiplet-based systems. She interned at IBM Research in 2024 and will be a visiting scholar at ETH Zurich this summer. Her recent work was nominated for Best Paper at 2025 IEEE International Symposium on Field-Programmable Custom Computing Machines.\u003C\/p\u003E\u003Cp\u003EBaig is advised by professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E at the \u003Ca href=\u0022https:\/\/www.bakirlab.gatech.edu\/\u0022\u003EIntegrated 3D Systems Lab\u003C\/a\u003E. He received his B.A. in nanotechnology engineering from the University of Waterloo in Canada, after which he worked as an optoelectronics design engineer and patented novel techniques for large-area printing of microdevices. His current research focuses on chiplet bonding using nanoscale interconnects. He is on a summer internship at Analog Devices as an advanced packaging intern.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cstrong\u003EThe two Ph.D. students will receive a year of support from Qualcomm to continue their pioneering research on chiplet-based system design.\u003C\/strong\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The two Ph.D. students will receive a year of support from Qualcomm to continue their pioneering research on chiplet-based system design. "}],"uid":"36558","created_gmt":"2025-06-18 16:30:16","changed_gmt":"2025-06-20 16:35:28","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-06-18T00:00:00-04:00","iso_date":"2025-06-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677248":{"id":"677248","type":"image","title":"Qualcomm-2025.jpg","body":null,"created":"1750264232","gmt_created":"2025-06-18 16:30:32","changed":"1750264232","gmt_changed":"2025-06-18 16:30:32","alt":"Danish Baig and Jiho Kim","file":{"fid":"261129","name":"Qualcomm-2025.jpg","image_path":"\/sites\/default\/files\/2025\/06\/18\/Qualcomm-2025.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/06\/18\/Qualcomm-2025.jpg","mime":"image\/jpeg","size":1517925,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/06\/18\/Qualcomm-2025.jpg?itok=sA5Sumvr"}}},"media_ids":["677248"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"181440","name":"Qualcomm Innovation Fellowship"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"632218":{"#nid":"632218","#data":{"type":"news","title":"Richard Fujimoto Among Three Georgia Tech Faculty Named IEEE Fellows","body":[{"value":"\u003Cp\u003EGeorgia Tech faculty members Stanislav Emelianov, Richard Fujimoto, and Vivek Sarkar have been named IEEE Fellows, the society\u2019s highest grade of membership, effective January 1, 2020. A distinction conferred by the IEEE Board of Directors, it is considered by the technical community to be a prestigious honor and an important career achievement.\u003C\/p\u003E\u003Cp\u003EEmelianov was recognized for his contributions to ultrasound elasticity and photoacoustic imaging. He is the Joseph M. Pettit Chair Professor in the School of Electrical and Computer Engineering and a Georgia Research Alliance Eminent Scholar.\u0026nbsp;An expert in biomedical imaging instrumentation and nanoagents for imaging and therapy, Emelianov\u0026nbsp;has joint appointments with the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University. He\u0026nbsp;is also a professor of Radiology at the Emory University School of Medicine and is affiliated with\u0026nbsp;Winship Cancer Institute\u0026nbsp;and other clinical units.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EEmelianov is the director of the\u0026nbsp;Ultrasound Imaging and Therapeutics Research Laboratory, where his group works on the discovery, development, and clinical translation of diagnostic imaging and therapeutic instrumentation, augmented with theranostic nanoagents\u2013small particles that can diagnose and then treat a specific disease. He is a Fellow of the American Institute for Medical and Biological Engineering, and he has served as vice president for Ultrasonics of the IEEE Ultrasonics, Ferroelectrics, and Frequency Control Society.\u003C\/p\u003E\u003Cp\u003EFujimoto, a Regents\u2019 Professor in the\u0026nbsp;School of Computational Science and Engineering, was honored for his work in the field of parallel and distributed discrete event simulation. Discrete event simulations model operations within a system and have uses in a wide variety of applications. Fujimoto has authored and co-authored hundreds of technical papers on the subject as well as several books, which span application areas including transportation systems, telecommunication networks, and multiprocessor and defense systems.\u003C\/p\u003E\u003Cp\u003EHe was also named a\u0026nbsp;\u003Ca href=\u0022https:\/\/www.iitsec.org\/\u0022\u003E2019 Interservice\/Industry Training, Simulation and Education Conference (I\/ITSEC) Fellow\u003C\/a\u003E. The announcement for both of these recognitions came only two years after he was named an\u0026nbsp;\u003Ca href=\u0022https:\/\/awards.acm.org\/fellows\u0022\u003EAssociation for Computing Machinery Fellow\u003C\/a\u003E\u0026nbsp;in 2017.\u003C\/p\u003E\u003Cp\u003ESarkar, the Stephen P. Fleming Chair of Telecommunications in the School of Computer Science and co-director of the Center for Research into Novel Computing Hierarchies, received his distinction\u0026nbsp;for contributions to compiler technologies for high-performance computing. His work in this area spans multiple aspects of parallel computing software including programming languages, compilers, runtime systems, and debugging and verification systems for high performance computers.\u003C\/p\u003E\u003Cp\u003ESarkar has numerous recognitions in the field. He became a member of the IBM Academy of Technology in 1995 and an ACM Fellow in 2008. He has been serving as a member of the U.S. Department of Energy\u2019s Advanced Scientific Computing Advisory Committee (ASCAC) since 2009 and has served on CRA\u2019s Board of Directors since 2015.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe IEEE \u2013 short for\u0026nbsp;the Institute of Electrical and Electronics Engineers \u2013\u0026nbsp;is the world\u2019s leading professional association for advancing technology for humanity. Through its 420,000-plus members in more than 160 countries, the association is a leading authority on a wide variety of areas ranging from aerospace systems, computers and telecommunications, biomedical engineering, electric power, and consumer electronics.\u003C\/p\u003E\u003Cp\u003EDedicated to the advancement of technology, the IEEE publishes nearly one-third of the world\u2019s literature in the electrical and electronics engineering and computer science fields, and has developed nearly 1,300 active industry standards.\u0026nbsp; The association also sponsors or co-sponsors more than 1,900 international technical conferences and events each year.\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech faculty members Stanislav Emelianov, Richard Fujimoto, and Vivek Sarkar have been named IEEE Fellows, the society\u0026rsquo;s highest grade of membership.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech faculty members Stanislav Emelianov, Richard Fujimoto, and Vivek Sarkar have been named IEEE Fellows, the society\u2019s highest grade of membership."}],"uid":"27338","created_gmt":"2020-02-07 19:40:29","changed_gmt":"2025-06-18 14:42:12","author":"Brent Verrill","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2020-01-27T00:00:00-05:00","iso_date":"2020-01-27T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"631692":{"id":"631692","type":"image","title":"Richard Fujimoto","body":null,"created":"1580136032","gmt_created":"2020-01-27 14:40:32","changed":"1580136032","gmt_changed":"2020-01-27 14:40:32","alt":"photograph of Richard Fujimoto","file":{"fid":"240349","name":"Richard_Fujimoto.jpg","image_path":"\/sites\/default\/files\/images\/Richard_Fujimoto.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Richard_Fujimoto.jpg","mime":"image\/jpeg","size":134876,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Richard_Fujimoto.jpg?itok=kQsCptsQ"}},"631691":{"id":"631691","type":"image","title":"Stanislav Emelianov","body":null,"created":"1580135990","gmt_created":"2020-01-27 14:39:50","changed":"1580135990","gmt_changed":"2020-01-27 14:39:50","alt":"photograph of Stanislav Emelianov","file":{"fid":"240348","name":"Stanislav Emelianov.jpg","image_path":"\/sites\/default\/files\/images\/Stanislav%20Emelianov.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Stanislav%20Emelianov.jpg","mime":"image\/jpeg","size":1122730,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Stanislav%20Emelianov.jpg?itok=8CFsQHH0"}},"631693":{"id":"631693","type":"image","title":"Vivek Sarkar","body":null,"created":"1580136074","gmt_created":"2020-01-27 14:41:14","changed":"1580136074","gmt_changed":"2020-01-27 14:41:14","alt":"photograph of Vivek Sarkar","file":{"fid":"240350","name":"Vivek-Sarkar.jpg","image_path":"\/sites\/default\/files\/images\/Vivek-Sarkar.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Vivek-Sarkar.jpg","mime":"image\/jpeg","size":574154,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Vivek-Sarkar.jpg?itok=A3KQxKSo"}}},"media_ids":["631692","631691","631693"],"related_links":[{"url":"http:\/\/www.gatech.edu","title":"Georgia Tech"},{"url":"http:\/\/www.ece.gatech.edu","title":"School of Electrical and Computer Engineering"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/stanislav-emelianov","title":"Stanislav Emelianov"},{"url":"http:\/\/www.cse.gatech.edu","title":"School of Computational Science and Engineering"},{"url":"https:\/\/cse.gatech.edu\/people\/richard-fujimoto","title":"Richard Fujimoto"},{"url":"https:\/\/scs.gatech.edu","title":"School of Computer Science"},{"url":"https:\/\/scs.gatech.edu\/people\/vivek-sarkar","title":"Vivek Sarkar"}],"groups":[{"id":"244191","name":"Brook Byers Institute for Sustainable Systems"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"140","name":"Cancer Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"145","name":"Engineering"},{"id":"147","name":"Military Technology"},{"id":"135","name":"Research"},{"id":"134","name":"Student and Faculty"}],"keywords":[{"id":"1506","name":"faculty"},{"id":"276","name":"Awards"},{"id":"109","name":"Georgia Tech"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"166941","name":"School of Computer Science"},{"id":"166983","name":"School of Computational Science and Engineering"},{"id":"3072","name":"IEEE Fellows"},{"id":"1464","name":"Georgia Research Alliance"},{"id":"183707","name":"biomedical imaging instrumentation"},{"id":"3264","name":"Wallace H. Coulter Department of Biomedical Engineering"},{"id":"177467","name":"Emory School of Medicine"},{"id":"183709","name":"Winship Cancer Institute"},{"id":"178326","name":"Ultrasound Imaging and Therapeutics Research Laboratory"},{"id":"60841","name":"American Institute for Medical and Biological Engineering"},{"id":"183712","name":"IEEE Ultrasonics"},{"id":"175028","name":"ferroelectrics"},{"id":"183713","name":"and Frequency Control Society"},{"id":"183715","name":"telecommunication networks"},{"id":"183716","name":"multiprocessor and defense systems"},{"id":"172908","name":"Association for Computing Machinery"},{"id":"183717","name":"Center for Research into Novel Computing Hierarchies"},{"id":"183718","name":"compiler technologies"},{"id":"15030","name":"high-performance computing"},{"id":"183719","name":"parallel computing software"},{"id":"101271","name":"Computing Research Association"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39481","name":"National Security"},{"id":"194566","name":"Sustainable Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jackie.nemeth@ece.gatech.edu\u0022\u003EJackie Nemeth\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003ESchool of Electrical and Computer Engineering\u003C\/p\u003E\u003Cp\u003E404-894-2906\u003C\/p\u003E","format":"limited_html"}],"email":["jackie.nemeth@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666130":{"#nid":"666130","#data":{"type":"news","title":"Researcher Looks to Future of Computing through Human Visual Cortex","body":[{"value":"\u003Cp\u003EComputers are often compared to the human brain. While computers can operate faster than the brain, the brain is exponentially more efficient. This is a key reason why the brain remains a source of inspiration for scientists.\u003C\/p\u003E\u003Cp\u003EOne of these scientists is\u0026nbsp;\u003Cstrong\u003ENabil Imam\u003C\/strong\u003E, an assistant professor at Georgia Tech\u2019s School of Computational Science and Engineering (CSE). Not only does Imam study the possibilities of brain-inspired computing, he also thinks the answer to this engineering question lies in the same parts of the brain that let us see our world.\u003C\/p\u003E\u003Cp\u003EImam posits that by modeling the human visual cortex in computer hardware and software, computers can become both more efficient and more powerful. If achieved, this idea could transform the future of computer manufacturing and programing.\u003C\/p\u003E\u003Cp\u003EImam presented his research observations Feb. 3 at a\u0026nbsp;\u003Ca href=\u0022https:\/\/sites.gatech.edu\/crnch\/crnch-summit\/\u0022\u003Esummit hosted by Georgia Tech\u2019s Center for Research in Novel Compute Hierarchies (CRNCH)\u003C\/a\u003E. Imam\u2019s presentation included an overview of the neural circuits within the brain, simulations that have modeled the visual cortex, and designs for silicon chips that emulate brain architecture.\u003C\/p\u003E\u003Cp\u003EThe highlight of Imam\u2019s seminar was his presentation of a microchip architecture he and other researchers have designed to function like the brain\u2019s visual cortex. The system Imam presented has simulated hundreds of millions of neurons and tens of billions of synapses, a step toward making brain-inspired computing a reality.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cMulti-chip systems have been built using these chips to simulate 100 million neurons and 25 billion synapses in real time,\u201d Imam said. \u201cThese chips are very efficient platforms for simulating biological neural networks.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo open his seminar, Imam showed circuit connectivity and neural response properties of the primary visual cortex \u2013\u0026nbsp;an area of the brain that is involved in seeing the world.\u003C\/p\u003E\u003Cp\u003EThe primary visual cortex is one of the most extensively studied areas of the brain. It consists of six layers of brain cells totaling about 300 million neurons and 300 billion synapses in primates. Even though this is one of the most well studied areas of the brain, the sheer numbers and complexity involved still make it difficult to understand.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EImam then discussed computer simulations of the visual system during his presentation. The example Imam used simulates a visual cortex segment of 230,000 neurons, a small sliver of the structure but one that shows promise.\u003C\/p\u003E\u003Cp\u003E\u201cThis is a very small simulation, but it is a very detailed one. The models are based on extensive data curated from years of measurements,\u201d said Imam. \u201cWith the right kind of computing platform, we can scale this up and simulate larger portions of the circuit and its interactions with other areas of the brain.\u201d\u003C\/p\u003E\u003Cp\u003EDue to the sheer computing power required for brain simulations, scaling is a significant obstacle that researchers, like Imam, are studying to overcome.\u003C\/p\u003E\u003Cp\u003ESimulating one second of a small neural circuit requires hours of computing time. With current computer architectures, it would require speeds measured in exaflops and memory spanning petabytes to achieve a simulation of the human brain.\u003C\/p\u003E\u003Cp\u003EPresently, the max speed of the world\u2019s fastest supercomputer, called Frontier, is 1.102 exaflops. It is the first, and currently, the only computer to reach exascale speeds. To do this, Frontier requires 7,300 square feet of space, consumes 21 megawatts of power, and pumps 6,000 gallons of water a minute to keep itself cool. This shows how far computers still must go before being able to simulate the brain.\u003C\/p\u003E\u003Cp\u003EHowever, progress is being made. The chip Imam discussed at CRNCH Summit 2023 uses specialized integrated circuits to model neurons and their networks found in the brain and visual cortex.\u003C\/p\u003E\u003Cp\u003ETo address the scaling challenge, the computer chips were scaled up via multi-chip platforms to simulate hundreds of millions of neurons and tens of billions of synapses, approaching scales of complex cortical circuitry.\u003C\/p\u003E\u003Cp\u003ESimulations in this chip are orders of magnitude larger than the 230,000-neuron example simulation Imam presented earlier.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThese chips operate in real time, so one second of brain activity equals one second of computing. These chips are also smaller than a square inch and consume less than one watt of power. The chips also can be integrated with sensors and actuators to interact with the environment.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EMuch of Imam\u2019s research remains theoretical and ongoing work continues. But as Imam showed in his CRNCH Summit 2023 seminar,\u0026nbsp;the intersection of computing and neuroscience is rapidly growing and the future for this technology appears bright.\u003C\/p\u003E\u003Cp\u003E\u201cThe goal is to develop computational and analytical methods that will help us understand the behavior of these models\u201d Imam said. \u201cThese insights can then be used to develop new classes of computer systems and new models of computation.\u201d\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EComputers are often compared to the human brain. While computers can operate faster than the brain, the brain is exponentially more efficient. This is a key reason why the brain remains a source of inspiration for scientists.\u003C\/p\u003E\u003Cp\u003EOne of these scientists is\u0026nbsp;\u003Cstrong\u003ENabil Imam\u003C\/strong\u003E, an assistant professor at Georgia Tech\u2019s School of Computational Science and Engineering (CSE). Not only does Imam study the possibilities of brain-inspired computing, he also thinks the answer to this engineering question lies in the same parts of the brain that let us see our world.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Nabil Imam presents a chip system design inspired by the visual cortex to simulate parts of the brain"}],"uid":"36319","created_gmt":"2023-02-24 13:40:22","changed_gmt":"2025-06-18 14:40:18","author":"Bryant Wine","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-24T00:00:00-05:00","iso_date":"2023-02-24T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677240":{"id":"677240","type":"image","title":"Neuron-Graphic.png","body":null,"created":"1750164698","gmt_created":"2025-06-17 12:51:38","changed":"1750164698","gmt_changed":"2025-06-17 12:51:38","alt":"Neuron","file":{"fid":"261121","name":"Neuron-Graphic.png","image_path":"\/sites\/default\/files\/2025\/06\/17\/Neuron-Graphic.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/06\/17\/Neuron-Graphic.png","mime":"image\/png","size":767280,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/06\/17\/Neuron-Graphic.png?itok=DGjb0eu8"}}},"media_ids":["677240"],"groups":[{"id":"50877","name":"School of Computational Science and Engineering"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"129","name":"Institute and Campus"},{"id":"146","name":"Life Sciences and Biology"},{"id":"135","name":"Research"},{"id":"134","name":"Student and Faculty"}],"keywords":[{"id":"166983","name":"School of Computational Science and Engineering"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39541","name":"Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBryant Wine, Communications Officer\u003Cbr\u003Ebryant.wine@cc.gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"682565":{"#nid":"682565","#data":{"type":"news","title":"Naeemi Named Dean\u2019s Professor","body":[{"value":"\u003Cp\u003EGeorgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering Professor\u003C\/a\u003E (ECE) \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/azad-j-naeemi\u0022\u003EAzad Naeemi\u003C\/a\u003E was appointed to the Dean\u2019s Professorship, effective June 1, 2025.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ENaeemi, who is an ECE graduate and joined the faculty in 2008, was selected to the five-year appointment for his exceptional record of scholarship and service to the Institute. Criteria for the designation of Dean\u0027s Professor include outstanding scholarship, dedication to education, and excellence in service at Institutional and national\/international levels.\u003C\/p\u003E\u003Cp\u003EHis research crosses the boundaries of materials, devices, circuits, and systems investigating integrated circuits based on conventional and emerging nanoelectronic and spintronic devices and interconnects.\u003C\/p\u003E\u003Cp\u003ECurrently, the main focus of Naeemi\u2019s research is to develop a comprehensive end-to-end modeling and optimization framework for emerging memory and logic devices starting with fundamental physics to devices, and then to circuits and applications.\u003C\/p\u003E\u003Cp\u003EHe conducts this research out of the \u003Ca href=\u0022https:\/\/nrl.gatech.edu\/\u0022\u003ENanoelectronics Research Lab\u003C\/a\u003E, where is the director. Ferroelectric and magnetic devices are of particular interest for his group. They are also working on an academic process design kit (PDK) for one of the most advanced CMOS technology nodes (3nm) to enable Design-Technology Co-Optimization (DTCO).\u003C\/p\u003E\u003Cp\u003ENaeemi leads a six-university effort supported by the National Science Foundation to develop and evaluate interactive visualizations and simulation tools that help students \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/10\/game-changing-visual-tools-help-students-grasp-quantum-concepts\u0022\u003Egain better conceptual understanding of semiconductor physics and devices\u003C\/a\u003E. The tools from this effort are being used by thousands of students around the world.\u003C\/p\u003E\u003Cp\u003EHe\u2019s received a number of prestigious awards, including the IEEE Electron Devices Society (EDS) Paul Rappaport Award for the best paper in the 2007 IEEE Transactions on Electron Devices journal, an NSF CAREER Award, an SRC Inventor Recognition Award, and several best paper awards at international conferences. He is also the first recipient of the IEEE Solid-State Circuits Society James D. Meindl Innovators Award. Judged by the direct vote of the ECE senior class, he was awarded W. Marshall Leach\/Eta Kappa Nu Outstanding Senior Teacher Award in 2023.\u003C\/p\u003E\u003Cp\u003EIn addition to his educational and research responsibilities, he also serves as the editor-in-chief of the IEEE Journal on Exploratory Computational Devices and Circuits and is the associate director for computation for the NSF-supported National Nanotechnology Coordinated Infrastructure.\u003C\/p\u003E\u003Cp\u003ENaeemi has been at Georgia Tech since 1999, first a graduate student, getting his M.S. and Ph.D. degrees in electrical and computer engineering from the Institute in 2001 and 2003, respectively.\u003C\/p\u003E\u003Cp\u003EHe then worked as a research engineer in the Microelectronics Research Center at Georgia Tech from 2004 to 2008, before joining the ECE faculty.\u003C\/p\u003E\u003Cp\u003EPrior to Georgia Tech, he received his B.S. degree in electrical engineering from Sharif University, Tehran, Iran in 1994. After his undergraduate studies, he stayed in Tehran, where he worked as a design engineer with Partban and Afratab Companies.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE professor was named to the five-year appointment for outstanding scholarship, dedication to education, and excellence in service at Institutional, national, international levels.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor was named to the five-year appointment for outstanding scholarship, dedication to education, and excellence in service at Institutional, national, international levels."}],"uid":"36558","created_gmt":"2025-05-28 16:26:41","changed_gmt":"2025-06-03 15:17:46","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-05-28T00:00:00-04:00","iso_date":"2025-05-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677146":{"id":"677146","type":"image","title":"Naeemi-Deans-Professor.jpg","body":null,"created":"1748449616","gmt_created":"2025-05-28 16:26:56","changed":"1748449616","gmt_changed":"2025-05-28 16:26:56","alt":"Azad Naeemi","file":{"fid":"261014","name":"Naeemi-Deans-Professor.jpg","image_path":"\/sites\/default\/files\/2025\/05\/28\/Naeemi-Deans-Professor.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/05\/28\/Naeemi-Deans-Professor.jpg","mime":"image\/jpeg","size":1234223,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/05\/28\/Naeemi-Deans-Professor.jpg?itok=_LPvy7ge"}}},"media_ids":["677146"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"32101","name":"Dean\u0027s Professor of the College of Engineering"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"682134":{"#nid":"682134","#data":{"type":"news","title":" Decision and Control Laboratory Graduate Students Host Annual Symposium","body":[{"value":"\u003Cp\u003EThe \u003Ca href=\u0022https:\/\/dcl.gatech.edu\/members\/\u0022\u003EDecision and Control Laboratory\u003C\/a\u003E (DCL) at Georgia Tech held its annual Student Symposium at the Tech Square Research Building on April 18, 2025, bringing together graduate students, postdoctoral researchers, and faculty working in the areas of systems and control.\u003C\/p\u003E\u003Cp\u003EThe full-day event was entirely student-organized and provided a unique opportunity for the DCL community to share research, foster interdisciplinary collaboration, and engage in discussions at the frontier of control theory, robotics, and decision-making. The symposium was funded by the Demetrius T. Paris Junior Professorship, held by \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) associate professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/samuel-coogan\u0022\u003ESam Coogan\u003C\/a\u003E.\u003Cbr\u003E\u003Cbr\u003E\u0022We have a long tradition in ECE of hosting the DCL student symposium annually,\u201d Coogan said. \u201cIt\u0027s a great opportunity for students, postdocs, and faculty from across campus to come together for a day of sharing research and finding new connections. And it\u0027s completely student-organized and student-led. The student organizing committee gains valuable experience planning a meeting like this\u2014a skill that proves useful whether they pursue careers in academia or industry.\u0022\u003Cbr\u003E\u003Cbr\u003EIn the morning, students participated in a series of rapid two-minute talks consisting of concise snapshots of their research, followed by a poster session. This format encouraged spontaneous discussion and collaboration among attendees. In the afternoon, students had the opportunity to present longer, 15 minute, spotlight talks of their research.\u003Cbr\u003E\u003Cbr\u003E\u201cThe symposium is an excellent opportunity for student researchers to practice presenting their work in a low-stakes academic context,\u201d said Akash Harapanahalli, a Ph.D. student working with Coogan, and the chair of the organizing committee. \u201cMy favorite part of organizing the event was being able to bring together participants from all over campus\u2014including the Schools of Electrical and Computer Engineering, \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EMechanical Engineering\u003C\/a\u003E (ME), \u003Ca href=\u0022https:\/\/ae.gatech.edu\/\u0022\u003EAerospace Engineering\u003C\/a\u003E (AE), \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/\u0022\u003EIndustrial and Systems Engineering\u003C\/a\u003E (ISyE), and \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/\u0022\u003EChemical and Biomolecular Engineering\u003C\/a\u003E (ChBE)\u2014who each had unique perspectives to offer\u201d.\u003Cbr\u003E\u003Cbr\u003EThe symposium also featured four keynote presentations from Georgia Tech faculty: ISyE associate professor \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\/users\/siva-theja-maguluri\u0022\u003ESiva Theja Maguluri\u003C\/a\u003E, AE associate professor \u003Ca href=\u0022https:\/\/ae.gatech.edu\/directory\/person\/yongxin-chen\u0022\u003EYongxin Chen\u003C\/a\u003E, ME assistant professor \u003Ca href=\u0022https:\/\/me.gatech.edu\/user\/1059\u0022\u003EShreyas Kousik\u003C\/a\u003E, and AE assistant professor\u003Ca href=\u0022https:\/\/research.gatech.edu\/people\/lu-gan\u0022\u003E Lu Gan\u003C\/a\u003E, who provided interesting perspectives on the varying theoretical and applied aspects of decision making, control, optimization, and robotics.\u003C\/p\u003E\u003Cp\u003EThere was also a thought-provoking panel entitled \u201cThe Future of Decision-Making and Control,\u201d where Kousik, AE assistant professors \u003Ca href=\u0022https:\/\/ae.gatech.edu\/directory\/person\/glen-chou\u0022\u003EGlen Chou\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/ae.gatech.edu\/directory\/person\/sarah-li-0\u0022\u003ESarah Li\u003C\/a\u003E, along with ECE research engineer \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/chih-yuan-chiu\u0022\u003EChih-Yuan (Frank) Chiu\u003C\/a\u003E answered several student questions ranging from the importance of safety in the modern era, to how to survive as an academic.\u003Cbr\u003E\u003Cbr\u003EThe DCL Symposium continues to serve as a vibrant platform for students to showcase their work, receive feedback from peers and faculty, and connect across research labs. The organizing committee extends their thanks to all speakers, attendees, and participants who helped make the 2025 event a success.\u003Cbr\u003E\u003Cbr\u003EAnyone wanting to participate in future years, or be added to the DCL mailing list, please email Akash Harapanahalli at \u003Ca href=\u0022mailto:aharapan@gatech.edu\u0022\u003Eaharapan@gatech.edu\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe event provided a unique opportunity for the \u0026nbsp;Decision and Control Laboratory community to share research, foster interdisciplinary collaboration, and engage in discussions at the frontier of control theory, robotics, and decision-making.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The event provided a unique opportunity for the  Decision and Control Laboratory community to share research, foster interdisciplinary collaboration, and engage in discussions at the frontier of control theory, robotics, and decision-making."}],"uid":"36558","created_gmt":"2025-04-30 18:12:09","changed_gmt":"2025-05-06 17:16:24","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-04-30T00:00:00-04:00","iso_date":"2025-04-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"677005":{"id":"677005","type":"image","title":"Image.jpeg","body":null,"created":"1746036796","gmt_created":"2025-04-30 18:13:16","changed":"1746036796","gmt_changed":"2025-04-30 18:13:16","alt":"DCL Symposium","file":{"fid":"260863","name":"Image.jpeg","image_path":"\/sites\/default\/files\/2025\/04\/30\/Image.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/04\/30\/Image.jpeg","mime":"image\/jpeg","size":1180453,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/04\/30\/Image.jpeg?itok=DJVInWKn"}}},"media_ids":["677005"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"180451","name":"DCL events"},{"id":"128601","name":"Decision and Control Laboratory"},{"id":"5401","name":"decision and control systems"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"682120":{"#nid":"682120","#data":{"type":"news","title":"Oh Wins IEEE Transactions on Components, Packaging and Manufacturing Technology Best Paper Award","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) fifth-year Ph.D. candidate Shane Oh is receiving recognition for his research that has potential for huge impacts in advanced packaging technologies for high-frequency electronics.\u003C\/p\u003E\u003Cp\u003EHis paper, \u201c\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/abstract\/document\/10769467\u0022\u003EHeterogeneous Integration Enabled by 3D Stitch-Chips,\u003C\/a\u003E\u0022 recently won the Best Paper Award in the Advanced Packaging Technologies from the IEEE \u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/xpl\/RecentIssue.jsp?punumber=5503870\u0022\u003ETransactions on Components, Packaging and Manufacturing Technology\u003C\/a\u003E, a premier package design publication.\u003C\/p\u003E\u003Cp\u003ETraditional chip interconnect methods like wire-bonding or flip-chip mounting either struggle with signal integrity at high frequencies or require complex fabrication steps.\u003C\/p\u003E\u003Cp\u003EThe paper introduces a new interconnect technology called the 3D Stitch-Chip (3DSC), which offers a novel solution to the limitations of traditional interconnection methods such as wire bonding, die-embedding, and flip-chip bonding. Existing methods can be bulky, hard to manufacture, or cause issues with signal quality, especially when dealing with fast, high-frequency signals used in modern electronics.\u003C\/p\u003E\u003Cp\u003E3DSC avoids these problems by using a special structure that includes vertical channels and lateral connectors to link chips together. This allows the chips to be mounted face-up, without digging cavities, and helps keep signals clear even at very high speeds. This new method was successfully demonstrated for Ka-band frequencies (26-40 gigahertz), which are used in cutting-edge wireless and radar systems. Its modular design makes it especially useful for building complex systems that combine many different chips in a compact space.\u003C\/p\u003E\u003Cp\u003EHe, along with his co-authors\u2014\u0026nbsp;Ph.D. students Zhonghao Zhang and Geyu Yan, and Georgia Tech Research Institute senior research engineer Paul K. Jo\u2014conducted the research under the guidance of professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad S. Bakir\u003C\/a\u003E, as part of the\u003Ca href=\u0022https:\/\/www.bakirlab.gatech.edu\/\u0022\u003E Integrated 3D Systems Group\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThe work contributes to the group\u2019s broader mission\u0026nbsp;to rethink packaging architectures for heterogeneous integration, enabling future radio frequency systems to be smaller, faster, and more efficient.\u003C\/p\u003E\u003Cp\u003EOh, Zhang, Jo, and Bakir will accept the award during the \u003Ca href=\u0022https:\/\/ectc.net\/\u0022\u003E75th Electronic Components and Technology Conference\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe research, which introduces a novel chip interconnect technology, is an important step toward more flexible multichip modules and advanced glass-based packaging platforms.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The research, which introduces a novel chip interconnect technology, is an important step toward more flexible multichip modules and advanced glass-based packaging platforms."}],"uid":"36558","created_gmt":"2025-04-29 17:51:58","changed_gmt":"2025-04-29 17:56:23","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-04-29T00:00:00-04:00","iso_date":"2025-04-29T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676993":{"id":"676993","type":"image","title":"Oh.jpg","body":null,"created":"1745949183","gmt_created":"2025-04-29 17:53:03","changed":"1745949183","gmt_changed":"2025-04-29 17:53:03","alt":"Shane Oh","file":{"fid":"260850","name":"Oh.jpg","image_path":"\/sites\/default\/files\/2025\/04\/29\/Oh.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/04\/29\/Oh.jpg","mime":"image\/jpeg","size":792518,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/04\/29\/Oh.jpg?itok=sh9QfmAM"}}},"media_ids":["676993"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"103141","name":"Best Paper Award"},{"id":"1187","name":"IEEE"},{"id":"194491","name":"Transactions on Components"},{"id":"194492","name":"Packaging and Manufacturing Technology"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"681986":{"#nid":"681986","#data":{"type":"news","title":"Newly Named Children\u2019s PTC at Georgia Tech Peterson Professorship Recipients Work to Improve the Lives of Kids in Georgia and Beyond","body":[{"value":"\u003Cp\u003EGeorgia Tech professors \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/5337\u0022\u003EMichelle LaPlaca\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/2943\u0022\u003EW. Hong Yeo\u003C\/a\u003E have been selected as recipients of Peterson Professorships with the \u003Ca href=\u0022https:\/\/ptc.gatech.edu\/\u0022\u003EChildren\u2019s Healthcare of Atlanta Pediatric Technology Center\u003C\/a\u003E (PTC) at Georgia Tech. The professorships, supported by the G.P. \u201cBud\u201d Peterson and Valerie H. Peterson Faculty Endowment Fund, are meant to further energize the Georgia Tech and Children\u2019s partnership by engaging and empowering researchers involved in pediatrics.\u003C\/p\u003E\u003Cp\u003EIn a joint statement, PTC co-directors \u003Ca href=\u0022https:\/\/winshipcancer.emory.edu\/profiles\/lam-wilbur.php\u0022\u003EWilbur Lam\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/3731\u0022\u003EStanislav Emelianov\u003C\/a\u003E said, \u201cThe appointment of Dr. LaPlaca and Dr. Yeo as Peterson Professors exemplifies the vision of Bud and Valerie Peterson \u2014 advancing innovation and collaboration through the Pediatric Technology Center to bring breakthrough ideas from the lab to the bedside, improving the lives of children and transforming healthcare.\u201d\u003C\/p\u003E\u003Cp\u003ELaPlaca is a professor and associate chair for Faculty Development in the \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/\u0022\u003EDepartment of Biomedical Engineering\u003C\/a\u003E, a joint department between Georgia Tech and Emory University. Her research is focused on traumatic brain injury and concussion, concentrating on sources of heterogeneity and clinical translation. Specifically, she is working on biomarker discovery, the role of the glymphatic system, and novel virtual reality neurological assessments. \u0026nbsp; \u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI am thrilled to be chosen as one of the Peterson Professors and appreciate Bud and Valerie Peterson\u2019s dedication to pediatric research,\u201d she said. \u201cThe professorship will allow me to broaden research in pediatric concussion assessment and college student concussion awareness, as well as to identify biomarkers in experimental models of brain injury.\u201d\u003C\/p\u003E\u003Cp\u003EIn addition to the research lab, LaPlaca will work with an undergraduate research class called Concussion Connect, which is part of the Vertically Integrated Projects program at Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u201cThrough the PTC, Georgia Tech and Children\u2019s will positively impact brain health in Georgia\u2019s pediatric population,\u201d said LaPlaca.\u003C\/p\u003E\u003Cp\u003EYeo is the Harris Saunders, Jr. Professor in the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E and the director of the Wearable Intelligent Systems and Healthcare Center at Georgia Tech. His research focuses on nanomanufacturing and membrane electronics to develop soft biomedical devices aimed at improving disease diagnostics, therapeutics, and rehabilitation.\u003C\/p\u003E\u003Cp\u003E\u201cI am truly honored to be awarded the Peterson Professorship from the Children\u2019s PTC at Georgia Tech,\u201d he said. \u201cThis recognition will greatly enhance my research efforts in developing soft bioelectronics aimed at advancing pediatric healthcare, as well as expand education opportunities for the next generation of undergraduate and graduate students interested in creating innovative medical devices that align seamlessly with the recent NSF Research Traineeship grant I received. I am eager to contribute to the dynamic partnership between Georgia Tech and Children\u2019s Healthcare of Atlanta and to empower innovative solutions that will improve the lives of children.\u201d\u003C\/p\u003E\u003Cp\u003EThe Peterson Professorships honor the former Georgia Tech President and First Lady, whose vision for the importance of research in improving pediatric healthcare has had an enormous positive impact on the care of pediatric patients in our state and region.\u003C\/p\u003E\u003Cp\u003EThe Children\u2019s PTC at Georgia Tech brings clinical experts from Children\u2019s together with Georgia Tech scientists and engineers to develop technological solutions to problems in the health and care of children. Children\u2019s PTC provides extraordinary opportunities for interdisciplinary collaboration in pediatrics, creating breakthrough discoveries that often can only be found at the intersection of multiple disciplines. These collaborations also allow us to bring discoveries to the clinic and the bedside, thereby enhancing the lives of children and young adults. The mission of the PTC is to establish the world\u2019s leading program in the development of technological solutions for children\u2019s health, focused on three strategic areas that will have a lasting impact on Georgia\u2019s kids and beyond.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EProfessors Michelle LaPlaca and W. Hong Yeo are recognized for their innovative contributions to pediatric healthcare research.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Professors Michelle LaPlaca and W. Hong Yeo are recognized for their innovative contributions to pediatric healthcare research."}],"uid":"35575","created_gmt":"2025-04-23 15:09:52","changed_gmt":"2025-04-23 15:20:49","author":"adavidson38","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-04-18T00:00:00-04:00","iso_date":"2025-04-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676910":{"id":"676910","type":"image","title":"LaPlaca-Yeo.png","body":"\u003Cp\u003EMichelle LaPlaca (left), associate chair for Faculty Development and professor in the Department of Biomedical Engineering; W. Hong Yeo, Harris Saunders, Jr. Professor in the George W. Woodruff School of Mechanical Engineering.\u003C\/p\u003E","created":"1745421013","gmt_created":"2025-04-23 15:10:13","changed":"1745421013","gmt_changed":"2025-04-23 15:10:13","alt":"Michelle LaPlaca (left), associate chair for Faculty Development and professor in the Department of Biomedical Engineering; W. Hong Yeo, Harris Saunders, Jr. Professor in the George W. Woodruff School of Mechanical Engineering.","file":{"fid":"260759","name":"LaPlaca-Yeo.png","image_path":"\/sites\/default\/files\/2025\/04\/23\/LaPlaca-Yeo.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/04\/23\/LaPlaca-Yeo.png","mime":"image\/png","size":136318,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/04\/23\/LaPlaca-Yeo.png?itok=Y4tpGaSP"}}},"media_ids":["676910"],"related_links":[{"url":"https:\/\/research.gatech.edu\/feature\/tbi","title":"This Small Sensor Could Make Huge Impacts on Brain Injury Treatment"},{"url":"https:\/\/research.gatech.edu\/feature\/pacifier","title":"This Pacifier Could Monitor Babies\u2019 Vitals in the NICU"},{"url":"https:\/\/research.gatech.edu\/georgia-tech-partners-uh-brain-center","title":"Georgia Tech Partners With UH BRAIN Center"}],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"66220","name":"Neuro"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"146","name":"Life Sciences and Biology"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"},{"id":"152","name":"Robotics"}],"keywords":[{"id":"172970","name":"go-neuro"},{"id":"187582","name":"go-ibb"},{"id":"188084","name":"go-ipat"},{"id":"188087","name":"go-irim"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"},{"id":"193656","name":"Neuro Next Initiative"},{"id":"39501","name":"People and Technology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"681234":{"#nid":"681234","#data":{"type":"news","title":"Adibi Wins SPIE Innovation Award in Quantum Sensing and Nano Electronics and Photonics","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/ali-adibi\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EAli Adibi\u003C\/a\u003E won the Innovation Award in Quantum Sensing and Nano Electronics and Photonics at the \u003Ca href=\u0022https:\/\/spie.org\/conferences-and-exhibitions\/photonics-west\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ESociety of Photo-Optical Instrumentation Engineers\u003C\/a\u003E (SPIE) Photonics West Meeting in January.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe awards is given to outstanding researchers who present the most notable recent discoveries with broad impact in the areas of quantum sensing and nano electronics and photonics.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAdibi was recognized for major achievements in the formation of reconfigurable metaphotonic structures enabled by phase-change materials. The nano-scale structures, crafted through artificial engineering, \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/shaping-future-light-through-reconfigurable-metasurfaces\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Eexhibit exceptional optical properties\u003C\/a\u003E beneficial for imaging and spectroscopy systems.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003EHe was one of nine researchers from institutions around the world to receive the award.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAdibi, who is the director for the\u0026nbsp;\u003Ca href=\u0022https:\/\/sites.gatech.edu\/ece-prg\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EPhotonics Research Group\u003C\/a\u003E,\u0026nbsp;earned his M.S.E.E. from Georgia Tech in 1994 and joined the ECE faculty in 2000.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EHe received his B.S.E.E. from Shiraz University (Iran) in 1990, and his\u0026nbsp;Ph.D. from the California Institute of Technology in 2000. His Ph.D. research resulted in a breakthrough in persistent holographic storage in photorefractive crystals.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAdibi has a wide range of research interests in both theoretical and experimental aspects of photonic devices and materials. His research has produced more than 240 journal and more than 600 conference publications, as well as several invention disclosures and patents.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EOn top of his latest achievement, Adibi has received several prestigious awards, including the Presidential Early Career Award for Scientists and Engineers (PECASE) from the White House, CAREER Award from the National Science Foundation (NSF), and Packard Fellowship from the David and Lucile Packard Foundation.\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE professor has been recognized for major achievements in formation of reconfigurable metaphotonic structures enabled by phase-change materials.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor has been recognized for major achievements in formation of reconfigurable metaphotonic structures enabled by phase-change materials."}],"uid":"36558","created_gmt":"2025-03-19 17:52:26","changed_gmt":"2025-03-21 17:13:28","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-03-19T00:00:00-04:00","iso_date":"2025-03-19T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676640":{"id":"676640","type":"image","title":"adibi.jpg","body":null,"created":"1742577142","gmt_created":"2025-03-21 17:12:22","changed":"1742577142","gmt_changed":"2025-03-21 17:12:22","alt":"Ali Adibi","file":{"fid":"260450","name":"adibi.jpg","image_path":"\/sites\/default\/files\/2025\/03\/21\/adibi.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/03\/21\/adibi.jpg","mime":"image\/jpeg","size":1570790,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/03\/21\/adibi.jpg?itok=Q2nwY2tF"}}},"media_ids":["676640"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"167910","name":"SPIE"},{"id":"178859","name":"nano electronics"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003Ezwiniecki3@gmail.com\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"680938":{"#nid":"680938","#data":{"type":"news","title":"Rinc\u00f3n-Mora Wins IEEE Outstanding Engineering Educator Award","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) Motorola Solutions Foundation Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/gabriel-rincon-mora\u0022\u003EGabriel Alfonso Rinc\u00f3n-Mora\u003C\/a\u003E won the IEEE Region 3 Joseph M. Biedenbach Outstanding Engineering Educator Award.\u003C\/p\u003E\u003Cp\u003EThe award recognizes a member of Region 3 who has shared technical and professional abilities through teaching in industry, government, or in an institution of higher learning and in so doing has made an outstanding contribution to the electrotechnology student population.\u003C\/p\u003E\u003Cp\u003ERinc\u00f3n-Mora, who is also a Fellow of the National Academy of Inventors, the Institute of Electrical and Electronics Engineers, and the Institution of Engineering and Technology, was selected out of the 24,000 members across Jamaica and the nine U.S. states that make up Region 3. \u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI grew up, studied, and worked in Florida and Georgia nearly all my life, dedicating my entire academic and professional career to learning, teaching, developing, and researching analog and power electronics, so receiving this award from IEEE in this region is a very special honor for me,\u201d he said.\u003C\/p\u003E\u003Cp\u003EThis is his second IEEE award in the last few months, having received the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/11\/rincon-mora-wins-ieee-atlanta-outstanding-educator-award\u0022\u003EIEEE Atlanta Outstanding Educator Award\u003C\/a\u003E in Nov. 2024.\u003Cbr\u003ERinc\u00f3n-Mora has more than 25 years of service at Georgia Tech and the greater Atlanta area. He earned his M.S. in 1994 and Ph.D. in 1996 from Georgia Tech, and was inducted into Georgia Tech\u0027s Council of Outstanding Young Engineering Alumni in 2000. He worked for Texas Instruments in 1994\u20132003, was adjunct professor at ECE in 1999\u20132001, and has been a full-time professor \u0026nbsp;since 2001.\u003Cbr\u003EHe is a recognized authority in the semiconductor industry in power supplies and energy harvesting.\u003C\/p\u003E\u003Cp\u003ERinc\u00f3n-Mora pioneered the use of positive feedback loops to accelerate the response of low-dropout regulators and hysteretic control to stabilize and accelerate the response of switching power supplies. He developed and mastered techniques for rejecting and suppressing power-supply noise, allowing cell phones, tablets, and laptops power supplies to be more accurate, occupy less space, and consume less energy.\u003C\/p\u003E\u003Cp\u003EHe also developed ground-breaking switched-inductor microchips that draw power from tiny fuel cells, vibrating piezoelectric transducers, and magnetically coupled coils. He pioneered ways of amplifying the power they draw by investing pre-damping energy into the system. He similarly developed photovoltaic and thermoelectric microchip technologies that draw more power from ambient light and heat and consume less energy. With these innovations, wireless microsystems draw more power from biological and ambient sources, so they can perform more functions across longer periods.\u003C\/p\u003E\u003Cp\u003ERinc\u00f3n-Mora\u0027s current research focuses on the design and development of silicon-based microchips and microsystems that draw and condition power from tiny batteries, fuel cells, magnetically coupled coils, and generators that harness ambient energy from motion, light, temperature, and radiation to supply and sustain mobile, portable, and self-sustaining devices like wireless microsensors for biomedical, consumer, industrial, and military applications.\u003C\/p\u003E\u003Cp\u003EHe will accept the award at the Region 3 Awards Dinner this in Charlotte, N.C.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cstrong\u003EThe ECE professor was recognized for his outstanding contribution to electrotechnology education and research.\u003C\/strong\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor was recognized for his outstanding contribution to electrotechnology education and research."}],"uid":"36558","created_gmt":"2025-03-05 17:33:57","changed_gmt":"2025-03-05 17:35:41","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-03-05T00:00:00-05:00","iso_date":"2025-03-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676471":{"id":"676471","type":"image","title":"Rincon-Mora.jpg","body":null,"created":"1741196063","gmt_created":"2025-03-05 17:34:23","changed":"1741196063","gmt_changed":"2025-03-05 17:34:23","alt":"Rincon-Mora","file":{"fid":"260267","name":"Rincon-Mora.jpg","image_path":"\/sites\/default\/files\/2025\/03\/05\/Rincon-Mora.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/03\/05\/Rincon-Mora.jpg","mime":"image\/jpeg","size":1419334,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/03\/05\/Rincon-Mora.jpg?itok=MqhlS7rp"}}},"media_ids":["676471"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"1187","name":"IEEE"},{"id":"194090","name":"Educator award"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"680541":{"#nid":"680541","#data":{"type":"news","title":"Bloch Receives Inaugural IEEE Joy Thomas Tutorial Paper Award","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/matthieu-ratoslav-bloch\u0022\u003EMatthieu Bloch\u003C\/a\u003E received the IEEE Joy Thomas Tutorial Paper Award from the IEEE Information Theory Society.\u003C\/p\u003E\u003Cp\u003EHe and his co-authors were recognized for their paper, \u201c\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/document\/9380147\u0022\u003EAn Overview of Information-Theoretic Security and Privacy: Metrics, Limits and Applications\u003C\/a\u003E,\u201d which provides a comprehensive tutorial on foundational contributions to information-theoretic security.\u003C\/p\u003E\u003Cp\u003EThe paper adopts an integrative perspective, detailing key security metrics such as secrecy and privacy, the methodology behind information-theoretic approaches, and the system design principles that emerge from them. It also explores the techniques that enable information-theoretic security to be applied in communication and computing systems.\u003C\/p\u003E\u003Cp\u003EAdditionally, the authors emphasize the dual importance of fundamental limits and coding techniques in the design of secure communication systems.\u003C\/p\u003E\u003Cp\u003EBloch, who also serves as the College of Engineer\u2019s associate dean for Academic Affairs, is the inaugural winner of the award alongside his co-authors.\u003C\/p\u003E\u003Cp\u003EThe IEEE \u003Ca href=\u0022https:\/\/www.itsoc.org\/honors\/thomas-tutorial-award\u0022\u003EJoy Thomas Tutorial Paper Award\u003C\/a\u003E recognizes publications that expose subjects in information theory to a broad audience and stimulate interest and engagement in them.\u003C\/p\u003E\u003Cp\u003EBloch came to Georgia Tech as a graduate student, earning his M.S. in electrical and computer engineering in 2003, and later a Ph.D. from Georgia Tech ECE in 2008. He joined Georgia Tech as faculty at the Lorraine campus in Metz, France in 2009, and in 2013, he moved to the main campus in Atlanta.\u003C\/p\u003E\u003Cp\u003EPrior to that he received the engineering degree from Sup\u00e9lec. In 2006, he received a Ph.D. in Engineering Science from the Universit\u00e9 de Franche-Comt\u00e9. Bloch spent a year as a postdoctoral research associate at the University of Notre Dame before returning to Georgia Tech in 2009. From January 2021 to January 2024, \u0026nbsp;Bloch was \u0026nbsp;the associate chair for Graduate Affairs in ECE.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE professor and his co-authors team the award for their published review of information-theoretic security and privacy.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor and his co-authors team the award for their published review of information-theoretic security and privacy."}],"uid":"36558","created_gmt":"2025-02-17 19:27:24","changed_gmt":"2025-02-17 19:33:14","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-02-17T00:00:00-05:00","iso_date":"2025-02-17T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676316":{"id":"676316","type":"image","title":"Bloch.jpg","body":null,"created":"1739820462","gmt_created":"2025-02-17 19:27:42","changed":"1739820462","gmt_changed":"2025-02-17 19:27:42","alt":"Matthieu Bloch","file":{"fid":"260079","name":"Bloch.jpg","image_path":"\/sites\/default\/files\/2025\/02\/17\/Bloch.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/02\/17\/Bloch.jpg","mime":"image\/jpeg","size":1793417,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/02\/17\/Bloch.jpg?itok=X0DisLVm"}}},"media_ids":["676316"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"1187","name":"IEEE"},{"id":"175215","name":"information theory"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"680195":{"#nid":"680195","#data":{"type":"news","title":"Callis and Joshi Recognized for Breakthrough RFID Technology","body":[{"value":"\u003Cp\u003EFrom contactless payment to the Find My iPhone app, radio frequency identification (RFID) technology is now a central part of many everyday digital activities.\u003C\/p\u003E\u003Cp\u003ERFID is a wireless system that uses radio waves to send information between devices and track objects. It\u2019s become very important to the continued development of other crucial technologies like 5G wireless networks and virtual reality (VR).\u003C\/p\u003E\u003Cp\u003EImprovements to the wireless technology would lead to improved Internet of Things (IoT) devices with higher data rates and lower latency, as well as compact VR devices that accurately track location and orientation, facilitate real-time gesture recognition in virtual spaces, among other things.\u003C\/p\u003E\u003Cp\u003ERFID technology has the potential to improve gesture controls in virtual reality, tracking capabilities for the position and direction of drones and robots, and can be used in sensors to monitor temperature and air quality.\u003C\/p\u003E\u003Cp\u003EA pair of \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) Ph.D. students were recently recognized for their work that is helping to bring this technology closer to becoming a reality.\u003C\/p\u003E\u003Cp\u003ETheodore Callis and Marvin Joshi received the Best Paper Award at the 2024 \u003Ca href=\u0022https:\/\/2024.ieee-rfid.org\/\u0022\u003EIEEE RFID Technology and Application Conference\u003C\/a\u003E for their research on novel RFID architecture applications.\u003C\/p\u003E\u003Cp\u003ETheir paper, \u201cNovel mmWave\/5G RFID Architectures for Next Generation of IoT Devices and VR Applications,\u201d highlighted key advancements from the Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003EManos Tentzeris\u003C\/a\u003E\u2019 \u003Ca href=\u0022https:\/\/athena.gatech.edu\/\u0022\u003EATHENA lab\u003C\/a\u003E, where they are using optics-inspired techniques and machine learning to push the limits of RFID technology.\u003C\/p\u003E\u003Cp\u003EThis includes addressing challenges in long-range, wide-angle, and energy-efficient IoT designs, enabling precise localization and enhanced feasibility of mmID-based AR\/VR applications\u003C\/p\u003E\u003Cp\u003EThese designs bring together optics, machine learning, and RFID technology to make systems smarter and more efficient. Lenses, like those in glasses or microscopes, are added to RFIDs to sharpen signals, cover wider angles, and work over longer distances. Machine learning helps by making it easier to track locations, detect orientations, and recognize gestures, which can be used in AR\/VR, robots, and drone tracking.\u003C\/p\u003E\u003Cp\u003ECallis and Joshi are both research assistant in the ATHENA lab. Callis\u2019s current research focuses on additively manufactured RFID systems and integration of biological\/chemical sensors with RFID systems.\u003C\/p\u003E\u003Cp\u003EJoshi\u2019s current research interests focus on the integration of RADAR and artificial intelligence\/machine learning with RF modules, specifically next generation RFIDs and mmIDs for ultra-long-range localization and tracking applications.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe advancements aim to accelerate the adoption of 5G technology and enable the integration of RFID into virtual reality.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The advancements aim to accelerate the adoption of 5G technology and enable the integration of RFID into virtual reality."}],"uid":"36558","created_gmt":"2025-02-04 19:56:20","changed_gmt":"2025-02-05 15:50:24","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-02-04T00:00:00-05:00","iso_date":"2025-02-04T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676213":{"id":"676213","type":"image","title":"Callis and Moshi.jpg","body":null,"created":"1738770535","gmt_created":"2025-02-05 15:48:55","changed":"1738770535","gmt_changed":"2025-02-05 15:48:55","alt":"Theodore Callis and Marvin Moshi","file":{"fid":"259949","name":"Callis and Moshi.jpg","image_path":"\/sites\/default\/files\/2025\/02\/05\/Callis%20and%20Moshi.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/02\/05\/Callis%20and%20Moshi.jpg","mime":"image\/jpeg","size":835144,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/02\/05\/Callis%20and%20Moshi.jpg?itok=oHXvYIzQ"}}},"media_ids":["676213"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"103141","name":"Best Paper Award"},{"id":"503","name":"RFID"},{"id":"1526","name":"wireless"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664017":{"#nid":"664017","#data":{"type":"news","title":"Tasneem Receives Cadence Scholarship ","body":[{"value":"\u003Cp\u003ENujhat Tasneem has been selected to receive the 2022 Cadence\u2019s Diversity in Technology Scholarship. Tasneem is a graduate research assistant in the Georgia Tech School of Electrical and Computer Engineering (ECE) and a member of the Khan Lab headed by Assistant Professor Asif Khan, a leading researcher in ferroelectric field effect transistors (FEFETs) and novel ferroelectric materials.\u003C\/p\u003E\u003Cp\u003ECadence Design Syst\u00adems, Inc. produces\u0026nbsp;software,\u0026nbsp;hardware\u0026nbsp;and silicon structures for designing\u0026nbsp;integrated circuits,\u0026nbsp;systems on chips\u0026nbsp;(SoCs) and\u0026nbsp;printed circuit boards. The company\u2019s Diversity in Technology Scholarship supports underrepresented groups in their pursuit of careers in science, technology, engineering, and math (STEM) fields.\u003C\/p\u003E\u003Cp\u003EAccording to Khan, Tasneem\u2019s work provides one of the most detailed and earliest accounts of reliability physics aspects of ferroelectric field-effect transistors for non-volatile memory applications. Her recent research introduces a novel characterization method\u0026nbsp;which provides an understanding of the transport and the status of the ferroelectric during the FEFET\u2019s operation.\u0026nbsp;This could pave ways for ferroelectric devices to make the electrical hardware platform\u0026nbsp;sustainable for data-intensive computing, leading to wide range of novel, ultra-fast and efficient intelligent applications.\u003C\/p\u003E\u003Cp\u003ECadence scholarship winners are selected based on their impressive academic achievements, leadership, and drive to shape the world of technology. The scholarship works to build a culture that embraces inclusivity as well as diverse backgrounds, experiences, and ideas.\u003C\/p\u003E\u003Cp\u003EIn addition to her Ph.D. research, Tasneem volunteers for IEEE Women in Engineering Society (WIE) and is currently a board member of the Atlanta chapter. She was an active member of the WIE Bangladesh chapter before coming to the United States as a graduate student. Tasneem is among few female students working in Georgia Tech\u0027s cleanrooms and hopes to increase female representation in the semiconductor industry through her research and extra-curricular activities.\u003C\/p\u003E\u003Cp\u003EAll recipients of a Cadence scholarship are currently pursuing a technology-related degree, such as computer science, computer engineering, electrical engineering, and electronic engineering, and came highly recommended by their professors and advisors.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ECadence scholarship winners are selected based on their impressive academic achievements, leadership, and drive to shape the world of technology.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Cadence scholarship winners are selected based on their impressive academic achievements, leadership, and drive to shape the world of technology."}],"uid":"36172","created_gmt":"2022-12-21 14:51:26","changed_gmt":"2025-01-28 13:27:09","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-21T00:00:00-05:00","iso_date":"2022-12-21T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"related_links":[{"url":"https:\/\/electrons.ece.gatech.edu","title":"Khan Lab"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"129","name":"Institute and Campus"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"188814","name":"Nujhat Tasneem"},{"id":"191773","name":"Cadence\u2019s Diversity in Technology Scholarship"},{"id":"188810","name":"Khan Lab"},{"id":"191774","name":"Asif Khan ferroelectric field effect transistors"},{"id":"188818","name":"FEFETs"},{"id":"191775","name":"Bangladesh Student Association"},{"id":"109","name":"Georgia Tech"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664434":{"#nid":"664434","#data":{"type":"news","title":"Athena Awarded Cadence Scholarship","body":[{"value":"\u003Cp\u003EFabia Farlin Athena, a Ph.D. candidate and IBM Ph.D. fellow in the Georgia Tech School of Electrical and Computer Engineering (ECE), has been selected to receive the 2022 Cadence\u2019s Diversity in Technology Scholarship. She is a member of Vogel research group led by Eric M. Vogel (Hightower Professor in the School of Materials Science and Engineering; adjunct professor of ECE; and executive director of the Institute for Materials).\u003C\/p\u003E\u003Cp\u003ECadence Design Syst\u00adems, Inc. produces\u0026nbsp;software,\u0026nbsp;hardware\u0026nbsp;and silicon structures for designing\u0026nbsp;integrated circuits,\u0026nbsp;systems on chips\u0026nbsp;(SoCs) and\u0026nbsp;printed circuit boards. The company\u2019s Diversity in Technology Scholarship supports underrepresented groups in their pursuit of careers in science, technology, engineering, and math (STEM) fields.\u003C\/p\u003E\u003Cp\u003EAthena\u0027s research focuses on developing a fundamental understanding of the mechanism of neuromorphic devices and tailoring the device characteristics through material optimization and electrical testing engineering. She works at the Marcus Inorganic Cleanroom at Georgia Tech for semiconductor device fabrication and collaborates with industry partners to improve the performance of analog neuromorphic chips for deep learning applications.\u003C\/p\u003E\u003Cp\u003E\u201cI am humbled to receive this scholarship, and it would not have been possible without the generous support from my advisor, Professor Eric M. Vogel,\u201d said Athena. \u201cI would also like to express my gratitude to Professor Samuel Graham, Jr. at the University of Maryland for his generous support. Finally, thanks to ECE for their support during my Ph.D.\u201d\u003C\/p\u003E\u003Cp\u003EOutside the lab, Athena is active in Women in Electrical and Computer Engineering (WECE) and Women in Material Science and Engineering (WiMSE). She is actively involved in arranging outreach events to increase the involvement of women and minorities in technology, including a STEM workshop organized by WECE with support from the international rescue committee at Clarkston High School for students from refugee communities. She hopes to encourage minorities and females in STEM and semiconductor research.\u003C\/p\u003E\u003Cp\u003EAll recipients of a Cadence scholarship are currently pursuing a technology-related degree, such as computer science, computer engineering, electrical engineering, and electronic engineering, and came highly recommended by their professors and advisors.\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EAthena\u0027s research focuses on developing a fundamental understanding of the mechanism of neuromorphic devices and tailoring the device characteristics through material optimization and electrical testing engineering.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Athena\u0027s research focuses on developing a fundamental understanding of the mechanism of neuromorphic devices and tailoring the device characteristics through material optimization and electrical testing engineering."}],"uid":"36172","created_gmt":"2023-01-05 22:21:54","changed_gmt":"2025-01-28 13:26:19","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-05T00:00:00-05:00","iso_date":"2023-01-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"related_links":[{"url":"https:\/\/vogellab.gatech.edu","title":"Vogel Research group"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"}],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664690":{"#nid":"664690","#data":{"type":"news","title":"Cadence Scholarship Awarded to Nnamdi","body":[{"value":"\u003Cp\u003EMicky\u0026nbsp;Nnamdi has been selected to receive the 2022 Cadence\u2019s Diversity in Technology Scholarship. Nnamdi is a graduate teaching assistant in the Georgia Tech School of Electrical and Computer Engineering (ECE) and a member of the Bio-Medical Informatics and Bio-Imaging Laboratory directed by Professor May Wang in the Wallace H. Coulter Department of Biomedical Engineering.\u003C\/p\u003E\u003Cp\u003ECadence Design Syst\u00adems, Inc. produces\u0026nbsp;software,\u0026nbsp;hardware\u0026nbsp;and silicon structures for designing\u0026nbsp;integrated circuits,\u0026nbsp;systems on chips\u0026nbsp;(SoCs) and\u0026nbsp;printed circuit boards. The company\u2019s Diversity in Technology Scholarship supports underrepresented groups in their pursuit of careers in science, technology, engineering, and math (STEM) fields.\u003C\/p\u003E\u003Cp\u003ENnamdi\u2019s graduate research focuses on the intersection of bioinformatics, machine learning, and signal and image analysis with broad applications to\u0026nbsp;clinical decision support. In addition to his Ph.D. research, Nnamdi serves as the African Graduate Students Connect (AGSC) vice president at Georgia Tech and is actively involved in organizing education and social events that are beneficial to all African graduate students.\u003C\/p\u003E\u003Cp\u003ECadence scholarship winners are selected based on their impressive academic achievements, leadership, and drive to shape the world of technology. The scholarship works to build a culture that embraces inclusivity as well as diverse backgrounds, experiences, and ideas. All recipients of a Cadence scholarship currently pursuing a technology-related degree, such as computer science, computer engineering, electrical engineering, and electronic engineering, and came highly recommended by their professors and advisors.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ENnamdi\u2019s graduate research focuses on the intersection of bioinformatics, machine learning, and signal and image analysis.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Nnamdi\u2019s graduate research focuses on the intersection of bioinformatics, machine learning, and signal and image analysis."}],"uid":"36172","created_gmt":"2023-01-12 19:28:12","changed_gmt":"2025-01-28 13:25:12","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-12T00:00:00-05:00","iso_date":"2023-01-12T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"related_links":[{"url":"https:\/\/miblab.bme.gatech.edu","title":"Bio-Medical Informatics and Bio-Imaging Laboratory"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"144","name":"Energy"},{"id":"129","name":"Institute and Campus"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"191895","name":"Cadence Design Syst\u00acems"},{"id":"6096","name":"Inc."},{"id":"191896","name":"Micky Nnamdi"},{"id":"191773","name":"Cadence\u2019s Diversity in Technology Scholarship"},{"id":"5426","name":"May Wang"},{"id":"189719","name":"Bio-Medical Informatics and Bio-Imaging Laboratory"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"679741":{"#nid":"679741","#data":{"type":"news","title":"Georgia Tech Joins $840M DoD Project to Develop and Manufacture Next-gen Semiconductor Microsystems","body":[{"value":"\u003Cp lang=\u0022EN-US\u0022\u003EGeorgia Institute of Technology is set to play a crucial role in a strategic effort funded by the Defense Advanced Research Project Agency (DARPA) to help bolster America\u2019s national security and global military leadership.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe project, led by the Texas Institute for Electronics (TIE) at The University of Texas at Austin, represents a total investment of $1.4 billion. The $840 million award from DARPA, \u003Ca href=\u0022https:\/\/news.utexas.edu\/2024\/07\/18\/uts-texas-institute-for-electronics-awarded-840m-to-build-a-dod-microelectronics-manufacturing-center-advance-u-s-semiconductor-industry\/\u0022\u003Eannounced by TIE in 2024\u003C\/a\u003E, aims to develop the next generation of high-performing semiconductor microsystems for the Department of Defense (DoD).\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cWe are honored to collaborate with TIE and its broader team on this far reaching and strategic program to enable best in class 3D heterogeneous integration (3DHI) processes and technologies in the United States,\u201d said \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad S. Bakir\u003C\/a\u003E, the Dan Fielder Professor in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E and director of the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/ien-prc\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E, who is heading the project for Georgia Tech.\u0026nbsp;\u003C\/p\u003E\u003Cp lang=\u0022EN-US\u0022\u003E3DHI is a semiconductor manufacturing process that incorporates different materials and components into microsystems with precision assembly. The use of 3DHI allows for the creation of high-performance, compact, and energy-efficient systems.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe investment is part of DARPA\u2019s Next Generation Microelectronics Manufacturing (NGMM) Program comprised of 32 defense electronics and leading commercial semiconductor companies and 18 nationally recognized academic institutions.\u003C\/p\u003E\u003Cp lang=\u0022EN-US\u0022\u003EUnder the agreement, TIE will establish a national open access R\u0026amp;D and prototyping fabrication facility. The facility will enable the DoD to create higher performance, lower power, lightweight, and compact defense systems. The advancements are expected to have wide-ranging applications, including radar, satellite imaging, and unmanned aerial vehicles.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EGeorgia Tech will provide a wide range of expertise in 3DHI including design, fabrication and assembly processes, and characterization to support the NGMM national open-access R\u0026amp;D and prototyping facility at TIE. \u0026nbsp;\u003C\/p\u003E\u003Cp lang=\u0022EN-US\u0022\u003ERegents\u0027 Professor and Morris M. Bryan, Jr. Professor \u003Ca href=\u0022https:\/\/me.gatech.edu\/faculty\/sitaraman\u0022\u003ESuresh K. Sitaraman\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E will be a key contributor to Georgia Tech\u2019s efforts on the project.\u003C\/p\u003E\u003Cp\u003E\u201cWe are delighted to be partnering with UT\/TIE on the establishment of a 3D Heterogeneous Integration Microsystem prototyping \u0026nbsp;facility,\u201d said Sitaraman. \u201cIn addition to advancing fundamental science, this project is a great opportunity for Georgia Tech to demonstrate and integrate our ground-breaking and innovative 3DHI research approaches and technology solutions into TIE\u2019s prototyping facility, and understand the challenges involved when translating lab-scale research work to a large industry-strength fabrication facility.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EECE Professors \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/saibal-mukhopadhyay\u0022\u003ESaibal Mukhopadhyay\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/visvesh-s-sathe\u0022\u003EVisvesh Sathe\u003C\/a\u003E, and \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003EShimeng Yu\u003C\/a\u003E\u0026nbsp;will be working alongside Bakir and Sitaraman.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EA significant portion of the research will be conducted at the \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/\u0022\u003EInstitute for Matter and Systems\u003C\/a\u003E (IMS), which operates Georgia Tech\u2019s state-of-the-art electronics and nanotechnology core facilities.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ERead the \u003Ca href=\u0022https:\/\/www.txie.org\/tifea\/\u0022\u003Epress release\u003C\/a\u003E from TIE and view the \u003Ca href=\u0022https:\/\/www.txie.org\/tifea\/#partners\u0022\u003Eproject\u2019s team and partners\u003C\/a\u003E.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EResearchers will contribute extensive 3D heterogeneous integration expertise to the Texas Institute for Electronics-led initiative.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Researchers will contribute extensive 3D heterogeneous integration expertise to the Texas Institute for Electronics-led initiative. "}],"uid":"36172","created_gmt":"2025-01-21 14:58:25","changed_gmt":"2025-01-21 15:00:38","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-01-21T00:00:00-05:00","iso_date":"2025-01-21T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676070":{"id":"676070","type":"image","title":"Marcus Nanotechnology Building","body":null,"created":"1737471519","gmt_created":"2025-01-21 14:58:39","changed":"1737471519","gmt_changed":"2025-01-21 14:58:39","alt":"Photo of the Marcus Nanotechnology Building. A glass building with sunshine shining through in the top right corner. ","file":{"fid":"259780","name":"14C10042-P1-118.jpg","image_path":"\/sites\/default\/files\/2025\/01\/21\/14C10042-P1-118.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/01\/21\/14C10042-P1-118.jpg","mime":"image\/jpeg","size":5052208,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/01\/21\/14C10042-P1-118.jpg?itok=A13avPiW"}}},"media_ids":["676070"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"690","name":"darpa"},{"id":"543","name":"National Security"},{"id":"167686","name":"Semiconductors"},{"id":"194237","name":"3D Heterogeneous Integration"},{"id":"99661","name":"Muhannad S. Bakir"},{"id":"194238","name":"Suresh K. Sitaraman"},{"id":"194239","name":"Texas Institute for Electronics"},{"id":"166900","name":"Saibal Mukhopadhyay"},{"id":"139771","name":"Arijit Raychowdhury"},{"id":"191068","name":"Visvesh Sathe"},{"id":"178857","name":"Shimeng Yu"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"194240","name":"Three-Dimensional Systems Packaging Research Center"},{"id":"14545","name":"George W. Woodruff School of Mechanical Engineering"},{"id":"194241","name":"Institute for Matter and Systems"},{"id":"194242","name":"Next Generation Microelectronics Manufacturing"},{"id":"194243","name":"NGMM"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"679639":{"#nid":"679639","#data":{"type":"news","title":"Penta Wins Intel Outstanding Student Paper Award for Cost-Efficient Chiplet Systems in 2D Packaging","body":[{"value":"\u003Cp\u003EIn a world where high-performance computing and artificial intelligence are becoming not only necessary, but commonplace, new systems are needed to keep up with the increasingly heavy bandwidth requirements.\u003C\/p\u003E\u003Cp\u003EChiplet-based systems are gaining exponential traction as a solution to these demands. However, because of multi-folded challenges, there is still much to be learned before chiplet-based systems, especially their die-die-to communication technologies, receive mainstream adoption.\u003C\/p\u003E\u003Cp\u003EGeorgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) third-year Ph.D. student, Srujan Penta won the Intel Outstanding Student Paper Award at the \u003Ca href=\u0022https:\/\/www.ectc.net\/\u0022\u003EIEEE 74th Electronic Components and Technology Conference\u003C\/a\u003E (ECTC) in Denver for his research on the performance-cost tradeoff of chiplet-based systems in 2D packaging technology.\u003C\/p\u003E\u003Cp\u003E\u201cJust being able to present our work to so many bright minds at the conference and network with them was an enriching opportunity in my Ph.D. journey,\u201d Penta said. \u201cIt is a cherry-on-top to receive the IEEE 74th ECTC Intel Outstanding Student Paper Award for this work.\u201d\u003C\/p\u003E\u003Cp\u003EThis paper demonstrated a parallel interface in a standard 2D package, as a cost-optimized alternative to the traditional chiplet interface and packaging architecture pairings, while providing moderate power and beachfront efficiency.\u003C\/p\u003E\u003Cp\u003EPenta designed interfaces in compliance with the Universal Chiplet Interconnect Express (UCIe), which is quickly becoming an industry standard.\u003C\/p\u003E\u003Cp\u003EHe tested the interfaces for technical specifications of insertion loss and crosstalk, checking his findings against data from 3D EM simulations. At the same time, he evaluated 2D chiplet systems from a cost-based perspective against 2.5D systems to achieve a more complete understanding of the financial and technical trade-offs.\u003C\/p\u003E\u003Cp\u003EThe research was completed in collaboration with Marvell Semiconductors, Inc. Penta was also aided by his advisor, ECE Professor and 3D Systems Packaging Research Center Director Muhannad Bakir.\u003C\/p\u003E\u003Cp\u003EMany of the world leaders in the semiconductor industry and academia come to ECTC each year.\u003C\/p\u003E\u003Cp\u003EPenta pursed a minor in \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/centers-and-initiatives\/tiger\/index.html\u0022\u003ETechnology Innovation\u003C\/a\u003E (TI:GER) from the \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/index.html\u0022\u003EScheller School of Business\u003C\/a\u003E. He was also \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/09\/penta-awarded-quad-fellowship-research-advanced-chiplet-systems\u0022\u003Enamed as one of the fifty global 2024 QUAD Fellows\u003C\/a\u003E by the Institute of International Education (IIE). As part of the fellowship, he was invited to the White house and the U.S. State Department in Oct. 2024 to represent his home country, India.\u003C\/p\u003E\u003Cp\u003EBeyond his academic pursuits, he mentors students through the Office of Graduate Education at Georgia Tech and volunteers with the Out in Science, Technology, Engineering, and Mathematics (oSTEM) organization as a member of the Inclusivity, Diversity, Equity, and Accessibility (IDEA) team.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe research is aimed to bridge the gaps in understanding\u0026nbsp;\u0026nbsp;chiplet-based systems.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The research is aimed to bridge the gaps in understanding chiplet-based systems."}],"uid":"36558","created_gmt":"2025-01-15 18:13:18","changed_gmt":"2025-01-15 18:14:17","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2025-01-15T00:00:00-05:00","iso_date":"2025-01-15T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"676027":{"id":"676027","type":"image","title":"Penta Best Paper.jpg","body":null,"created":"1736964812","gmt_created":"2025-01-15 18:13:32","changed":"1736964812","gmt_changed":"2025-01-15 18:13:32","alt":"Srujan Penta","file":{"fid":"259729","name":"Penta Best Paper.jpg","image_path":"\/sites\/default\/files\/2025\/01\/15\/Penta%20Best%20Paper.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2025\/01\/15\/Penta%20Best%20Paper.jpg","mime":"image\/jpeg","size":1120559,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2025\/01\/15\/Penta%20Best%20Paper.jpg?itok=uorU40et"}}},"media_ids":["676027"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"125461","name":"ECTC"},{"id":"175758","name":"chiplets"},{"id":"193559","name":"Outstanding Paper Award"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"679047":{"#nid":"679047","#data":{"type":"news","title":"Ravikumar Wins Best Paper Award for Next-Generation Computing Memory Research","body":[{"value":"\u003Cp\u003EArtificial intelligence (AI) and machine learning (ML) model parameters have been growing exponentially in the past decade, driving the need for advanced hardware to keep pace with rising demands in energy consumption, speed, and efficiency.\u003C\/p\u003E\u003Cp\u003EFerroelectric field effect transistors (FEFET) have emerged as a promising solution for logic and memory applications in next-generation edge computing, artificial intelligence, and enterprise cloud applications. The non-volatile memory technology harnesses electric polarization to store data in binary, and has been renowned for its speed, density, and ultra-low energy consumption.\u003C\/p\u003E\u003Cp\u003ETheir widespread adoption, however, hinges on addressing critical reliability challenges.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) third-year Ph.D. candidate Priyankka Ravikumar undertook the challenge of bringing clarity to one major reliability concerns in her paper, \u201cFirst write pulse-induced interface damage in ferroelectric field-effect transistors.\u201d\u003C\/p\u003E\u003Cp\u003EThe research, completed in ECE associated professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/asif-islam-khan\u0022\u003EAsif Khan\u2019s\u003C\/a\u003E \u003Ca href=\u0022https:\/\/electrons.ece.gatech.edu\/\u0022\u003Elab\u003C\/a\u003E, recently won the Best Student Paper Award at the 2024 IEEE International Integrated Reliability Workshop.\u003C\/p\u003E\u003Cp\u003EThe research reported on a new phenomenon in FEFET, known as the first switch effect and explains the phenomenon\u2019s origin. The findings reveal that the very first write operation on a FEFET contributes to nearly 50% of the total degradation seen over the device\u0027s lifetime.\u003C\/p\u003E\u003Cp\u003EThe work is an important step towards understanding the fundamental drivers of degradation in FEFETs, laying the groundwork for developing innovative strategies to mitigate degradation, improve device performance, and facilitate the widespread adoption of the technology.\u003C\/p\u003E\u003Cp\u003ERavikumar will be presenting this work at an invited talk next year at the \u003Ca href=\u0022https:\/\/www.irps.org\/\u0022\u003E2025 IEEE International Reliability Physics Symposium\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe third-year Ph.D. candidate pioneering work on the \u201cfirst switch effect\u201d will help researchers understand the reliability of ferroelectric field effect transistors.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The third-year Ph.D. candidate pioneering work on the \u201cfirst switch effect\u201d will help researchers understand the reliability of ferroelectric field effect transistors."}],"uid":"36558","created_gmt":"2024-12-30 18:58:26","changed_gmt":"2024-12-30 18:58:57","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-12-30T00:00:00-05:00","iso_date":"2024-12-30T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675915":{"id":"675915","type":"image","title":"Ravikumar.jpg","body":null,"created":"1735585121","gmt_created":"2024-12-30 18:58:41","changed":"1735585121","gmt_changed":"2024-12-30 18:58:41","alt":"Ravikumar","file":{"fid":"259594","name":"Ravikumar.jpg","image_path":"\/sites\/default\/files\/2024\/12\/30\/Ravikumar.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/12\/30\/Ravikumar.jpg","mime":"image\/jpeg","size":871916,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/12\/30\/Ravikumar.jpg?itok=rU9g_Gi8"}}},"media_ids":["675915"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"187812","name":"artificial intelligence (AI)"},{"id":"9167","name":"machine learning"},{"id":"191774","name":"Asif Khan ferroelectric field effect transistors"},{"id":"103141","name":"Best Paper Award"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"679026":{"#nid":"679026","#data":{"type":"news","title":"Sep\u00falveda-Ramos\u2019 Novel Testing Approach Pushes Limits of Transistor Technology Further Than Ever","body":[{"value":"\u003Cp\u003EInside almost every piece of modern technology is a transistor controlling the electrical signals helping hardware to process information, amplify signals (like making a radio louder), or store data. Making transistors more powerful without sacrificing efficiency has been a constant struggle for developers.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E Ph.D. student Nelson Sep\u00falveda-Ramos was recently recognized for his transistor research that hopes to lead to smaller, faster, and more reliable devices.\u003C\/p\u003E\u003Cp\u003EHe won the Best Paper Award at the \u003Ca href=\u0022https:\/\/bcicts.org\/\u0022\u003EIEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium\u003C\/a\u003E (BCICTS) for his presentation titled, \u201cUsing Pulsed-Mode Measurements of SiGe HBTs for Non-Destructive, Improved RF-SOA Estimation.\u201d\u003C\/p\u003E\u003Cp\u003EThe paper explores innovative methodologies to study the physics of Silicon-Germanium heterojunction bipolar transistors (SiGe HBTs) and introduces new approaches for testing and defining enhanced safe operating limits to optimize performance.\u003C\/p\u003E\u003Cp\u003ESiGe HBTs are a special type of transistor made by combining two materials: silicon, which is used in most electronics, and germanium, which helps improve performance. These transistors work faster than regular transistors and perform well in extreme conditions, making them great for things like satellite technology.\u003C\/p\u003E\u003Cp\u003ETransistors operate within safe limits, ensuring they don\u2019t overheat or break down during use. Traditional testing methods use continuous stress to determine \u0026nbsp;these limits but must be applied cautiously to avoid damaging \u0026nbsp;the transistor, meaning its full power potential isn\u2019t fully utilized.\u003C\/p\u003E\u003Cp\u003ESep\u00falveda-Ramos\u2019 research proposed a \u0022pulsed-mode measurements\u0022 approach which applies very short bursts of stress allowing for the limits of the transistor to be pushed closer to the actual limit.\u003C\/p\u003E\u003Cp\u003EThe ability to push transistors further will allow engineers to more reliably study their behavior at higher levels and deliver better performance, like faster processing or stronger signals without risking damage.\u003C\/p\u003E\u003Cp\u003EThis will allow engineers to develop more efficient designs for electronics, potentially leading to improved technology for society, including internet speed, GPS accuracy, and reliability of tech in cars, planes, and space exploration.\u003C\/p\u003E\u003Cp\u003EBCICTS is the IEEE\u2019s premier annual technical conference, drawing leading researchers, industry experts, and students from around the globe to showcase pioneering advancements in semiconductor technology.\u003C\/p\u003E\u003Cp\u003ESep\u00falveda-Ramos completed the research along with fellow ECE Ph.D. student Harrison P. Lee, senior research engineer Jeffrey W. Teng, who is now with the Aerospace Corporation, and Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/john-d-cressler\u0022\u003EJohn D. Cressler\u003C\/a\u003E, as part of Cressler\u2019s \u003Ca href=\u0022https:\/\/cressler.ece.gatech.edu\/\u0022\u003ESilicon-Germanium Devices and Circuits research team\u003C\/a\u003E.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. candidate recently won the Best Paper Award at the IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium for the novel testing approach.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. candidate recently won the Best Paper Award at the IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium for the novel testing approach."}],"uid":"36558","created_gmt":"2024-12-28 02:14:15","changed_gmt":"2024-12-28 02:44:13","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-12-27T00:00:00-05:00","iso_date":"2024-12-27T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675907":{"id":"675907","type":"image","title":"Nelson.jpg","body":null,"created":"1735353821","gmt_created":"2024-12-28 02:43:41","changed":"1735353821","gmt_changed":"2024-12-28 02:43:41","alt":"Nelson Sep\u00falveda-Ramos\u2019","file":{"fid":"259584","name":"Nelson.jpg","image_path":"\/sites\/default\/files\/2024\/12\/27\/Nelson.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/12\/27\/Nelson.jpg","mime":"image\/jpeg","size":1108088,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/12\/27\/Nelson.jpg?itok=ZlLUM1Bv"}}},"media_ids":["675907"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"7528","name":"transistors"},{"id":"103141","name":"Best Paper Award"},{"id":"12082","name":"IEEE Bipolar\/BiCMOS Circuits and Technology Meeting (BCTM)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678848":{"#nid":"678848","#data":{"type":"news","title":"$100M Investment Will Propel Absolics Inc., Georgia Tech\u2019s Advanced Packaging Research ","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003EAs part of the CHIPS \u003Ca href=\u0022https:\/\/www.nist.gov\/chips\/research-development-programs\/national-advanced-packaging-manufacturing-program\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ENational Advanced Packaging Manufacturing Program (NAPMP),\u003C\/a\u003E three advanced packaging research projects will receive investments of up to $100 million each. This work will accelerate the development of cutting-edge substrate and materials technologies essential to the semiconductor industry. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ENAPMP was developed to support a robust U.S. ecosystem for advanced packaging, which is key to every electronic system. NAPMP will enable leading-edge research and development, domestic manufacturing facilities, and robust training and workforce development programs in advanced packaging. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EIn partnership with Georgia Tech and the \u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E3D Packaging Research Center\u003C\/a\u003E (PRC), \u003Ca href=\u0022https:\/\/www.absolicsinc.com\/\u0022\u003EAbsolics\u003C\/a\u003E will receive $100 million to develop revolutionary glass core substrate panel manufacturing.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003E\u201cThis landmark investment in Absolics is also a transformational investment in Georgia Tech,\u201d said \u003Ca href=\u0022https:\/\/research.gatech.edu\/people\/timothy-charles-lieuwen\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ETim Lieuwen\u003C\/a\u003E, interim executive vice president for Research. \u201cIt will redefine the possibilities of our longstanding partnership by expanding Georgia Tech\u2019s expertise in electronic packaging, which is vital to the semiconductor supply chain. This federal funding uniquely positions us to merge cutting-edge research with industry, drive economic development in Georgia, and create a workforce ready to tackle tomorrow\u2019s manufacturing demands.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EGeorgia Tech has a long history of pioneering packaging research. \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-packaging-research-center-collaboration-skc-leads-600-million-semiconductor\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EThrough a previous collaboration with the PRC\u003C\/a\u003E, Absolics has already invested in the state of Georgia by building a glass core substrate panel manufacturing facility in Covington.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EGeorgia Tech\u2019s \u003Ca href=\u0022http:\/\/matter-systems.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EInstitute for Matter and Systems\u003C\/a\u003E (IMS), home to the PRC, houses specialized core facilities with the capabilities for semiconductor advanced packaging research and development.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cAwards like this reinforce the importance of collaborative research between research disciplines and the private and public sector. Without the research and administrative support provided by IMS and the Georgia Tech Office of Research Development, projects like this would not be coming to Georgia Tech.\u201d said \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/people\/eric-vogel\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EEric Vogel\u003C\/a\u003E, IMS executive director.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;Georgia Tech is a leader in advanced packaging research and has been working on glass substrate packaging research and development for years. Through this new Substrate and Materials Advanced Research and Technology (SMART) Packaging Program, Absolics aims to build a glass-core packaging ecosystem. In collaboration with Absolics, Georgia Tech will receive money for research and development for a glass-core substrate research center. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cWe are delighted to partner with Absolics and the broader team on this new NAPMP program focused on glass-core packaging,\u201d said \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/people\/muhannad-s-bakir\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EMuhannad Bakir,\u003C\/a\u003E Dan Fielder Professor in the School of Electrical and Computer Engineering and PRC director. \u201cGeorgia Tech\u2019s role will span program leadership, research and development of novel glass-core packages, technology transition, and workforce development.\u201d Bakir will serve as the associate director of SMART Packaging Program, overseeing research and workforce development activities while also leading several research tasks. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003E\u0026nbsp;\u0022This project will advance large-area glass panel processing with innovative contributions to materials and processing, modeling and simulation, metrology and characterization, and testing and reliability. We are pleased to partner with Absolics in advancing these important technology areas,\u0022 said Regents\u0027 Professor \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/people\/suresh-sitaraman\u0022\u003ESuresh K. Sitaraman\u003C\/a\u003E of the George W. Woodruff School of Mechanical Engineering and the PRC. In addition to technical contributions, Sitaraman will direct the new SMART Packaging Program steering committee. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;\u201cThe NAPMP Materials and Substrates R\u0026amp;D award for glass substrates marks the culmination of extensive efforts spearheaded by Georgia Tech\u2019s Packaging Research Center,\u201d noted \u003Ca href=\u0022https:\/\/people.research.gatech.edu\/node\/4186\u0022\u003EGeorge White\u003C\/a\u003E, senior director of strategic partnerships and the theme leader for education and workforce development in the SMART Packaging Program. \u201cThis recognition highlights the state of Georgia\u2019s leadership in advanced substrate technology and paves the way for developing the next generation of talent in glass-based packaging.\u201d \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;The program will support education and workforce development efforts by bringing training, internships, and certificate opportunities to technical colleges, the HBCU CHIPS Network, and veterans\u0027 programs.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe award will grow electronic packaging expertise and drive economic growth in Georgia.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The award will grow electronic packaging expertise and drive economic growth in Georgia. "}],"uid":"35272","created_gmt":"2024-12-12 14:35:20","changed_gmt":"2024-12-20 15:16:04","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-12-12T00:00:00-05:00","iso_date":"2024-12-12T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675838":{"id":"675838","type":"image","title":"AdobeStock_335004214.jpeg","body":null,"created":"1734014227","gmt_created":"2024-12-12 14:37:07","changed":"1734014227","gmt_changed":"2024-12-12 14:37:07","alt":"Man holding computer chip","file":{"fid":"259509","name":"AdobeStock_335004214.jpeg","image_path":"\/sites\/default\/files\/2024\/12\/12\/AdobeStock_335004214.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/12\/12\/AdobeStock_335004214.jpeg","mime":"image\/jpeg","size":548899,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/12\/12\/AdobeStock_335004214.jpeg?itok=qFYAH_lG"}}},"media_ids":["675838"],"groups":[{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Research Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674872":{"#nid":"674872","#data":{"type":"news","title":"Biden-Harris Administration Announces Preliminary Terms with Absolics to Support Development of Glass Substrate Technology for Semiconductor Advanced Packaging","body":[{"value":"\u003Cp\u003EThe Biden-Harris Administration announced that the U.S. Department of Commerce and Absolics, an affiliate of the Korea-based SKC, have signed a non-binding preliminary memorandum of terms to provide up to $75 million in direct funding under the CHIPS and Science Act to help advance U.S. technology leadership. The proposed investment would support the construction of a 120,000 square-foot facility in Covington, Georgia and the development of substrates technology for use in semiconductor advanced packaging. Started through a collaboration with the \u003Ca href=\u0022prc.gatech.edu\u0022\u003E3D Packaging Research Center at Georgia Tech\u003C\/a\u003E, Absolics\u2019 project serves as an example of American lab-to-fab development and production.\u003C\/p\u003E\u003Cp\u003E\u0022Glass-core packaging holds the promise to revolutionize the field of advanced packaging and impact major paradigms such as artificial intelligence, mm-wave\/THz communication, and photonic connectivity,\u0022 said Muhannad Bakir, Dan Fielder Professor in the School of Electrical and Computer\u0026nbsp;Engineering and Director of the 3D Systems Packaging Research Center at Georgia Tech. \u0026nbsp;\u0022We look forward to supporting Absolics in establishing a glass-core packaging facility in the State of Georgia through workforce development initiatives.\u0022\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EBecause of President Biden\u2019s CHIPS and Science Act, this proposed investment would support over an estimated 1,000 construction jobs and approximately 200 manufacturing and R\u0026amp;D jobs in Covington and enhance innovation capacity at Georgia Institute of Technology, supporting the local semiconductor talent pipeline.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe proposed investment with Absolics is the first proposed CHIPS investment in a commercial facility supporting the semiconductor supply chain by manufacturing a new advanced material.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/nist.gov\/news-events\/news\/2024\/05\/biden-harris-administration-announces-preliminary-terms-absolics-support\u0022\u003ERead the full story\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"Proposed CHIPS Investment Would Support Construction of New Manufacturing Facility and Over 1,200 Jobs in Covington, Georgia"}],"field_summary":[{"value":"\u003Cp\u003EProposed CHIPS Investment Would Support Construction of New Manufacturing Facility and Over 1,200 Jobs in Covington, Georgia\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Proposed CHIPS Investment Would Support Construction of New Manufacturing Facility and Over 1,200 Jobs in Covington, Georgia"}],"uid":"35272","created_gmt":"2024-05-23 14:12:58","changed_gmt":"2024-12-09 17:36:57","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-05-23T00:00:00-04:00","iso_date":"2024-05-23T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674063":{"id":"674063","type":"image","title":"AdobeStock_575964549.jpeg","body":null,"created":"1716473584","gmt_created":"2024-05-23 14:13:04","changed":"1716473584","gmt_changed":"2024-05-23 14:13:04","alt":"Semiconductor packaging","file":{"fid":"257532","name":"AdobeStock_575964549.jpeg","image_path":"\/sites\/default\/files\/2024\/05\/23\/AdobeStock_575964549.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/05\/23\/AdobeStock_575964549.jpeg","mime":"image\/jpeg","size":156733,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/05\/23\/AdobeStock_575964549.jpeg?itok=fq781pMb"}}},"media_ids":["674063"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u0026nbsp;\u003Cbr\u003EResearch Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["aneumeister3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678725":{"#nid":"678725","#data":{"type":"news","title":"Datta Receives University Research Award for Excellence in Semiconductor Research","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/suman-datta\u0022\u003ESuman Datta\u003C\/a\u003E has received the 2024 University Research Award for Technology from the Semiconductor Research Corporation (SRC) and Semiconductor Industry Association (SIA). He was presented the award at the SIA Awards Dinner on Nov. 21, 2024, in San Jose, Calif.\u003C\/p\u003E\u003Cp\u003EThe award recognizes lifetime research contributions to the U.S. semiconductor industry by university faculty. Since being established in 1995, only \u003Ca href=\u0022https:\/\/www.src.org\/award\/university-researcher\/\u0022\u003E50 faculty members\u003C\/a\u003E from top universities around the U.S. have won the award.\u003C\/p\u003E\u003Cp\u003E\u0022Professors Suman Datta and Michael Flynn join an illustrious group of past award winners who have made significant contributions to the semiconductor industry,\u201d SRC President and CEO Todd Younkin said \u003Ca href=\u0022https:\/\/www.semiconductors.org\/professors-from-georgia-tech-and-university-of-michigan-to-be-honored-for-excellence-in-semiconductor-research\/\u0022\u003Ein a press release.\u003C\/a\u003E \u201cTheir groundbreaking research and its translation into the commercial domain continue to drive innovation and excellence in our field.\u201d\u003C\/p\u003E\u003Cp\u003EDatta, who is the Joseph M. Pettit Chair of Advanced Computing in the Georgia Tech School of Electrical and Computer Engineering (ECE) and a Georgia Research Alliance (GRA) Eminent Scholar, is just the second Georgia Tech faculty member to win the award. Former ECE professor Jim Meindl won the award in 1999.\u003C\/p\u003E\u003Cp\u003EHe\u2019s renowned for the design, fabrication, characterization, and compact modeling of nanoelectronic devices, as well as their applications in circuits for next-generation, energy-efficient, and high-performance computing.\u003C\/p\u003E\u003Cp\u003ESince coming to ECE in the Fall of 2022, Datta, who also has a joint appointment with the \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering\u003C\/a\u003E, has directed the \u003Ca href=\u0022https:\/\/dattalab.ece.gatech.edu\/\u0022\u003ESemiconductor Technology Advanced Research (STAR) Laboratory\u003C\/a\u003E. The STAR research group focuses on novel semiconductor devices that enable new compute models such as in-memory compute, brain-inspired compute, and cryogenic compute.\u003C\/p\u003E\u003Cp\u003EDatta\u2019s research is primarily funded by the National Science Foundation (NSF), Defense Advanced Research Projects Agency (DARPA), Department of Energy, Defense Threat Reduction Agency, Semiconductor Research Corporation, and semiconductor companies like Intel, Micron, Samsung Electronics, Applied Materials, EMD Performance Materials.\u003C\/p\u003E\u003Cp\u003EDatta had established himself as a recognized leader in semiconductor innovation, with over 20 years of experience before joining ECE\u003C\/p\u003E\u003Cp\u003EFrom 1999-2007, he was in the Advanced Transistor Group at Intel Corporation, where he led the research and development efforts for several generations of high-performance logic transistors such as high-k\/metal gate, Tri-gate, and strained channel complementary metal-oxide-semiconductor transistors.\u003C\/p\u003E\u003Cp\u003EHe then joined academia at the Pennsylvania State University (PSU), where he was a professor of electrical engineering until 2015. His group at PSU pioneered advances in compound semiconductor-based quantum-well field effect transistors and tunneling field effect transistors.\u003C\/p\u003E\u003Cp\u003EDatta continued to be at the forefront of semiconductor innovation during his time as the Stinson Endowed Chair Professor of Nanotechnology in the Electrical Engineering Department at the University of Notre Dame from 2015-2022. There, he was the director of several multi-university research centers.\u003C\/p\u003E\u003Cp\u003EMost notably, one of those centers, the Extremely Energy Efficient Collective Electronics (EXCEL), sponsored by NSF, explored an alternate computing hardware that leverages continuous-time dynamics of emerging devices to execute optimization, learning, and inference tasks.\u003C\/p\u003E\u003Cp\u003EAdditionally, he led the ASCENT project (Applications and Systems-driven Center for Energy-Efficient integrated Nano Technologies) funded by SRC\u2019s Joint University Microelectronics Program.\u003C\/p\u003E\u003Cp\u003EHis work has resulted in over 475 journal and refereed conference papers and more than 187 issued patents related to semiconductor devices.\u003C\/p\u003E\u003Cp\u003EHe\u2019s received several other notable distinctions for his research, including being named a Fellow of IEEE and the National Academy of Inventors.\u003C\/p\u003E\u003Cp\u003EDatta received his undergraduate degree in electrical engineering from the Indian Institute of Technology in Kanpur, India, and his Ph.D. degree in electrical and computer engineering from the University of Cincinnati.\u0026nbsp;\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe prestigious award, given by the Semiconductor Research Corporation and Semiconductor Industry Association, recognizes lifetime research contributions to the U.S. semiconductor industry by university faculty.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The prestigious award, given by the Semiconductor Research Corporation and Semiconductor Industry Association, recognizes lifetime research contributions to the U.S. semiconductor industry by university faculty."}],"uid":"36558","created_gmt":"2024-12-02 18:21:28","changed_gmt":"2024-12-06 13:57:20","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-12-02T00:00:00-05:00","iso_date":"2024-12-02T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675757":{"id":"675757","type":"image","title":"241121_SIA_selection_011.jpg","body":null,"created":"1733163708","gmt_created":"2024-12-02 18:21:48","changed":"1733163708","gmt_changed":"2024-12-02 18:21:48","alt":"Suman Datta at SIA Awards Dinner","file":{"fid":"259420","name":"241121_SIA_selection_011.jpg","image_path":"\/sites\/default\/files\/2024\/12\/02\/241121_SIA_selection_011.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/12\/02\/241121_SIA_selection_011.jpg","mime":"image\/jpeg","size":1637339,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/12\/02\/241121_SIA_selection_011.jpg?itok=8oIYZ5Su"}}},"media_ids":["675757"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"166954","name":"SRC"},{"id":"167609","name":"semiconductor"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"676414":{"#nid":"676414","#data":{"type":"news","title":"$3 Million NSF Grant Will Support Training in Sustainable Medical Devices","body":[{"value":"\u003Cp\u003EGeorgia Tech researcher\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/w-hong-yeo\u0022\u003EW. Hong Yeo\u003C\/a\u003E has been awarded a $3 million grant to help develop a new generation of engineers and scientists in the field of sustainable medical devices.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cThe workforce that will emerge from this program will tackle a global challenge through sustainable innovations in device design and manufacturing,\u201d said Yeo, Woodruff Faculty Fellow and associate professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E and the\u0026nbsp;\u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/\u0022\u003EWallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThe funding, from the\u0026nbsp;\u003Ca href=\u0022https:\/\/new.nsf.gov\/funding\/opportunities\/us-national-science-foundation-research\u0022\u003ENational Science Foundation (NSF) Research Training (NRT) program\u003C\/a\u003E, will address the environmental impacts resulting from the mass production of medical devices, including the increase in material waste and greenhouse gas emissions.\u003C\/p\u003E\u003Cp\u003EUnder Yeo\u2019s leadership, the Georgia Tech team comprises multidisciplinary faculty:\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/andres-j-garcia\u0022\u003EAndr\u00e9s Garc\u00eda\u003C\/a\u003E (bioengineering),\u0026nbsp;\u003Ca href=\u0022https:\/\/id.gatech.edu\/people\/hyunjoo-oh\u0022\u003EHyunJoo Oh\u003C\/a\u003E (industrial design and interactive computing),\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/lewis-wheaton\u0022\u003ELewis Wheaton\u003C\/a\u003E (biology), and\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/josiah-hester\u0022\u003EJosiah Hester\u003C\/a\u003E (sustainable computing). Together, they\u2019ll train 100 graduate students, including 25 NSF-funded trainees, who will develop reuseable, reliable medical devices for a range of uses.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cWe plan to educate students on how to develop medical devices using biocompatible and biodegradable materials and green manufacturing processes using low-cost printing technologies,\u201d said Yeo. \u201cThese wearable and implantable devices will enhance disease diagnosis, therapeutics, rehabilitation, and health monitoring.\u201d\u003C\/p\u003E\u003Cp\u003EStudents in the program will be challenged by a comprehensive, multidisciplinary curriculum, with deep dives into bioengineering, public policy, physiology, industrial design, interactive computing, and medicine. And they\u2019ll get real-world experience through collaborations with clinicians and medical product developers, working to create devices that meet the needs of patients and care providers.\u003C\/p\u003E\u003Cp\u003EThe Georgia Tech NRT program aims to attract students from various backgrounds, fostering a diverse, inclusive environment in the classroom \u2014 and ultimately in the workforce.\u003C\/p\u003E\u003Cp\u003EThe program will also introduce a new Ph.D. concentration in smart medical devices as part of Georgia Tech\u0027s bioengineering program, and a new M.S. program in the sustainable development of medical devices. Yeo also envisions an academic impact that extends beyond the Tech campus.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003E\u201c\u003C\/strong\u003ECollectively, this NRT program\u0027s curriculum, combining methods from multiple domains, will help establish best practices in many higher education institutions for developing reliable and personalized medical devices for healthcare,\u201d he said. \u201cWe\u2019d like to broaden students\u0027 perspectives, move past the current technology-first mindset, and reflect the needs of patients and healthcare providers through sustainable technological solutions.\u201d\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech researcher W. Hong Yeo has received a $3 million NSF grant to lead a multidisciplinary team in training graduate students to develop sustainable, biocompatible medical devices that address environmental impacts, aiming to establish best practices in higher education for creating reliable and personalized healthcare solutions.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech researcher W. Hong Yeo has received a $3 million NSF grant to lead a multidisciplinary team in training graduate students to develop sustainable, biocompatible medical devices that address environmental impacts, aiming to establish best pract"}],"uid":"28153","created_gmt":"2024-08-30 12:39:46","changed_gmt":"2024-12-04 16:25:14","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-08-30T00:00:00-04:00","iso_date":"2024-08-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674771":{"id":"674771","type":"image","title":"W. Hong Yeo","body":"\u003Cp\u003EW. Hong Yeo is leading a $3 million \u0026nbsp;NSF research training program to develop a new generation of engineers focused on creating sustainable medical devices.\u003C\/p\u003E","created":"1725021364","gmt_created":"2024-08-30 12:36:04","changed":"1725021453","gmt_changed":"2024-08-30 12:37:33","alt":"W. Hong Yeo is leading a $3 million  NSF research training program to develop a new generation of engineers focused on creating sustainable medical devices.","file":{"fid":"258332","name":"Yeo.jpg","image_path":"\/sites\/default\/files\/2024\/08\/30\/Yeo.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/08\/30\/Yeo.jpg","mime":"image\/jpeg","size":588968,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/08\/30\/Yeo.jpg?itok=br_cUvwZ"}}},"media_ids":["674771"],"groups":[{"id":"1278","name":"College of Sciences"},{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"},{"id":"1188","name":"Research Horizons"},{"id":"1275","name":"School of Biological Sciences"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"363","name":"NSF"},{"id":"191934","name":"National Science Foundation (NSF)"},{"id":"187423","name":"go-bio"},{"id":"9535","name":"medical device"},{"id":"86321","name":"career training"},{"id":"193266","name":"cos-research"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"},{"id":"71901","name":"Society and Culture"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EJerry Grillo\u003C\/p\u003E","format":"limited_html"}],"email":["jerry.grillo@ibb.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678695":{"#nid":"678695","#data":{"type":"news","title":"Emelianov Honored with IEEE Award for Pioneering Contributions to Ultrasonics","body":[{"value":"\u003Cp\u003EOver his career, Georgia Tech Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/stanislav-emelianov\u0022\u003EStanislav (Stas) Emelianov\u003C\/a\u003E has worked to develop advanced imaging methods with the ultimate goal of improving health outcomes.\u003C\/p\u003E\u003Cp\u003EHis research and accomplishments have helped him to become a nationally recognized expert in biomedical imaging instrumentation and nanoagents for imaging and therapy.\u003C\/p\u003E\u003Cp\u003EThe IEEE \u003Ca href=\u0022https:\/\/ieee-uffc.org\/\u0022\u003EUltrasonics, Ferroelectrics, and Frequency Control Society\u003C\/a\u003E (UFFC) recently celebrated his achievements and impact in the ultrasonics field by honoring him with the prestigious Rayleigh Award at the organization\u2019s annual meeting in Taipei, Taiwan.\u003C\/p\u003E\u003Cp\u003EThe award, which is the IEEE UFFC\u2019s highest accolade, recognizes sustained outstanding achievements in technical innovations, research, education, publications, and professional contributions over a span of more than 25 years.\u003C\/p\u003E\u003Cp\u003EEmelianov, a Georgia Research Alliance Eminent Scholar, received the award for his seminal contributions to elasticity imaging, ultrasound-guided photoacoustic imaging, and theranostic contrast agents.\u003C\/p\u003E\u003Cp\u003E\u201cThe Rayleigh award is an honor that highlights the transformative potential of biomedical ultrasound, and it reflects collaborative efforts of my trainees, colleagues, and collaborators who have contributed to advancing diagnostic ultrasound imaging and image-guided therapy,\u201d Emelianov said.\u003C\/p\u003E\u003Cp\u003EHis work has pioneered several techniques in those research areas and are capable of detecting and diagnosing cancer and other pathologies, assisting treatment planning, and enhancing image-guided therapy and monitoring of the treatment outcome. He has also developed approaches for image-guided molecular therapy and therapeutic applications of ultrasound and electromagnetic energy.\u003C\/p\u003E\u003Cp\u003EEmelianov, holds a joint appointment in the School of Electrical and Computer Engineering and the \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/\u0022\u003EWallace H. Coulter Department of Biomedical Engineering\u003C\/a\u003E (BME). He is also appointed at the \u003Ca href=\u0022https:\/\/med.emory.edu\/\u0022\u003EEmory University School of Medicine\u003C\/a\u003E, where he is affiliated with Winship Cancer Institute, Department of Radiology, and other clinical units\u003C\/p\u003E\u003Cp\u003EHe\u2019s authored of over 250 archival publications including peer-reviewed research articles, invited reviews and book chapters, and more than 550 proceedings, abstracts, and presentations.\u003C\/p\u003E\u003Cp\u003ECurrently, he runs the \u003Ca href=\u0022https:\/\/ultrasound.gatech.edu\/\u0022\u003EUltrasound Imaging and Therapeutics Research Laboratory\u003C\/a\u003E, with a research focuses on cancer and other disease imagining, ranging from molecular imaging, functional imaging, and tissue differentiation to drug delivery and release, image-guided surgery, and intervention.\u003C\/p\u003E\u003Cp\u003EEmelianov was recently \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/05\/ushering-new-era-pediatric-healthcare-georgia-tech\u0022\u003Enamed the co-director of the Children\u2019s Healthcare of Atlanta Pediatric Technology Center\u003C\/a\u003E (PTC). In this role, he oversees a unique partnership that supports interdisciplinary research among clinicians, engineers, and scientists from Georgia Tech, Children\u2019s, and Emory University. The goal is to harness the power of artificial intelligence, data science, and cutting-edge medical devices to address the most pressing challenges in pediatric healthcare.\u003C\/p\u003E\u003Cp\u003EIn recognition of his groundbreaking contributions to the field, Emelianov has received several other recognitions, including Fellow of the American Institute for Medical and Biological Engineering (AIMBE), Institute of Electrical and Electronics Engineers (IEEE), Acoustical Society of America (OSA), and Society of Photographic Instrumentation Engineers (SPIE).\u003C\/p\u003E\u003Cp\u003EEmelianov has been with ECE since 2015. He received his undergraduate and graduate education from Moscow State University. He then completed his post-graduate work at the University of Michigan.\u003C\/p\u003E\u003Cp\u003EFrom 2002 to 2015, Emelianov was a faculty member in the BME and ECE Departments at the University of Texas at Austin and Department of Imaging Physics at the University of Texas M.D. Anderson Cancer Center.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE professor received the international recognition in his field, the Lord Rayleigh Award from the IEEE Ultrasonics, Ferroelectrics, and Frequency Control Society, recognizing his outstanding achievements, innovation, and leadership in advancing the field of ultrasonics.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor received the international recognition in his field, the Lord Rayleigh Award from the IEEE UFFC, recognizing his outstanding achievements, innovation, and leadership in advancing the field of ultrasonics."}],"uid":"36558","created_gmt":"2024-11-27 19:19:27","changed_gmt":"2024-11-27 20:36:39","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-11-27T00:00:00-05:00","iso_date":"2024-11-27T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675747":{"id":"675747","type":"image","title":"Stas Rayleigh Award.jpg","body":null,"created":"1732739762","gmt_created":"2024-11-27 20:36:02","changed":"1732739762","gmt_changed":"2024-11-27 20:36:02","alt":"Stas Emelianov","file":{"fid":"259409","name":"Stas Rayleigh Award.jpg","image_path":"\/sites\/default\/files\/2024\/11\/27\/Stas%20Rayleigh%20Award.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/11\/27\/Stas%20Rayleigh%20Award.jpg","mime":"image\/jpeg","size":1669216,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/11\/27\/Stas%20Rayleigh%20Award.jpg?itok=e2zRFk-q"}}},"media_ids":["675747"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"103161","name":"Ultrasonics"},{"id":"1187","name":"IEEE"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678608":{"#nid":"678608","#data":{"type":"news","title":" Semiconductor Research Corp. and Georgia Tech Secure $285M SMART USA Institute ","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;The Department of Commerce has granted the Semiconductor Research Corporation (SRC), its partners, and Georgia Institute of Technology $285 million to establish and operate the 18th \u003Ca href=\u0022https:\/\/www.manufacturingusa.com\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EManufacturing USA Institute\u003C\/a\u003E. The \u003Ca href=\u0022https:\/\/www.src.org\/about\/smart-usa-institute\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ESemiconductor Manufacturing and Advanced Reseach with Twins (SMART USA)\u003C\/a\u003E will focus on using digital twins to accelerate the development and deployment of microelectronics. SMART USA, with more than 150 expected partner entities representing industry, academia, and the full spectrum of supply chain design and manufacturing, will span more than 30 states and have combined funding totaling $1 billion.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThis is the first-of-its-kind CHIPS Manufacturing USA Institute.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cGeorgia Tech\u2019s role in the SMART USA Institute amplifies our trailblazing chip and advanced packaging research and leverages the strengths of our interdisciplinary research institutes,\u201d said \u003Ca href=\u0022https:\/\/research.gatech.edu\/people\/timothy-charles-lieuwen\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ETim Lieuwen\u003C\/a\u003E, interim executive vice president for Research. \u201cWe believe innovation thrives where disciplines and sectors intersect. And the SMART USA Institute will help us ensure that the benefits of our semiconductor and advanced packaging discoveries extend beyond our labs, positively impacting the economy and quality of life in Georgia and across the United States.\u201d\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThe \u003Ca href=\u0022http:\/\/prc.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E (PRC), directed by \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E Dan Fielder Professor \u003Ca href=\u0022https:\/\/research.gatech.edu\/people\/muhannad-s-bakir\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EMuhannad Bakir\u003C\/a\u003E, played an integral role in developing the winning proposal. Georgia Tech will be designated as the Digital Innovation Semiconductor Center (DISC) for the Southeastern U.S. \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cWe are honored to collaborate with SRC and their team on this new Manufacturing USA Institute. Our partnership with SRC spans more than two decades, and we are thrilled to continue this collaboration by leveraging the Institute\u2019s wide range of semiconductor and advanced packaging expertise,\u201d said Bakir.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EThrough the \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/core-facilities\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EInstitute of Matter and Systems\u2019\u003C\/a\u003E\u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/core-facilities\u0022\u003E core facilities\u003C\/a\u003E, housed in the \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/marcus-nanotechnology-building\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EMarcus Nanotechnology Building\u003C\/a\u003E, DISC will accelerate semiconductor and advanced packaging development.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cThe awarding of the Digital Twin Manufacturing USA Institute is a culmination of more than three years of work with the Semiconductor Research Corporation and other valued team members who share a similar vision of advancing U.S. leadership in semiconductors and advanced packaging,\u201d said \u003Ca href=\u0022https:\/\/research.gatech.edu\/people\/george-white\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EGeorge White\u003C\/a\u003E, senior director for strategic partnerships at Georgia Tech.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u201cAs a founding member of the SMART USA Institute, Georgia Tech values this long-standing partnership. Its industry and academic partners, including the \u003Ca href=\u0022https:\/\/commerce.gov\/news\/blog\/2024\/02\/commerce-secretary-gina-raimondo-hosts-launch-hbcu-chips-network-build-skilled\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EHBCU CHIPS Network\u003C\/a\u003E, stand ready to make significant contributions to realize the goals and objectives of the SMART USA Institute,\u201d White added.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;Georgia Tech also plans to capitalize on the supply chain and optimization strengths of the No. 1-ranked \u003Ca href=\u0022https:\/\/isye.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EH. Milton Stewart School of Industrial and Systems Engineering\u003C\/a\u003E (ISyE). ISyE experts will help develop supply-chain digital twins to optimize and streamline manufacturing and operational efficiencies.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EDavid\u202fHenshall, SRC vice president of Business Development, said, \u201cThe SMART USA Institute will advance American digital twin technology and apply it to the full semiconductor supply chain, enabling rapid process optimization, predictive maintenance, and agile responses to chips supply chain disruptions. These efforts will strengthen U.S. global competitiveness, ensuring our country reaps the rewards of American innovation at scale.\u201d \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.commerce.gov\/news\/press-releases\/2024\/11\/chips-america-announces-new-proposed-285-million-award-chips\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ERead the full announcement from the Department of Commerce.\u003C\/a\u003E\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cem\u003EThe award will help increase U.S. global competitiveness in semiconductor and advanced packaging research and manufacturing.\u003C\/em\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The award will help increase U.S. global competitiveness in semiconductor and advanced packaging research and manufacturing."}],"uid":"35272","created_gmt":"2024-11-22 19:39:38","changed_gmt":"2024-11-22 22:57:46","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-11-22T00:00:00-05:00","iso_date":"2024-11-22T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675725":{"id":"675725","type":"image","title":"smart-usa-logo-tm-name-stamped.png","body":null,"created":"1732304385","gmt_created":"2024-11-22 19:39:45","changed":"1732304385","gmt_changed":"2024-11-22 19:39:45","alt":"SMART USA logo","file":{"fid":"259385","name":"smart-usa-logo-tm-name-stamped.png","image_path":"\/sites\/default\/files\/2024\/11\/22\/smart-usa-logo-tm-name-stamped.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/11\/22\/smart-usa-logo-tm-name-stamped.png","mime":"image\/png","size":142392,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/11\/22\/smart-usa-logo-tm-name-stamped.png?itok=iDKwRMd9"}}},"media_ids":["675725"],"groups":[{"id":"660369","name":"Matter and Systems"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"},{"id":"39541","name":"Systems"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Research Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678457":{"#nid":"678457","#data":{"type":"news","title":"Lee Receives Top Award as ECE Has Strong Showing at IEEE International Symposium on Phased Array Systems","body":[{"value":"\u003Cp\u003EThe Georgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) had a successful trip to the \u003Ca href=\u0022https:\/\/www.ieee-array.org\/\u0022\u003E2024 IEEE International Symposium on Phased Array Systems and Technology\u003C\/a\u003E in Boston this October.\u003C\/p\u003E\u003Cp\u003EIt was highlighted by Ph.D. student Seung Yoon Lee winning the third prize of Student Paper Competition for his research titled, \u201cHighly Integrated mmWave Antenna-on-Chip Arrays Using Substrate-Integrated Air Cavities.\u201d\u003C\/p\u003E\u003Cp\u003EThe paper was selected out of 172 accepted papers at the conference.\u003C\/p\u003E\u003Cp\u003EIt presents the design, fabrication, and characterization of a 60 gigahertz (109 hertz) beamforming array for 6G high data-rate wireless systems. Specially, it introduces mmWave 1\u00d78 on-chip miniaturized cavity antenna arrays with high efficiency and reduced mutual coupling, leading to better connectivity.\u003C\/p\u003E\u003Cp\u003EThe proposed silicon-based antenna offers the potential for future wireless system-on-a-chip (SoC) applications better equipped to handle high data throughput. Microfabrication of the proposed antennas and cavities was performed at \u003Ca href=\u0022https:\/\/cleanroom.gatech.edu\/\u0022\u003EGeorgia Tech cleanroom facility.\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003ELee completed the research in Associate Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/nima-ghalichechian\u0022\u003ENima Ghalichechian\u003C\/a\u003E\u2019s \u003Ca href=\u0022https:\/\/antennas.ece.gatech.edu\/\u0022\u003EmmWave Antennas and Arrays Laboratory\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThis is the latest of many research recognitions for Lee. He most recently received the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/01\/lee-awarded-grant-high-capacity-video-transmission-antenna-project\u0022\u003EIEEE Antenna and Propagation Society grant\u003C\/a\u003E for the development of a highly efficient on-chip antenna array, in hopes of addressing growing global mobile video traffic.\u003C\/p\u003E\u003Cp\u003ELee has also published seven peer-reviewed journal articles, 14 international conference papers, and is the inventor of 19 patents.\u003C\/p\u003E\u003Cp\u003EThree other ECE research groups presented research at the conference: Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/morris-b-cohen\u0022\u003EMorris Cohen\u003C\/a\u003E\u2019s \u003Ca href=\u0022http:\/\/www.ece.gatech.edu\/research\/labs\/lf\/\u0022\u003ELow Frequency Radio Group\u003C\/a\u003E, Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/visvesh-s-sathe\u0022\u003EVisvesh Sathe\u003C\/a\u003E\u2019s \u003Ca href=\u0022https:\/\/psylab.ece.gatech.edu\/\u0022\u003EProcessing Systems Lab\u003C\/a\u003E, and Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003EManos Tentzeris\u003C\/a\u003E\u2019 \u003Ca href=\u0022https:\/\/athena.gatech.edu\/\u0022\u003EATHENA Research Group.\u003C\/a\u003E\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. student was recognized during the Student Paper Competition, and research from three other ECE-affiliated groups were presented at the conference.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. student was recognized during the Student Paper Competition, and research from three other ECE-affiliated groups were presented at the conference."}],"uid":"36558","created_gmt":"2024-11-15 16:15:28","changed_gmt":"2024-11-15 16:17:40","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","location":"Atlanta, GA","dateline":{"date":"2024-11-15T00:00:00-05:00","iso_date":"2024-11-15T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675648":{"id":"675648","type":"image","title":"Lee Best Paper.jpg","body":null,"created":"1731687346","gmt_created":"2024-11-15 16:15:46","changed":"1731687346","gmt_changed":"2024-11-15 16:15:46","alt":"Seung Yoon Lee with Nima Ghalichechian at the 2024 IEEE International Symposium on Phased Array Systems \u0026 Technology.","file":{"fid":"259296","name":"Lee Best Paper.jpg","image_path":"\/sites\/default\/files\/2024\/11\/15\/Lee%20Best%20Paper.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/11\/15\/Lee%20Best%20Paper.jpg","mime":"image\/jpeg","size":1312403,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/11\/15\/Lee%20Best%20Paper.jpg?itok=ydEUc4N9"}}},"media_ids":["675648"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"678068":{"#nid":"678068","#data":{"type":"news","title":"ECE Students Take Home Top Honors at TECHCON 2024","body":[{"value":"\u003Cp\u003ETwo Georgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) students took home top awards at the Semiconductor Research Corporation (SRC) TECHCON 2024 in Austin, Texas this fall.\u003C\/p\u003E\u003Cp\u003EPh.D. candidate Zishen Wan won the Best Presentation Award, while fourth-year electrical engineering student Avanish Narumanch placed top three in the Undergraduate Research Awards.\u003C\/p\u003E\u003Cp\u003EWan presented his research, \u201cHeterogeneous 3D Integrated CIM for Factorization with Holographic Perceptual Representations,\u201d which aims to improve AI systems\u0027 ability to perceive and reason by disentangling complex sensory signals.\u003C\/p\u003E\u003Cp\u003E\u0022The research enhances AI systems\u0027 ability to disentangle complex sensory signals, which is critical for advancing perception and reasoning in future cognitive AI systems.\u0022\u003C\/p\u003E\u003Cp\u003EAlong with the award, Wan was one of just four students selected to present their research to the SRC director and keynote speaker.\u003C\/p\u003E\u003Cp\u003EThe research presents a heterogeneous 3D integrated in-memory compute engine to breakdown complex object representations. The technology is able to store and recognize complex patterns through holographic perceptual representations, which holds detailed information similar to that of a hologram.\u003C\/p\u003E\u003Cp\u003EThis process can store a lot of information in a way that mimics human perception.\u003C\/p\u003E\u003Cp\u003EThe system uses a technology called \u0022memristors,\u0022 which are tiny devices that can remember and adjust their electrical resistance depending on the task. These memristors have built-in stochasticity or non-volatility, combined with volatile memory as a heterogeneous system, enabling more effective simulation of natural systems and better handling of uncertainty in computing.\u003C\/p\u003E\u003Cp\u003EThe results have been very promising. Wan\u2019s design has shown a five-order magnitude increase in factorization capacity. It\u2019s also more efficient, packing in five and a half times more computing power into almost six times less space than 2D designs, while using 20 percent less energy.\u003C\/p\u003E\u003Cp\u003ENarumanch was recognized for his research on ways to achieve faster and more energy-efficient memory devices. It focused on spintronic memory devices, which are non-volatile, low-power, and scalable electronic devices that use electron spin to store information.\u003C\/p\u003E\u003Cp\u003EThe goal of the project was to reduce switching time and energy consumption without sacrificing reliability.\u003C\/p\u003E\u003Cp\u003EBoth students completed the research through the \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/cocosys\/\u0022\u003EJUMP 2.0 COCOSYS Center.\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003EWan\u2019s work was in collaboration with senior research engineer \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/mohamed-ibrahim\u0022\u003EMohamed Ibrahim\u003C\/a\u003E, Associate Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/tushar-krishna\u0022\u003ETushar Krishna\u003C\/a\u003E, and Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdury\u003C\/a\u003E, along with fellow ECE Ph.D. students Che-Kai Liu (co-first author), Hanchen Yang, and Samuel Spetalnick.\u003C\/p\u003E\u003Cp\u003EThis is the latest of many awards his work has received, which include being named a \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/wan-selected-machine-learning-and-systems-rising-star\u0022\u003E2023 Machine Learning and Systems Rising Star\u003C\/a\u003E and 2024 Cyber-Physical Systems Rising Star.\u003C\/p\u003E\u003Cp\u003ENarumanch worked on his research under the guidance of ECE Ph.D. candidate Md Nahid Haque Shazon, who works in ECE \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/azad-j-naeemi\u0022\u003EProfessor Azad Naeemi\u003C\/a\u003E\u2019s \u003Ca href=\u0022https:\/\/nrl.gatech.edu\/\u0022\u003ENanoelectronics Research Lab.\u003C\/a\u003E\u003C\/p\u003E\u003Cp\u003ESRC TECHCON is the annual flagship technical conference hosted by the SRC. The conference draws top researchers, scientists, and a large field of students from across the United States and world to present cutting-edge research in the field of semiconductor electronics.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EPh.D. candidate Zishen Wan was recognized for his novel AI perception system design, while Avanish Narumanch was recognized as one of the top undergraduate researchers.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Ph.D. candidate Zishen Wan was recognized for his novel AI perception system design, while Avanish Narumanch was recognized as one of the top undergraduate researchers."}],"uid":"36558","created_gmt":"2024-10-31 19:35:36","changed_gmt":"2024-10-31 19:37:16","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-10-31T00:00:00-04:00","iso_date":"2024-10-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675501":{"id":"675501","type":"image","title":"Shimeng Deans Professor.jpg","body":null,"created":"1730403343","gmt_created":"2024-10-31 19:35:43","changed":"1730403343","gmt_changed":"2024-10-31 19:35:43","alt":"Zishen Wan and Avanish Narumanchi","file":{"fid":"259129","name":"Shimeng Deans Professor.jpg","image_path":"\/sites\/default\/files\/2024\/10\/31\/Shimeng%20Deans%20Professor.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/10\/31\/Shimeng%20Deans%20Professor.jpg","mime":"image\/jpeg","size":1027778,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/10\/31\/Shimeng%20Deans%20Professor.jpg?itok=R13ZYn0N"}}},"media_ids":["675501"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"172976","name":"SRC TECHCON"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"677911":{"#nid":"677911","#data":{"type":"news","title":"ECE Research Group Develops Open-Source Infrastructure to Advance Machine Learning for Hardware Design","body":[{"value":"\u003Cp\u003EA research group from the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE), led by Assistant Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECallie Hao\u003C\/a\u003E, won the Best Paper Award at the 2024 ACM\/IEEE International Symposium on Machine Learning for CAD, held in Salt Lake City, Utah, from Sept. 9\u201311.\u003C\/p\u003E\u003Cp\u003EThe award-winning paper, \u201c\u003Ca href=\u0022https:\/\/dl.acm.org\/doi\/abs\/10.1145\/3670474.3685961\u0022\u003EHLSFactory: A Framework Empowering High-Level Synthesis Datasets for Machine Learning and Beyond,\u003C\/a\u003E\u201d introduces an open-source infrastructure that simplifies the contribution and sharing of hardware designs.\u003C\/p\u003E\u003Cp\u003EThis platform allows developers to submit their designs to a common pool, making it easy for machine learning practitioners to access the data they need to train their algorithms, ultimately driving advancements in hardware design.\u003C\/p\u003E\u003Cp\u003EThe framework addresses a major challenge in applying machine learning to chip design:the scarcity of high-quality training data. By being open-source, HLSFactory encourages a wide range of contributions from the community, creating a richer dataset for researchers and developers.\u003C\/p\u003E\u003Cp\u003E\u201cHLSFactory creates unified platform that the entire community can leverage to drive more scientific discoveries and improve design outcomes,\u201d said Hao.\u003C\/p\u003E\u003Cp\u003EThe software was developed through Hao\u0027s \u003Ca href=\u0022https:\/\/sharclab.ece.gatech.edu\/\u0022\u003ESoftware\/Hardware Co-Design Lab\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EECE Ph.D. candidate Stefan Abi-Karam was the lead author on the paper. Abi-Karam previously won the Community Award at the 33rd International Conference on Field-Programmable Logic and Applications (FPL) 2023, for his work on \u201cGNNBuilder: An Automated Framework for Generic Graph Neural Network Accelerator Generation, Simulation, and Optimization.\u201d The award recognized his contributions to the open-source community, underscoringthe group\u2019s dedication to open-source tools and hardware design, according to Hao.\u003C\/p\u003E\u003Cp\u003EECE Ph.D. candidates Rishov Sarkar and Hanqiu Chen also contributed to the paper, alongside collaborators Allison Seigler, Sean Lowe, Zhigang Wei, Nanditha Rao, and Lizy Kurian John from the University of Texas at Austin, and Aman Arora from Arizona State University.\u003C\/p\u003E\u003Cp\u003EHao, who \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/hao-joins-ece-faculty-appointed-sutterfield-professorship\u0022\u003Ejoined the Georgia Tech ECE faculty in 2022\u003C\/a\u003E, specializes in efficient hardware design and machine learning algorithms. Her research focuses on reconfigurable, high-efficiency computing and developing practical electronic design automation tools. She has previously been recognized with several prestigious awards, including the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/03\/hao-wins-nsf-career-award-digital-hardware-design-research-0\u0022\u003ENSF CAREER Award\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/hao-earns-intel-rising-star-faculty-award\u0022\u003EIntel Rising Star Faculty Award\u003C\/a\u003E, for her groundbreaking work in hardware design research.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cstrong\u003ELed by Assistant Professor Cong \u0022Callie\u0022 Hao, the group is creating an open-source platform that enables hardware developers to contribute designs for use by machine learning practitioners.\u003C\/strong\u003E\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Led by Assistant Professor Cong \u0022Callie\u0022 Hao, the group is creating an open-source platform that enables hardware developers to contribute designs for use by machine learning practitioners."}],"uid":"36558","created_gmt":"2024-10-24 20:02:03","changed_gmt":"2024-10-24 21:09:22","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-10-24T00:00:00-04:00","iso_date":"2024-10-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675434":{"id":"675434","type":"image","title":"Hao Best Paper.jpg","body":null,"created":"1729800149","gmt_created":"2024-10-24 20:02:29","changed":"1729800149","gmt_changed":"2024-10-24 20:02:29","alt":"Callie Hao and ECE Ph.D. candidate Stefan Abi-Karam with the Best Paper Award.","file":{"fid":"259056","name":"Hao Best Paper.jpg","image_path":"\/sites\/default\/files\/2024\/10\/24\/Hao%20Best%20Paper.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/10\/24\/Hao%20Best%20Paper.jpg","mime":"image\/jpeg","size":1430551,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/10\/24\/Hao%20Best%20Paper.jpg?itok=CpjGCzmr"}}},"media_ids":["675434"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"103141","name":"Best Paper Award"},{"id":"9167","name":"machine learning"},{"id":"193045","name":"Software\/Hardware Co-design Lab"}],"core_research_areas":[{"id":"193655","name":"Artificial Intelligence at Georgia Tech"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"676919":{"#nid":"676919","#data":{"type":"news","title":"Student Analog Chip Designs Come to Life Through New Collaboration with Texas Instruments","body":[{"value":"\u003Cdiv\u003E\u003Cdiv\u003E\u003Cdiv\u003E\u003Cp\u003EWhether it is the sound of music through your headphones or the precise control of a robotic arm, analog circuits play a crucial role in both established and future technologies.\u003C\/p\u003E\u003Cp\u003EAnalog does a lot of things, but in general, it functions as the interpreter between the real world and digital devices. It transforms signals \u2014 like sound waves, voltage levels, temperature, pressure, and light intensity \u2014 into information that digital systems can understand.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003C\/div\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cdiv\u003E\u003Cdiv\u003E\u003Cp\u003EAs the semiconductor industry evolves, the demand for skilled analog engineers continues to grow even in this digital world.\u003C\/p\u003E\u003Cp\u003E\u201cAnalog circuits remain vital because they enable the initial data acquisition from the environment,\u201d said Assistant Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shaolan-li\u0022\u003E\u003Cstrong\u003EShaolan Li\u003C\/strong\u003E\u003C\/a\u003E. \u201cThat\u2019s just the application perspective, but they are also structurally very different than digital circuits. Students need hands-on experience with real-world measurements, which are crucial for mastering analog circuits.\u201d\u003C\/p\u003E\u003Cp\u003ETo meet this demand, the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/strong\u003E\u003C\/a\u003E (ECE) is collaborating with \u003Ca href=\u0022https:\/\/www.ti.com\/\u0022 rel=\u0022noreferrer\u0022 title=\u0022(opens in a new window)\u0022\u003E\u003Cstrong\u003ETexas Instruments\u003C\/strong\u003E\u003C\/a\u003E (TI) to launch strategic educational opportunities aimed at providing students access to industry-grade analog chip design, fabrication, and testing processes. TI is a global semiconductor company that designs, manufactures, and sells analog and embedded processing chips.\u003C\/p\u003E\u003Ch3\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/analogchipnews\u0022\u003E\u003Cstrong\u003ERead the full article...\u003C\/strong\u003E\u003C\/a\u003E\u003C\/h3\u003E\u003C\/div\u003E\u003C\/div\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EStudents experience the real-world analog chip tapeout process, with their designs being produced at Texas Instruments\u2019 state-of-the-art wafer fabs.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Students experience the real-world analog chip tapeout process, with their designs being produced at Texas Instruments\u2019 state-of-the-art wafer fabs."}],"uid":"36172","created_gmt":"2024-09-18 14:45:08","changed_gmt":"2024-09-30 16:28:25","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-09-18T00:00:00-04:00","iso_date":"2024-09-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"675008":{"id":"675008","type":"image","title":"1_ECE TI Analog_10_working on chip.jpg","body":"\u003Cdiv\u003E\u003Cp\u003ETzu-Han Wang working on a circuit board with an analog chip connected to pattern generator instruments used to create continuous waveforms to test and analyze the performance of the chip.\u003C\/p\u003E\u003C\/div\u003E","created":"1726670716","gmt_created":"2024-09-18 14:45:16","changed":"1726670716","gmt_changed":"2024-09-18 14:45:16","alt":"Tzu-Han Wang working on a circuit board with an analog chip connected to pattern generator instruments used to create continuous waveforms to test and analyze the performance of the chip.    ","file":{"fid":"258593","name":"1_ECE TI Analog_10_working on chip.jpg","image_path":"\/sites\/default\/files\/2024\/09\/18\/1_ECE%20TI%20Analog_10_working%20on%20chip.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/09\/18\/1_ECE%20TI%20Analog_10_working%20on%20chip.jpg","mime":"image\/jpeg","size":5123597,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/09\/18\/1_ECE%20TI%20Analog_10_working%20on%20chip.jpg?itok=jxsHu5o-"}}},"media_ids":["675008"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"42911","name":"Education"},{"id":"145","name":"Engineering"},{"id":"129","name":"Institute and Campus"},{"id":"132","name":"Institute Leadership"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"181277","name":"analog circuits"},{"id":"1470","name":"Texas Instruments"},{"id":"182039","name":"Shaolan Li"},{"id":"139771","name":"Arijit Raychowdhury"},{"id":"193959","name":"Tzu-Han Wang"},{"id":"193960","name":"curriculum collaboration"},{"id":"193966","name":"news to share"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"676784":{"#nid":"676784","#data":{"type":"news","title":"Penta Awarded Quad Fellowship for Research on Advanced Chiplet Systems","body":[{"value":"\u003Cp\u003EThird-year Georgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) Ph.D. student Srujan Penta recently received the \u003Ca href=\u0022https:\/\/www.quadfellowship.org\/\u0022\u003EQuad Fellowship\u003C\/a\u003E for his work developing cost-effective chips with more power than existing systems.\u003C\/p\u003E\u003Cp\u003EThe global fellowship program is a joint initiative of the Australian, Indian, Japan, and United States governments to build ties among the next generation of scientists and technologists.\u003C\/p\u003E\u003Cp\u003EIt sponsors exceptional master\u0027s and doctoral students who study science, technology, engineering, and mathematics (STEM), building a network of experts committed to advancing innovation and collaboration in the private, public, and academic sectors.\u003C\/p\u003E\u003Cp\u003E\u201cI anticipate leveraging my experience as a Quad Fellow and connections within the Quad community towards my long-term goals of democratizing the semiconductor chip supply chain and providing education and employment opportunities to individuals from marginalized communities in STEM,\u201d Penta said.\u003C\/p\u003E\u003Cp\u003EPenta\u2019s doctoral research, conducted under ECE professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E in his \u003Ca href=\u0022https:\/\/bakirlab.gatech.edu\/\u0022\u003EIntegrated 3D Systems Group\u003C\/a\u003E, aims to bridge the performance-cost trade-off gap between standardized chiplet-based systems that perform better than a traditional system-on-a-chip.\u003C\/p\u003E\u003Cp\u003EHe was one of 50 students to receive the fellowship world-wide, including four recipients from Georgia Tech, Penta being the only recipient from ECE.\u003C\/p\u003E\u003Cp\u003E\u201cI am grateful to my family, friends, peers, the School of ECE and my advisor, Muhannad Bakir who supported me in the application process,\u201d Penta said. \u201cI am excited about this unique opportunity to connect with world leaders in the key roles for the development of the Indo-Pacific regions, specifically the semiconductor landscape.\u0022\u003C\/p\u003E\u003Cp\u003EPenta is from Hyderabad, India, and graduated with a B.E. in electrical and electronics engineering from the Birla Institute of Technology and Science (BITS), Pilani, India.\u003C\/p\u003E\u003Cp\u003EHe worked on state-of-the-art transistor technologies as a process design kit engineer at Samsung Semiconductors in Bengaluru, India, before pursuing his Ph.D. at Georgia Tech in 2022.\u003C\/p\u003E\u003Cp\u003EPenta is also committed to furthering his understanding of the business side of engineering. He is part of the \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/centers-and-initiatives\/tiger\/index.html#:~:text=TI%3AGER%20is%20an%20educational,practical%2C%20real%2Dworld%20experiences.\u0022\u003ETechnology Innovation: Generating Economic Results \u003C\/a\u003E(TI:GER) program at the Georgia Tech \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/index.html\u0022\u003EScheller School of Business\u003C\/a\u003E, where he learns about the entrepreneurial strategies for technical ideas and innovations.\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe third-year ECE Ph.D. candidate hopes to use the fellowship to democratize the global semiconductor supply chain.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The third-year ECE Ph.D. candidate hopes to use the fellowship to democratize the global semiconductor supply chain."}],"uid":"36558","created_gmt":"2024-09-12 20:20:57","changed_gmt":"2024-09-13 15:01:09","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-09-12T00:00:00-04:00","iso_date":"2024-09-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674970":{"id":"674970","type":"image","title":"Penta Award.jpg","body":null,"created":"1726239597","gmt_created":"2024-09-13 14:59:57","changed":"1726239597","gmt_changed":"2024-09-13 14:59:57","alt":"Srujan Penta","file":{"fid":"258544","name":"Penta Award.jpg","image_path":"\/sites\/default\/files\/2024\/09\/13\/Penta%20Award.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/09\/13\/Penta%20Award.jpg","mime":"image\/jpeg","size":1381411,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/09\/13\/Penta%20Award.jpg?itok=ygA8-2Vc"}}},"media_ids":["674970"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"193949","name":"Quad Fellowship"},{"id":"167609","name":"semiconductor"},{"id":"175758","name":"chiplets"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"676470":{"#nid":"676470","#data":{"type":"news","title":"IMS Receives NSF Funding for Education and Outreach Programs","body":[{"value":"\u003Cp\u003EThe \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\u0022\u003EInstitute for Matter and Systems\u003C\/a\u003E (IMS) has received $700,000 in funding from the National Science Foundation (NSF) for two education and outreach programs.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe awards will support the \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/undergraduate-research\u0022\u003EResearch Experience for Undergraduates\u003C\/a\u003E (REU) and \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/k-12-resources\u0022\u003EResearch Experience for Teachers\u003C\/a\u003E (RET) programs at Georgia Tech. The REU summer internship program provides undergraduate students from two- and four-year programs the chance to perform cutting-edge research at the forefront of nanoscale science and engineering.\u0026nbsp;The RET program for high school teachers and technical college faculty offers a paid opportunity to experience the excitement of nanotechnology research and to share this experience in their classrooms.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cThis NSF funding allows us to be able to do more with the programs,\u201d said \u003Ca href=\u0022https:\/\/matter-systems.gatech.edu\/mikkel-thomas\u0022\u003EMikkel Thomas\u003C\/a\u003E, associate director for education and outreach. \u201cThese are programs that have existed in the past, but we haven\u2019t had external funding for the last three years. The NSF support allows us to do more \u2014 \u0026nbsp;bring more students into the program or increase the RET stipends.\u201d\u003C\/p\u003E\u003Cp\u003EIn addition to the REU and RET programs, IMS offers short courses and workshops focused on professional development, instructional labs for undergraduate and graduate students, a certificate for veterans in microelectronics and nano-manufacturing, and community engagement activities such as the Atlanta Science Festival.\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Institute for Matter and Systems (IMS) has received $700,000 in funding from the National Science Foundation (NSF) for two education and outreach programs.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The Institute for Matter and Systems (IMS) has received $700,000 in funding from the National Science Foundation (NSF) for two education and outreach programs. "}],"uid":"35272","created_gmt":"2024-09-03 15:21:02","changed_gmt":"2024-09-03 16:53:18","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-09-03T00:00:00-04:00","iso_date":"2024-09-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674795":{"id":"674795","type":"image","title":"IMG_5911.JPG","body":null,"created":"1725377050","gmt_created":"2024-09-03 15:24:10","changed":"1725377050","gmt_changed":"2024-09-03 15:24:10","alt":"Mikkel Thomas speakers with K-12 Educators during a summer training","file":{"fid":"258358","name":"IMG_5911.JPG","image_path":"\/sites\/default\/files\/2024\/09\/03\/IMG_5911.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/09\/03\/IMG_5911.JPG","mime":"image\/jpeg","size":2678130,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/09\/03\/IMG_5911.JPG?itok=Hnmoh9pO"}}},"media_ids":["674795"],"groups":[{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"42911","name":"Education"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"676338":{"#nid":"676338","#data":{"type":"news","title":"NSF Awards $2M to Clark Atlanta University in Collaboration With the HBCU CHIPS Network","body":[{"value":"\u003Cp\u003EThe National Science Foundation has awarded $2 million to Clark Atlanta University in partnership with the HBCU CHIPS Network, a collaborative effort involving historically black colleges and universities (HBCUs), government agencies, academia, and industry that will serve as a national resource for semiconductor research and education.\u003C\/p\u003E\u003Cp\u003E\u201cThis is an exciting time for the HBCU CHIPS Network,\u201d said George White, senior director for Strategic Partnerships at Georgia Tech. \u201cThis funding, and the support of Georgia Tech Executive Vice President for Research Chaouki Abdallah, is integral for the successful launch of the CHIPS Network.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe HBCU Chips Network works to cultivate a diverse and skilled workforce that supports the national semiconductor industry. The student research\u0026nbsp;and internship opportunities along with the development of specialized curricula in semiconductor design, fabrication, and related fields will expand the microelectronics workforce.\u0026nbsp;As part of the network, Georgia Tech will optimize the packaging of chips into systems.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.cau.edu\/national-science-foundation-awards-2m-to-clark-atlanta-university\/\u0022\u003ERead the full story by Clark Atlanta University.\u003C\/a\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech HBCU CHIPS Network partner school, Clark Atlanta University, has been awarded $2 million by the National Science foundation as part of the CHIPS Network, a collaborative effort involving historically black colleges and universities (HBCUs), government agencies, academia, and industry that will serve as a national resource for semiconductor research and education.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech HBCU CHIPS Network partner school, Clark Atlanta University, has been awarded $2 million by the National Science foundation as part of the CHIPS Network."}],"uid":"35272","created_gmt":"2024-08-28 15:54:13","changed_gmt":"2024-08-29 18:31:16","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-08-28T00:00:00-04:00","iso_date":"2024-08-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"654671":{"id":"654671","type":"image","title":"Microchips","body":null,"created":"1642784000","gmt_created":"2022-01-21 16:53:20","changed":"1642784000","gmt_changed":"2022-01-21 16:53:20","alt":"Microchip","file":{"fid":"248269","name":"microchips.png","image_path":"\/sites\/default\/files\/images\/microchips.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/microchips.png","mime":"image\/png","size":100344,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/microchips.png?itok=ZA-iKhWg"}}},"media_ids":["654671"],"groups":[{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EGeorgia Tech Contact:\u003Cbr\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E | Research Communications Program Manager\u003C\/p\u003E\u003Cp\u003E\u003Cbr\u003E\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EClark Atlanta University Contact:\u003Cbr\u003E\u003Ca href=\u0022mailto:fwilliams@cau.edu\u0022\u003EFrances Williams\u0026nbsp;\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664805":{"#nid":"664805","#data":{"type":"news","title":"Inaugural IEN Exponential Electronics Seed Grant Awarded","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) has selected \u201cIn-Body Networks of Electronic Therapeutics\u201d as the first project funded by the new IEN Exponential Electronics (IEN-EX) Seed Grant program. The project is led by \u003Ca href=\u0022https:\/\/research.gatech.edu\/alex-abramson\u0022\u003EAlex Abramson\u003C\/a\u003E (PI) and \u003Ca href=\u0022https:\/\/research.gatech.edu\/w-hong-yeo\u0022\u003EW. Hong Yeo\u003C\/a\u003E (Co-PI).\u003C\/p\u003E\u003Cp\u003EThe interdisciplinary team hopes to develop a new form of wireless communication that enables a wearable patch to communicate with ingested and implanted devices regardless of their location in the body without the need for large electronic components or energy sources. If the project is successful, it could lead to the development of previously impossible minimally invasive electronic therapeutic devices such as ingestible insulin pumps and triggerable neurostimulation systems.\u003C\/p\u003E\u003Cp\u003EThe IEN-EX program provides seed funding for Georgia Tech researchers to pursue \u201c1000x\u201d ideas within electronics or that bridge electronics with other technical domains. \u201c1000x\u201d ideas are those with the potential to improve one or more well-defined, but often overlooked or underappreciated, performance metrics by at least 1000x.\u003C\/p\u003E\u003Cp\u003E\u201cAbramson and Yeo\u2019s proposal is exactly why we created the IEN-EX program,\u201d said Michael Filler, IEN\u2019s associate director for research programs. \u201cIt articulates a compelling technical need at the intersection of disciplines and a targeted research program to \u2018derisk\u2019 key aspects of their vision. I am excited to see the work progress.\u201d\u003C\/p\u003E\u003Cp\u003EAbramson is an assistant professor in the School of Chemical and Biomolecular Engineering, and his research focus is on creating implantable and ingestible drug delivery devices. Yeo is an associate professor and Woodruff Faculty Fellow in the Woodruff School of Mechanical Engineering and holds a courtesy appointment in the Coulter Department of Biomedical Engineering. Yeo\u2019s research is on developing wearable sensor systems that can wirelessly communicate with smartphones. By combining their expertise, the duo believes they can create a new technology that will revolutionize the field of bioelectronics.\u003C\/p\u003E\u003Cp\u003E\u201cEngineering new human-machine interfaces is critical to developing personalized biomedical devices for more easily administrable treatments with fewer side effects,\u201d said Abramson. \u201cWe are grateful that the IEN is supporting us in this endeavor.\u201d\u003C\/p\u003E\u003Cp\u003EBoth Abramson and Yeo are part of the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/materials-for-biomedical-systems\/\u0022\u003EMaterials for Biomedical Systems\u003C\/a\u003E initiative, a group of scientists at Georgia Tech and Emory dedicated to developing targeted and effective therapies using materials and electronic systems. This is the first collaborative grant awarded to the initiative.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology has selected \u201cIn-Body Networks of Electronic Therapeutics\u201d as the first project funded.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The Institute for Electronics and Nanotechnology has selected \u201cIn-Body Networks of Electronic Therapeutics\u201d as the first project funded."}],"uid":"34760","created_gmt":"2023-01-17 20:01:27","changed_gmt":"2024-08-28 18:02:41","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-17T00:00:00-05:00","iso_date":"2023-01-17T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"664827":{"id":"664827","type":"image","title":"IEN 1000x Seed Grant Winners","body":null,"created":"1673993196","gmt_created":"2023-01-17 22:06:36","changed":"1673993196","gmt_changed":"2023-01-17 22:06:36","alt":"Alex Abramson and W. Hong Yeo","file":{"fid":"251500","name":"IEN 1000x Graphic-01.jpg","image_path":"\/sites\/default\/files\/images\/IEN%201000x%20Graphic-01.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/IEN%201000x%20Graphic-01.jpg","mime":"image\/jpeg","size":454336,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/IEN%201000x%20Graphic-01.jpg?itok=9Ombw1__"}}},"media_ids":["664827"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"191916","name":"exponential electronics"},{"id":"167679","name":"Seed Grant"},{"id":"107","name":"Nanotechnology"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"664423":{"#nid":"664423","#data":{"type":"news","title":"Fall 2022 IEN Seed Grant Winners Announced","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) at Georgia Tech has announced the Fall 2022 Core Facility Seed Grant winners. The primary purpose of this program is to give first- and second-year graduate students in diverse disciplines working on original and unfunded research in micro- and nanoscale projects the opportunity to access the most advanced academic cleanroom space in the Southeast. In addition to accessing the labs\u0027 high-level fabrication, lithography, and characterization tools, the awardees will have the opportunity to gain proficiency in cleanroom and tool methodology and access the consultation services provided by research staff members in IEN. Seed Grant awardees are also provided travel support to present their research at a scientific conference.\u003C\/p\u003E\u003Cp\u003EIn addition to student research skill development, this biannual grant program gives faculty with novel research topics the ability to develop preliminary data to pursue follow-up funding sources. The Core Facility Seed Grant program is supported by the Southeastern Nanotechnology Infrastructure Corridor (SENIC), a member of the National Science Foundation\u2019s National Nanotechnology Coordinated Infrastructure (NNCI).\u003C\/p\u003E\u003Cp\u003E\u003Cbr\u003ESince the start of the grant program in 2014, 82 projects from ten different schools in Georgia Tech\u2019s Colleges of Engineering and Science, as well as the Georgia Tech Research Institute and three other universities, have been seeded.\u003C\/p\u003E\u003Cp\u003EThe four winning projects in this round were awarded IEN cleanroom and lab access time to be used over the next year. In keeping with the interdisciplinary mission of IEN, the projects that will be enabled by the grants include research in microelectronics, optoelectronics, battery technology, and novel materials for energy harvesting.\u003C\/p\u003E\u003Cp\u003EThe Spring 2022 IEN Core Facility Seed Grant Award winners are:\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EAluminum Oxide\/Silver Microcavities for Trapping Light and Producing Polariton Coupling\u003C\/strong\u003E\u003Cbr\u003EPI: Juan-Pablo Correa-Baena\u003Cbr\u003EStudent: Martin Gomez\u003Cbr\u003ESchool of Materials Science and Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EFacile and Scalable Fabrication of 3D-Patterned Current Collectors for Li-metal Batteries\u003C\/strong\u003E\u003Cbr\u003EPI: Hailong Chen\u003Cbr\u003EStudent: Jakub Pepas\u003Cbr\u003EGeorge W. Woodruff School of Mechanical Engineering\/School of Materials Science and Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EElucidating Connections between the Piezoelectric and Auxetic Responses of Cellulose\u003C\/strong\u003E\u003Cbr\u003EPI: Meisha Shofner\u003Cbr\u003EStudent: Fariha Rubaiya\u003Cbr\u003ESchool of Materials Science and Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003ELow-Cost, Self-Propagating, Reactive Nanoporous Ni\/Al Interconnects for Low-Stress Die Assembly\u003C\/strong\u003E\u003Cbr\u003EPI: Vanessa Smet and Antonia Antoniou\u003Cbr\u003EStudent: Ali Amirnasiri\u003Cbr\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cem\u003EThe Southeastern Nanotechnology Infrastructure Corridor, a member of the National Nanotechnology Coordinated Infrastructure, is funded by NSF Grant ECCS-2025462.\u003C\/em\u003E\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EFour Interdisciplinary Projects to Receive IEN Technical Support and Facility Access.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Four Interdisciplinary Projects to Receive IEN Technical Support and Facility Access"}],"uid":"34760","created_gmt":"2023-01-05 19:03:01","changed_gmt":"2024-08-28 18:02:23","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-05T00:00:00-05:00","iso_date":"2023-01-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"655868":{"id":"655868","type":"image","title":"IEN Seed Grants","body":null,"created":"1646147525","gmt_created":"2022-03-01 15:12:05","changed":"1646147525","gmt_changed":"2022-03-01 15:12:05","alt":"IEN logo with sprouting plant","file":{"fid":"248650","name":"Square-image-seed-grant.png","image_path":"\/sites\/default\/files\/images\/Square-image-seed-grant.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Square-image-seed-grant.png","mime":"image\/png","size":75492,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Square-image-seed-grant.png?itok=yFWIUbyw"}}},"media_ids":["655868"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"167679","name":"Seed Grant"},{"id":"2832","name":"microelectronics"},{"id":"1815","name":"optoelectronics"},{"id":"191827","name":"battery technology"},{"id":"191828","name":"novel materials for energy harvesting"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003Cbr\u003EResearch Communications\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"665660":{"#nid":"665660","#data":{"type":"news","title":"Researchers Pioneer Process to Stack Micro-LEDs ","body":[{"value":"\u003Cp\u003EPut on a virtual reality headset and, chances are, it will look like you are viewing the world through a screen door. Current flat panel displays use pixels that are visible to the naked eye, along with small bits of unlit dark space between each pixel that can appear as a black, mesh-like grid.\u003C\/p\u003E\u003Cp\u003ENow, researchers from the Georgia Institute of Technology, in collaboration with researchers from the Massachusetts Institute of Technology (MIT), have developed a new process based on 2D materials to create LED displays with smaller and thinner pixels. Enabled by two-dimensional, materials-based layer transfer technology, the innovation promises a future of clearer and more realistic LED displays.\u003C\/p\u003E\u003Cp\u003EThe team published a paper in the journal \u003Cem\u003ENature \u003C\/em\u003Ein February titled, \u201c\u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41586-022-05612-1\u0022\u003EVertical full-colour micro-LEDs via 2D materials-based layer transfer\u003C\/a\u003E.\u201d Co-authors also include researchers from Sejong University in Korea, and from additional institutions in the U.S. and South Korea.\u003C\/p\u003E\u003Cp\u003EGeorgia Tech-Europe Professor Abdallah Ougazzaden and research scientist Suresh Sundaram (who both also hold appointments in Georgia Tech\u2019s \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E) collaborated with researchers from MIT to turn the conventional LED manufacturing process on its head \u2014 literally. Instead of using prevailing processes based on laying red, green, and blue (RGB) LEDs side by side, which limits pixel density, the team vertically stacked freestanding, ultrathin RGB LED membranes, achieving an array density of 5,100 pixels per inch \u2014 the smallest pixel size reported to date (4 microns) and the smallest-ever stack height \u2014 all while delivering a full commercial range of colors. This ultra-small vertical stack was achieved via the technology of van der Waals epitaxy on 2D boron nitride developed at the Georgia Tech-Europe lab and the technology of remote epitaxy on graphene developed at MIT.\u003C\/p\u003E\u003Cp\u003EThe study showed that the world\u2019s thinnest and smallest pixeled displays can be enabled by an active layer separation technology using 2D materials such as graphene and boron to enable high array density micro-LEDs resulting in full-color realization of micro-LED displays.\u003C\/p\u003E\u003Cp\u003EOne unique facet of the two-dimensional, material-based layer transfer (2DLT) technique is that it allows the reuse of epitaxial wafers. Reusing this costly substrate could significantly lower the cost for manufacturing smaller, thinner, and more realistic displays.\u003C\/p\u003E\u003Cp\u003E\u201cWe have now demonstrated that this advanced 2D, materials-based growth and transfer technology can surpass conventional growth and transfer technology in specific domains, such as in virtual and augmented reality displays,\u201d said Ougazzaden, the lead researcher for the Georgia Tech team.\u003C\/p\u003E\u003Cp\u003EThese advanced techniques were developed in metalorganic chemical vapor deposition (MOCVD)\u0026nbsp;reactors, the key tool for LED production at the wafer scale. The 2DLT technique can be replicated on an industrial scale with high throughput yield. The technology has the potential to bring the field of virtual and augmented reality to the next level, enabling the next generation of immersive, realistic micro-LED displays.\u003C\/p\u003E\u003Cp\u003E\u201cThis emerging technology has a tremendous potential for flexible electronics and the heterogenous integration in opto-electronics, which we believe will develop new functionalities and attract industry to develop commercial products from smartphone screens to medical devices,\u201d Ougazzaden said.\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ECitation: Shin, J., Kim, H., Sundaram, S.\u0026nbsp;\u003Cem\u003Eet al.\u003C\/em\u003E\u0026nbsp;Vertical full-colour micro-LEDs via 2D materials-based layer transfer.\u0026nbsp;\u003Cem\u003ENature\u003C\/em\u003E\u0026nbsp;\u003Cstrong\u003E614\u003C\/strong\u003E, 81\u201387 (2023).\u003C\/p\u003E\u003Cp\u003EDOI: \u003Ca href=\u0022https:\/\/doi.org\/10.1038\/s41586-022-05612-1\u0022\u003Ehttps:\/\/doi.org\/10.1038\/s41586-022-05612-1\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech-Europe and MIT researchers are using emerging technology to demonstrate a process that will enable more immersive and realistic virtual and augmented reality displays with the world\u2019s smallest and thinnest micro-LEDs.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech-Europe and MIT researchers are using emerging technology to demonstrate a process that will enable more immersive and realistic virtual and augmented reality displays with the world\u2019s smallest and thinnest micro-LEDs."}],"uid":"36123","created_gmt":"2023-02-09 16:54:01","changed_gmt":"2024-08-28 18:00:56","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-09T00:00:00-05:00","iso_date":"2023-02-09T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665659":{"id":"665659","type":"image","title":"LED illustration Lee","body":null,"created":"1675961398","gmt_created":"2023-02-09 16:49:58","changed":"1675961398","gmt_changed":"2023-02-09 16:49:58","alt":"Stacked LEDs with red, green, and blue lights","file":{"fid":"251744","name":"MIT-cover picture_350dpi.jpg","image_path":"\/sites\/default\/files\/images\/MIT-cover%20picture_350dpi.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MIT-cover%20picture_350dpi.jpg","mime":"image\/jpeg","size":297301,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MIT-cover%20picture_350dpi.jpg?itok=ItmQSnbi"}}},"media_ids":["665659"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:andrea.gappell@europe.gatech.edu\u0022\u003EAndrea Gappell\u003C\/a\u003E, Communications Program Manager for GT-Europe\u003C\/p\u003E","format":"limited_html"}],"email":["andrea.gappell@europe.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667441":{"#nid":"667441","#data":{"type":"news","title":"In Memoriam: Oliver Brand","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/oliver-brand\u0022\u003EOliver Brand\u003C\/a\u003E, the executive director of the Georgia Tech Institute for Electronics and Nanotechnology (IEN), passed away on April 13, 2023. He was a valued researcher, leader, colleague, and friend.\u003C\/p\u003E\u003Cp\u003EDescribed by friends and colleagues as a true gentleman scholar, Brand made a lasting impact on those he met.\u003C\/p\u003E\u003Cp\u003E\u201cOliver was a gentle soul. He led IEN with empathy and advocated vigorously for his team,\u201d said Chaouki Abdallah, executive vice president for research at Georgia Tech. \u201cWhen asked to participate in large research initiatives, he was inclusive and effective. He knew when to lead, and when to support. Our recent successes in capturing large semiconductor funding are largely due to Oliver\u2019s expertise and his leadership. I will miss him.\u201d\u003C\/p\u003E\u003Cp\u003E\u201cOliver was beloved by staff, students, and faculty alike at Georgia Tech and around the world. He was a delightful person who made every occasion brighter with his kindness, dedication, passion, and intellect,\u201d added Julia Kubanek, vice president of interdisciplinary research at Georgia Tech. \u201cHis research contributions have been far-reaching, exemplifying true transdisciplinarity. He advocated tirelessly for the career interests and needs of researchers, especially his students as well as the research faculty and staff of IEN. He made IEN a true family and we will miss him enormously.\u201d\u003C\/p\u003E\u003Cp\u003EBrand spent more than 20 years as a member of the Georgia Tech faculty and officially began his role as executive director of IEN in 2014. In addition to leading IEN, he was a professor in the School of Electrical and Computer Engineering (ECE), the director of the Coordinating Office for the NSF-funded National Nanotechnology Coordinated Infrastructure (NNCI) as well director of the Southeastern Nanotechnology Infrastructure Corridor, one of the 16 NNCI sites.\u003C\/p\u003E\u003Cp\u003E\u201cOliver\u0027s impact at Georgia Tech and ECE was exceptional, as very few individuals in any academic setting can match the magnitude of his influence,\u201d said Arijit Raychowdhury, the Steve W. Chaddick School Chair of ECE. \u201cWhile he was undoubtedly a distinguished figure in the research community, Oliver was equally renowned at ECE as a mentor and educator. He had a unique ability to instill his enthusiasm for learning and exploration in you, motivating you to strive for excellence not just professionally, but more importantly as a friend and human being.\u201d\u003C\/p\u003E\u003Cp\u003EBrand was passionate about supporting and connecting those doing basic and applied research in the areas of electronics and nanotechnology, and under his direction, IEN grew to include more than 200 faculty members at Georgia Tech from multiple colleges and departments.\u003C\/p\u003E\u003Cp\u003E\u0022During his tenure as executive director of IEN, Oliver skillfully guided the significant expansion of Georgia Tech\u0027s world-class research programs, core facilities, and educational activities in electronics and nanotechnology,\u201d said Michael Filler, associate director for research programs in IEN. \u201cHe was instrumental in securing the coordinating office for the NSF-supported National Nanotechnology Coordinated Infrastructure. Most importantly, Oliver was cherished by the IEN community for his unassuming yet effective approach to team building and his unwavering commitment to supporting others.\u0022\u003C\/p\u003E\u003Cp\u003EBrand was a leading researcher in the area of Micro Electro Mechanical Systems (MEMS) and, in particular, the development of micro-scale physical, chemical, and biological sensors. He used his expertise in this area to help create the NIH-funded Atlanta Center for Microsystems Engineered Point-of-Care Technologies (ACME POCT), a center focused on the development and translation of microsystems-engineered technologies including microchip-enabled devices, MEMs-based sensors, microfluidics, and smartphone-based systems. ACME POCT was instrumental in developing accurate Covid-19 tests as part of the NIH\u2019s Rapid Acceleration of Diagnostics initiative, which was critical in slowing the spread of the virus.\u003C\/p\u003E\u003Cp\u003E\u201cOliver was a true pioneer in the field of microsystems engineering and nanotechnology. In more recent years, his interest expanded to the development of sensors for medical applications, and I had the good fortune of partnering with him on multiple collaborations,\u201d said Wilbur Lam, a professor in the Coulter Department of Biomedical Engineering and Brand\u2019s co-director of ACME POCT. \u201cDuring the last several years, thanks in large part to Oliver\u2019s leadership, our Center served as the national test validation center to verify the performance of Covid-19 diagnostics for the NIH and FDA, and Oliver and our team helped the entire country in \u2018testing the tests\u2019 to combat the global pandemic.\u201d\u003C\/p\u003E\u003Cp\u003EIn a 2022 \u003Ca href=\u0022https:\/\/www.nytimes.com\/2022\/03\/15\/health\/covid-testing-variants-emory.html?smid=tw-nytimes\u0026amp;smtyp=cur\u0022\u003Earticle published by the \u003Cem\u003ENew York Times\u003C\/em\u003E\u003C\/a\u003E, Bruce Tromberg, director of the NIH\u2019s National Institute of Biomedical Engineering, called Brand and the rest of the team \u201cabsolutely heroic\u201d for their contributions to the Covid-19 pandemic. The team also received the \u003Ca href=\u0022https:\/\/news.gatech.edu\/news\/2022\/05\/11\/tech-celebrates-outstanding-faculty-staff-members\u0022\u003EOutstanding Achievement in Research Program Development Award\u003C\/a\u003E at the annual Georgia Tech Faculty and Staff Honors Luncheon in the spring of 2022 for their work in this area.\u003C\/p\u003E\u003Cp\u003EThroughout his career, Brand co-authored more than 120 publications in scientific journals and conference proceedings. He received the 2011 ECE Distinguished Mentor Award and the 2012 ECE Richard M. Bass\/Eta Kappa Nu Outstanding Teacher Award, which is determined by the vote of the ECE senior class. He also served as general co-chair of the 2008 IEEE International Conference on Micro Electro Mechanical Systems, co-editor of the Wiley-VCH book series Advanced Micro and Nanosystems, was a member of the editorial board of Sensors and Materials, a co-recipient of the 2005 IEEE Donald G. Fink Prize Paper Award, and a senior member of IEEE.\u003C\/p\u003E\u003Cp\u003EHe is survived by his beloved wife, Claudia, and his children Marina and Tim. He will be deeply missed by all who had the pleasure of knowing him.\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EBrand, the executive director of the Georgia Tech Institute for Electronics and Nanotechnology, passed away on April 13, 2023. He was a valued researcher, leader, colleague, and friend.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Brand, the executive director of the Georgia Tech Institute for Electronics and Nanotechnology, passed away on April 13, 2023. He was a valued researcher, leader, colleague, and friend."}],"uid":"34760","created_gmt":"2023-04-20 11:22:02","changed_gmt":"2024-08-28 17:59:42","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-04-20T00:00:00-04:00","iso_date":"2023-04-20T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670592":{"id":"670592","type":"image","title":"Oliver Brand","body":"\u003Cp\u003EOliver Brand\u003C\/p\u003E\r\n","created":"1681989593","gmt_created":"2023-04-20 11:19:53","changed":"1681989700","gmt_changed":"2023-04-20 11:21:40","alt":"Oliver Brand","file":{"fid":"253478","name":"oliver_brand.jpg","image_path":"\/sites\/default\/files\/2023\/04\/20\/oliver_brand.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/04\/20\/oliver_brand.jpg","mime":"image\/jpeg","size":47506,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/04\/20\/oliver_brand.jpg?itok=2IUOjmfZ"}}},"media_ids":["670592"],"related_links":[{"url":"https:\/\/research.gatech.edu\/faces-research-meet-oliver-brand","title":"Faces of Research: Meet Oliver Brand"},{"url":"https:\/\/research.gatech.edu\/researchers-test-tests-help-combat-spread-covid-19","title":"Researchers Test the Tests to Help Combat Covid-19"},{"url":"https:\/\/research.gatech.edu\/microelectronics-momentum-drives-nations-semiconductor-resurgence-0","title":"Microelectronics Momentum Drives the Nation\u2019s Semiconductor Resurgence"}],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003Cbr\u003EResearch Communications\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667717":{"#nid":"667717","#data":{"type":"news","title":"Multi-Institutional Team Wins $1 Million NSF Engines Development Award","body":[{"value":"\u003Cp\u003EA team of researchers from Georgia Tech, Emory University, Morehouse School of Medicine, University of Georgia, the Center for Global Health Innovation, and the Technical College System of Georgia has been awarded $1 million over the course of two years from the U.S. National Science Foundation\u0027s Regional Innovation Engines, or NSF Engines, program. They are among the more than 40 unique teams to receive one of the first-ever NSF Engines Development Awards, which aim to help partners collaborate to create economic, societal, and technological opportunities for their regions. \u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe team, \u201cAdvancing Health Equity and\u202fDiagnostic Technologies (GA)\u202fDevelopment,\u201d will use the award to support key\u202finstitutional, corporate, government,\u202feducation, and community partners to\u202fcreate an innovative ecosystem that will\u202finspire,\u202fdevelop, and translate affordable\u202fand widely available point-of-care (POC)\u202fmedical technologies to advance health\u202fequity throughout the southeast.\u003C\/p\u003E\u003Cp\u003E\u201cThe Southeastern U.S. has the lowest life expectancy in the nation, and there are significant health disparities along economic, educational, racial, and geographic divisions,\u201d said Wilbur Lam, Georgia Tech professor, principal investigator, and innovation lead. \u201cThe team will work to build an ecosystem of partners to drive use-inspired research and technology translation in the area of POC diagnostics and wearables with strong community engagement to help address these areas and advance health equity.\u201d\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe NSF Engines program is a transformational investment for the nation, ensuring the U.S. remains in the vanguard of competitiveness for decades to come.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u0022These NSF Engines Development Awards lay the foundation for emerging hubs of innovation and potential future NSF Engines,\u0022 said NSF Director Sethuraman Panchanathan. \u0022These awardees are part of the fabric of NSF\u0027s vision to create opportunities everywhere and enable innovation anywhere. They will build robust regional partnerships rooted in scientific and technological innovation in every part of our nation. Through these planning awards, NSF is seeding the future for in-place innovation in communities and to grow their regional economies through research and partnerships. This will unleash ideas, talent, pathways and resources to create vibrant innovation ecosystems all across our nation.\u0022\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ELed by Lam, the team aims to build an ecosystem to drive use-inspired research and technology\u202ftranslation for health equity and leverage relationships with\u202funderserved Georgia communities to\u202finspire a technology roadmap and\u202fadopt new technologies.\u200b An annual event and comprehensive roadmap will drive sustainable technology\u202ftranslation, workforce development, and systemic education.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe awardees span a broad range of states and regions, reaching geographic areas that have not fully benefited from the technology boom of the past decades. These NSF Engines Development Awards will help organizations create connections and develop their local innovation ecosystems within two years to prepare strong proposals for becoming future NSF Engines, which will each have the opportunity to receive up to $160 million.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ELaunched by NSF\u0027s new Directorate for Technology, Innovation and Partnerships and authorized by the \u0022CHIPS and Science Act of 2022,\u0022 the NSF Engines program uniquely harnesses the nation\u0027s science and technology research and development enterprise and regional-level resources. NSF Engines aspire to catalyze robust partnerships to positively impact regional economies, accelerate technology development, address societal challenges, advance national competitiveness and create local, high-wage jobs.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EView a \u003Ca href=\u0022https:\/\/new.nsf.gov\/funding\/initiatives\/regional-innovation-engines\/portfolio\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Emap of the NSF Engines Development Awards\u003C\/a\u003E. More information can be found on the \u003Ca href=\u0022https:\/\/beta.nsf.gov\/funding\/initiatives\/regional-innovation-engines\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ENSF Engines program website\u003C\/a\u003E.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ENSF MEDIA REQUESTS: \u003Ca href=\u0022mailto:media@nsf.gov\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Emedia@nsf.gov\u003C\/a\u003E\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EGEORGIA TECH MEDIA REQUESTS: \u003Ca href=\u0022mailto:georgia.parmelee@gatech.edu\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Egeorgia.parmelee@gatech.edu\u003C\/a\u003E\u0026nbsp;\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EResearch team to improve healthcare for a demographically and geographically diverse state and region\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Research team to improve healthcare for a demographically and geographically diverse state and region"}],"uid":"34760","created_gmt":"2023-05-11 14:53:47","changed_gmt":"2024-08-28 17:59:07","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-11T00:00:00-04:00","iso_date":"2023-05-11T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670785":{"id":"670785","type":"image","title":"NSF Engines Type 1 Development Award","body":null,"created":"1683816032","gmt_created":"2023-05-11 14:40:32","changed":"1683816803","gmt_changed":"2023-05-11 14:53:23","alt":"NSF Engines Development Award Graphic","file":{"fid":"253713","name":"NSF_Engines_Awardee_Graphic_Social_Media.jpg","image_path":"\/sites\/default\/files\/2023\/05\/11\/NSF_Engines_Awardee_Graphic_Social_Media.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/11\/NSF_Engines_Awardee_Graphic_Social_Media.jpg","mime":"image\/jpeg","size":1148264,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/11\/NSF_Engines_Awardee_Graphic_Social_Media.jpg?itok=T5WxfJVU"}}},"media_ids":["670785"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["Georgia.parmelee@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667802":{"#nid":"667802","#data":{"type":"news","title":"IEN Helps Teachers Bring Nanotechnology into the Classroom","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) Office of Education and Outreach participated in the 2023 \u003Ca href=\u0022https:\/\/www.nsta.org\/atlanta23\/sessions-workshops\u0022\u003ENational Science Teaching Association\u003C\/a\u003E (NSTA) conference, held in Atlanta on March 23-25, 2023. The NSTA is a community of science educators and professionals committed to best practices in teaching science and STEM and its impact on student learning.\u003C\/p\u003E\u003Cp\u003EDuring the conference, the IEN team, along with the National Nanotechnology Coordinating Office (NNCO) from Washington, D.C., shared the many opportunities available to educators to learn about and teach nanotechnology to their students. IEN also provided an optional tour of its micro- and nanofabrication cleanroom and its Materials Characterization Facility for conference attendees. During the tour attendees got a firsthand view of the work that takes place, the capabilities of the facility, and notable research accomplishments.\u003C\/p\u003E\u003Cp\u003E\u201cPartnering with organizations like the NSTA gives us an opportunity to teach educators how they can incorporate nanotechnology in their classrooms,\u201d said Mikkel Thomas, IEN\u2019s associate director for education and outreach. \u201cSince the conference was held in Atlanta, we were able to not only share the many programs we have with them but also showcase our facilities.\u201d\u003C\/p\u003E\u003Cp\u003EAs part of its mission to prepare the workforce of the future, IEN offers opportunities for educators to learn about and teach nanotechnology. This includes the \u003Ca href=\u0022https:\/\/senic.gatech.edu\/research-experience-for-teachers\/\u0022\u003EResearch Experiences for Teachers\u003C\/a\u003E (RET) program for high school teachers and technical college faculty a paid opportunity to experience the excitement of nanotechnology research and share this experience in their classrooms. In addition, the \u003Ca href=\u0022https:\/\/nnci.net\/opportunities-educators\u0022\u003ESummer Nanoscience Institute for Middle School Teachers\u003C\/a\u003E (NanoSIMST) is a five-day workshop in which teachers will learn about nanoscience, develop lesson plans, and receive hands-on activities that bring nanoscience into the classroom.\u003C\/p\u003E\u003Cp\u003EIn addition, high school teachers that participated in IEN\u2019S Summer 2022 RET program shared their experiences with attendees by presenting a talk at the conference. The RET program was funded by the National Science Foundation and is part of a larger program within the National Nanotechnology Coordinated Infrastructure (NNCI).\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe Institute for Electronics and Nanotechnology (IEN) Office of Education and Outreach participated in the 2023 \u003Ca href=\u0022https:\/\/www.nsta.org\/atlanta23\/sessions-workshops\u0022\u003ENational Science Teaching Association\u003C\/a\u003E (NSTA) conference, held in Atlanta on March 23-25, 2023.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Institute for Electronics and Nanotechnology (IEN) Office of Education and Outreach participated in the 2023 National Science Teaching Association (NSTA) conference, held in Atlanta on March 23-25, 2023. "}],"uid":"34760","created_gmt":"2023-05-17 19:53:02","changed_gmt":"2024-08-28 17:58:49","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-17T00:00:00-04:00","iso_date":"2023-05-17T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670830":{"id":"670830","type":"image","title":"Marcus Nanotechnology Building","body":null,"created":"1684353022","gmt_created":"2023-05-17 19:50:22","changed":"1684353077","gmt_changed":"2023-05-17 19:51:17","alt":"Marcus Nanotechnology Building","file":{"fid":"253766","name":"14C10042-P1-117.jpg","image_path":"\/sites\/default\/files\/2023\/05\/17\/14C10042-P1-117.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/17\/14C10042-P1-117.jpg","mime":"image\/jpeg","size":2902337,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/17\/14C10042-P1-117.jpg?itok=Albu8ej-"}}},"media_ids":["670830"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003Cbr\u003EResearch Communications\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667801":{"#nid":"667801","#data":{"type":"news","title":"Georgia Tech Chips Day Explores the Latest Developments in Microelectronics and Semiconductors","body":[{"value":"\u003Cp\u003EMore than 150 academic, government, and industry experts gathered on Tuesday, May 2, in the Marcus Nanotechnology Building for Georgia Tech Chips Day. The event was designed to bring together experts in microelectronics to learn from each other, network, and discuss this rapidly changing field.\u003C\/p\u003E\u003Cp\u003EHosted by the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology\u003C\/a\u003E (IEN), Chips Day began with a recorded statement from U.S. Senator Jon Ossoff emphasizing the importance of microelectronics and semiconductor research and commending Georgia Tech for hosting the event.\u003C\/p\u003E\u003Cp\u003EThe agenda included speakers with a wide variety of expertise, including Gregg Bartlett, chief technology officer of GlobalFoundries, Fayrouz Saad, director of public engagement for the CHIPS Program Office, and Victor Zhirnov, chief scientist of Semiconductor Research Corporation, among others. Multiple Georgia Tech faculty members also gave talks, including \u003Ca href=\u0022https:\/\/research.gatech.edu\/chaouki-t-abdallah\u0022\u003EChaouki Abdallah\u003C\/a\u003E, executive vice president of research, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E, professor and chair of the School of Electrical and Computer Engineering.\u003C\/p\u003E\u003Cp\u003EDuring his keynote address, Bartlett discussed market trends in the semiconductor industry and the market focus and roadmap for GlobalFoundries, one of the world\u2019s leading semiconductor manufacturers. He explained that GlobalFoundries\u2019 core focuses are on innovation and differentiated platforms, including silicon photonics, FinFET, and feature-rich CMOS. Bartlett also noted that, due to the dynamic nature of the semiconductor market, success requires collaboration across research consortia and academic institutions, including events like Chips Day and the \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-and-globalfoundries-collaborate-joint-semiconductor-research-and-workforce-development\u0022\u003Erecent partnership on semiconductor research and workforce development\u003C\/a\u003E signed with Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u0022I am incredibly proud of the work that the IEN faculty, staff, students, and our industrial and governmental partners did to make Chips Day a success,\u201d said \u003Ca href=\u0022https:\/\/research.gatech.edu\/michael-filler\u0022\u003EMichael Filler\u003C\/a\u003E, IEN\u2019s associate director of research. \u201cThis event brought together some of the brightest minds in the semiconductor industry to share their ideas and collaborate on solutions to some of the most pressing challenges facing our field.\u201d\u003C\/p\u003E\u003Cp\u003EChips Day also included a ceremony honoring John Hooper (M.S. EE 1955, Ph.D. EE 1961), Georgia Tech Regents\u2019 Professor emeritus and the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/03\/john-hooper-innovator-and-catalyst\u0022\u003Efounding director of the Microelectronics Research Center\u003C\/a\u003E (MiRC), which is now IEN. It included an overview of Hooper\u2019s career and accomplishments given by David Hertling, professor emeritus in the School of Electrical and Computer Engineering. Hooper\u2019s children, Jeff and Christie, were also in attendance.\u003C\/p\u003E\u003Cp\u003EHertling explained how Hooper worked with President Joseph Pettit in the 1980s to establish a strong microelectronics research presence at Georgia Tech. This included designing the MiRC, which was uniquely constructed as a resource center to enable faculty from all disciplines to engage in cutting-edge research. This model allowed Tech to attract top microelectronics talent and become a leader in the space. Thanks to Hooper\u2019s efforts, among others, IEN is now home to one of the largest academic cleanrooms in the country and supports the research of more than 1,000 users per year from Georgia Tech, other academic institutions, industry, and government labs.\u003C\/p\u003E\u003Cp\u003EIn addition to the talks, Chips Day included industry panels on economic and workforce development featuring thought leaders in these respective areas. Georgia Tech students participated in a poster session to give attendees a glimpse into their research and vendors showcased the latest products and solutions driving advancements in semiconductors and microelectronics.\u003C\/p\u003E\u003Cp\u003E\u201cGeorgia Tech is committed to advancing semiconductor research and development,\u201d concluded Filler. \u201cI am confident that the work that was done at Chips Day will help to ensure that the United States remains a leader in semiconductor innovation for years to come.\u0022\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe event was designed to bring together experts in microelectronics to learn from each other, network, and discuss this rapidly changing field.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The event was designed to bring together experts in microelectronics to learn from each other, network, and discuss this rapidly changing field."}],"uid":"34760","created_gmt":"2023-05-17 19:37:30","changed_gmt":"2024-08-28 17:58:34","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-17T00:00:00-04:00","iso_date":"2023-05-17T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"related_links":[{"url":"https:\/\/research.gatech.edu\/georgia-tech-addressing-nations-call-semiconductors","title":"Georgia Tech Addressing the Nation\u2019s Call for Semiconductors"}],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003Cbr\u003EResearch Communications\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667968":{"#nid":"667968","#data":{"type":"news","title":"Eta Kappa Nu Awards Outstanding Teacher Awards to Naeemi and Krishna","body":[{"value":"\u003Cp\u003EOn April 28, 2023, \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/azad-j-naeemi\u0022\u003EAzad Naeemi\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/tushar-krishna\u0022\u003ETushar Krishna\u003C\/a\u003E were celebrated as the recipients of this year\u0027s Eta Kappa Nu (IEEE-HKN) Outstanding Teacher Awards.\u003C\/p\u003E\u003Cp\u003EHKN award recipients are determined by a majority vote of the graduating class of the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) undergraduate program. They recognize the central and crucial role of professors in training and motivating future electrical, computer and allied field student engineers.\u003C\/p\u003E\u003Cp\u003EProfessor Naeemi received this year\u2019s W. Marshall Leach\/Eta Kappa Nu Outstanding Senior Teacher Award. Naeemi\u2019s research crosses the\u0026nbsp;boundaries\u0026nbsp;of materials, devices, circuits, and systems investigating integrated circuits based on conventional and emerging\u0026nbsp;nanoelectronic\u0026nbsp;and spintronic devices and interconnects.\u003C\/p\u003E\u003Cp\u003EHe holds the distinction of being the inaugural recipient of the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/07\/naeemi-receives-inaugural-2022-ieee-solid-state-circuits-society-james-d-meindl\u0022\u003EIEEE Solid-State Circuits Society (SSCS) James D. Meindl Innovators Award\u003C\/a\u003E. He has also received accolades such as the NSF CAREER Award, SRC Inventor Recognition Award, and multiple best paper awards at international conferences.\u003C\/p\u003E\u003Cp\u003EIn recognition of his innovative use of educational technology, Professor Naeemi was honored by the Institute with the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/04\/ece-members-awarded-innovative-teaching-and-outstanding-leadership\u0022\u003EClass of 1934 Outstanding Innovative Use of Education Technology Award\u003C\/a\u003E this year. His educational tools have greatly enhanced the learning experience of students studying quantum theory and semiconductor physics\/devices worldwide.\u003C\/p\u003E\u003Cp\u003EAssociate Professor Krishna was awarded the Richard M. Bass\/Eta Kappa Nu Outstanding Junior Teacher Award. His research encompasses computer architecture, interconnection networks, networks-on-chip (NoC), and deep learning accelerators, with a particular emphasis on optimizing data movement in modern computing systems.\u003C\/p\u003E\u003Cp\u003EKrishna was inducted into the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/07\/krishna-inducted-hpca-hall-fame\u0022\u003EHigh-Performance Computer Architecture (HPCA) Hall of Fame\u003C\/a\u003E in 2022, recognizing his significant contributions to the field. He has also been honored with the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/03\/five-ece-faculty-members-honored-ctl-award\u0022\u003EClass of 1940 Course Survey Teaching Effectiveness Award\u003C\/a\u003E from Georgia Tech (2018) and the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/11\/ece-faculty-staff-and-students-receive-honors-roger-p-webb-awards-program-0\u0022\u003ERoger P. Webb Outstanding Junior Faculty Award\u003C\/a\u003E from the ECE (2021).\u003C\/p\u003E\u003Cp\u003ENaeemi and Krishna\u2019s enduring impact on the School of ECE undergraduate program and the wider engineering community will forever be recognized with their names etched on the Eta Kappa Nu Outstanding Teacher Awards display in the Van Leer Building.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor Naeemi received this year\u2019s W. Marshall Leach\/Eta Kappa Nu Outstanding Teacher Award and\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAssociate Professor Krishna was awarded the Richard M. Bass\/Eta Kappa Nu Outstanding Junior Teacher Award.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"ECE Professors Azad Naeemi and Tushar Krishna have been recognized by graduating seniors with Eta Kappa Nu outstanding teaching honors for 2023."}],"uid":"36172","created_gmt":"2023-06-02 13:24:24","changed_gmt":"2024-08-28 17:58:22","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-02T00:00:00-04:00","iso_date":"2023-06-02T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670913":{"id":"670913","type":"image","title":"Professors Azad Naeemi (left) and Tushar Krishna (right).","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessors Azad Naeemi (left) and Tushar Krishna (right).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1685711787","gmt_created":"2023-06-02 13:16:27","changed":"1685711897","gmt_changed":"2023-06-02 13:18:17","alt":"Photo of Professors Azad Naeemi (left) and Tushar Krishna (right).","file":{"fid":"253879","name":"Azad Naeemi and Tushar Krisna.jpg","image_path":"\/sites\/default\/files\/2023\/06\/02\/Azad%20Naeemi%20and%20Tushar%20Krisna.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/02\/Azad%20Naeemi%20and%20Tushar%20Krisna.jpg","mime":"image\/jpeg","size":4896941,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/02\/Azad%20Naeemi%20and%20Tushar%20Krisna.jpg?itok=Oez0EcC2"}}},"media_ids":["670913"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"42901","name":"Community"},{"id":"145","name":"Engineering"},{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"}],"keywords":[{"id":"5518","name":"Azad Naeemi"},{"id":"173453","name":"Tushar Krishna"},{"id":"5365","name":"Eta Kappa Nu"},{"id":"192712","name":"IEEE-HKN"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192713","name":"W. Marshall Leach\/Eta Kappa Nu Outstanding Teacher Award"},{"id":"192714","name":"Richard M. Bass\/Eta Kappa Nu Outstanding Junior Teacher Award"},{"id":"192715","name":"Van Leer Building"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668030":{"#nid":"668030","#data":{"type":"news","title":"Filler to Serve as Interim Executive Director of the Institute for Electronics and Nanotechnology","body":[{"value":"\u003Cp\u003EEffective immediately, \u003Ca href=\u0022https:\/\/research.gatech.edu\/michael-filler\u0022\u003EMichael Filler\u003C\/a\u003E will serve as interim executive director of the Georgia Tech Institute for Electronics and Nanotechnology (IEN). Filler is a professor and the Traylor Faculty Fellow in the School of Chemical and Biomolecular Engineering, and he has served as IEN\u2019s associate director for research programs since January 2022.\u003C\/p\u003E\u003Cp\u003E\u201cAs a leader in the field of scalable electronics manufacturing and having served as associate director of IEN, Professor Filler is in an excellent position to take on this new role,\u201d said Julia Kubanek, professor and vice president for interdisciplinary research at Georgia Tech. \u201cHe will lead IEN in continuing to support Georgia Tech faculty pursuing microelectronics and nanotechnology-sponsored research programs and collaborations. This is especially important right now given current CHIPS Act-related funding and workforce development opportunities.\u201d\u003C\/p\u003E\u003Cp\u003EAs associate director of research programs, Filler nurtured research opportunities aligned with Georgia Tech\u2019s Strategic Plan and the Research Next missions and goals; catalyzed new interdisciplinary research communities in the area of electronics and nanotechnology; managed the portfolio of interdisciplinary research centers and programs associated with IEN; and developed strategies for industry engagement with IEN and its centers and programs.\u003C\/p\u003E\u003Cp\u003EFiller succeeds Oliver Brand who tragically passed away in April 2023 after serving as IEN\u2019s executive director for more than a decade. During Brand\u2019s tenure as executive director, IEN expanded its core facilities and research programs and grew to include more than 200 faculty members at Georgia Tech from multiple colleges and schools. Brand was also instrumental in securing the coordinating office for the NSF-supported National Nanotechnology Coordinated Infrastructure at Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u201cI\u2019m humbled and honored to take the helm of IEN at this critical time,\u201d said Filler. \u201cI step into this role with profound respect for the talent, dedication, and excellence of the IEN staff, faculty, and students. I am not only committed to furthering Oliver\u2019s legacy but also capitalizing on the opportunities brought by the CHIPS Act to support the campus community and shape the future of electronics and nanotechnology.\u0022\u003C\/p\u003E\u003Cp\u003EFiller\u2019s research focuses on the synthesis, understanding, and manufacturing of semiconductor nanowire materials and devices to enable \u201chyper-scalable\u201d electronic systems. Prior to joining the IEN leadership team, Filler co-directed the Community for Research on Active Surfaces and Interfaces (CRASI) as well as the Computational Skins for Multifunctional Objects and Systems (COSMOS) research programs.\u003C\/p\u003E\u003Cp\u003EFiller earned his undergraduate and graduate degrees from Cornell University and Stanford University, respectively, prior to completing postdoctoral studies at the California Institute of Technology. He has been recognized for his research and teaching with the National Science Foundation CAREER Award, Georgia Tech Sigma Xi Young Faculty Award, CETL\/BP Junior Faculty Teaching Excellence Award, and as a Camille and Henry Dreyfus Foundation Environmental Chemistry Mentor.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFiller is a professor and the Traylor Faculty Fellow in the School of Chemical and Biomolecular Engineering, and he has served as IEN\u2019s associate director for research programs since January 2022.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Filler is a professor and the Traylor Faculty Fellow in the School of Chemical and Biomolecular Engineering, and he has served as IEN\u2019s associate director for research programs since January 2022."}],"uid":"34760","created_gmt":"2023-06-08 14:46:26","changed_gmt":"2024-08-28 17:58:01","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-08T00:00:00-04:00","iso_date":"2023-06-08T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670949":{"id":"670949","type":"image","title":"Professor Michael Filler","body":null,"created":"1686238929","gmt_created":"2023-06-08 15:42:09","changed":"1686238971","gmt_changed":"2023-06-08 15:42:51","alt":"Professor Michael Filler","file":{"fid":"253922","name":"Artboard 1.png","image_path":"\/sites\/default\/files\/2023\/06\/08\/Artboard%201.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/08\/Artboard%201.png","mime":"image\/png","size":480494,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/08\/Artboard%201.png?itok=kbcPCtR4"}}},"media_ids":["670949"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668115":{"#nid":"668115","#data":{"type":"news","title":"Spring 2023 IEN Seed Grant Winners Announced","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) at Georgia Tech has announced the Spring 2023 Core Facility Seed Grant winners. The primary purpose of this program is to give first- and second-year graduate students in diverse disciplines working on original and unfunded research in micro- and nanoscale projects the opportunity to access the most advanced academic cleanroom space in the Southeast. In addition to accessing the labs\u0027 high-level fabrication, lithography, and characterization tools, the awardees will have the opportunity to gain proficiency in cleanroom and tool methodology and access the consultation services provided by research staff members in IEN. Seed Grant awardees are also provided travel support to present their research at a scientific conference.\u003C\/p\u003E\u003Cp\u003EIn addition to student research skill development, this biannual grant program gives faculty with novel research topics the ability to develop preliminary data to pursue follow-up funding sources. The Core Facility Seed Grant program is supported by the Southeastern Nanotechnology Infrastructure Corridor (SENIC), a member of the National Science Foundation\u2019s National Nanotechnology Coordinated Infrastructure (NNCI).\u003C\/p\u003E\u003Cp\u003ESince the start of the grant program in 2014, 86 projects from ten different schools in Georgia Tech\u2019s Colleges of Engineering and Science, as well as the Georgia Tech Research Institute and three other universities, have been seeded.\u003C\/p\u003E\u003Cp\u003EThe four winning projects in this round were awarded IEN cleanroom and lab access time to be used over the next year. In keeping with the interdisciplinary mission of IEN, the projects that will be enabled by the grants include research in biomedical devices, nuclear engineering, phase change materials, and environmental engineering.\u003C\/p\u003E\u003Cp\u003EThe Spring 2023 IEN Core Facility Seed Grant Award winners are:\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EDirect Lithography Micro-Optic 3D Lightfield Endoscope Module\u003C\/strong\u003E\u003Cbr\u003EPI: Shu Jia\u003Cbr\u003EStudent: Corey Zheng\u003Cbr\u003EWallace H. Coulter Department of Biomedical Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EOrganic Copolymer Semiconductor for Direct Detection of Ionizing Radiation\u003C\/strong\u003E\u003Cbr\u003EPI: Anna Erickson\u003Cbr\u003EStudent: Shae Cole\u003Cbr\u003EGeorge W. Woodruff School of Mechanical Engineering (Nuclear and Radiological Engineering Program)\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EInvestigating Phase Transformations in 2D Materials via in situ TEM Biasing Experiments\u003C\/strong\u003E\u003Cbr\u003EPI: Josh Kacher\u003Cbr\u003EStudent: Alex Butler\u003Cbr\u003ESchool of Materials Science and Engineering\u003C\/p\u003E\u003Cp\u003EDevelopment of Interdigitated Electrodes-Based Antimicrobial Surfaces to Prevent Biofilms\u003Cbr\u003EPI: Xing Xie\u003Cbr\u003EStudent: Feifei Liu\u003Cbr\u003ESchool of Civil and Environmental Engineering\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cem\u003EThe Southeastern Nanotechnology Infrastructure Corridor, a member of the National Nanotechnology Coordinated Infrastructure, is funded by NSF Grant ECCS-2025462.\u003C\/em\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFour Interdisciplinary Projects to Receive IEN Technical Support and Facility Access\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Four Interdisciplinary Projects to Receive IEN Technical Support and Facility Access"}],"uid":"34760","created_gmt":"2023-06-15 15:01:13","changed_gmt":"2024-08-27 17:08:10","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-15T00:00:00-04:00","iso_date":"2023-06-15T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668168":{"#nid":"668168","#data":{"type":"news","title":"NIH BRAIN grant funds Emory-Georgia Tech center for next-generation neurotechnology","body":[{"value":"\u003Cp\u003EEmory University and Georgia Institute of Technology received a $4.8 million grant from the \u003Ca href=\u0022https:\/\/braininitiative.nih.gov\/\u0022\u003ENational Institutes of Health (NIH) BRAIN Initiative\u003C\/a\u003E to establish a center to make and globally distribute next-generation micro-technologies for neuroscience. The funds will be awarded over a five-year period.\u003C\/p\u003E\u003Cp\u003EThe Center for Advanced Motor BioEngineering and Research will make cutting-edge biosensors that were developed jointly by the two universities, disseminate them to neuroscientists across the country and around the world, and provide training and other resources for how to use the biosensors to explore a range of research questions.\u003C\/p\u003E\u003Cp\u003ECo-principal investigators for the project are \u003Ca href=\u0022https:\/\/scholarblogs.emory.edu\/soberlab\/dr-sober\/\u0022\u003ESamuel Sober\u003C\/a\u003E, Emory associate professor of biology, and \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E, Georgia Tech professor of electrical and computer engineering.\u003C\/p\u003E\u003Cp\u003E\u201cOur technology allows you to see data that was invisible before \u2014 the electrical signals that single neurons in the spinal cord send to muscles all over the body during complex movements,\u201d Sober says. \u201cThis information is like the missing link for trying to understand how the brain controls behavior.\u201d\u003C\/p\u003E\u003Cp\u003E\u201cThe potential to develop new microscale technologies \u2014 with advances commonly used in semiconductor chip manufacturing \u2014 to enable scientific and medical discoveries in neuroscience is incredibly motivating,\u201d Bakir adds. \u201cIt\u2019s the inspiration driving this project.\u201d\u003C\/p\u003E\u003Cp\u003EThe NIH Brain Research Through Advancing Neurotechnologies (BRAIN) Initiative is aimed at revolutionizing understanding of the human brain. The five-year grant awarded to Emory and Georgia Tech is part of the BRAIN Initiative\u2019s U24 Program, which supports projects to broadly disseminate validated tools and resources for neuroscience research.\u003C\/p\u003E\u003Ch3\u003EJoining the power of two universities\u003Cbr\u003E\u0026nbsp;\u003C\/h3\u003E\u003Cp\u003ESober and Bakir combined the expertise of their labs to develop their breakthrough technology \u2014 biosensors that precisely record electrical signals from the nervous system to muscles that control movement.\u003C\/p\u003E\u003Cp\u003ESober works at the forefront of describing the computational signals that the brain uses to control muscles. He\u2019s particularly interested in how the brain learns, or relearns, motor skills \u2014 for example, in a recovering stroke patient.\u003C\/p\u003E\u003Cp\u003ECurrently, clinicians use electromyography, or EMG, as a tool to diagnose the health of muscles and the motor neurons that control them. EMG typically involves the use of a tiny wire, or electrode, inserted into a muscle to record the electrical activity in the muscles.\u003C\/p\u003E\u003Cp\u003ESober wanted a much finer resolution of data and more practical methods for his research on how the brain activates and controls muscles in songbirds as they learn to sing. He needed devices tiny enough to implant in the birds\u2019 vocal cords. The devices also needed flexibility and strength to bend with the movement of a muscle without breaking. And each had to contain an array of gold electrodes to gather high-resolution data.\u003C\/p\u003E\u003Cp\u003EEnter Bakir, who works at the frontier of flexible electronics.\u003C\/p\u003E\u003Cp\u003EThe unique collaboration between the two researchers allowed them to forge new scientific territory. \u201cWe leveraged state-of-the art microfabrication tools to solve a problem deeply rooted in the life sciences,\u201d Bakir says.\u003C\/p\u003E\u003Ch3\u003EA tiny device delivers big-picture insights\u003Cbr\u003E\u0026nbsp;\u003C\/h3\u003E\u003Cp\u003EThe researchers\u2019 teams developed flexible electrode arrays that include microscopic 3D contacts for recording muscle activity. Each microarray includes one or more threads, about the width of a human hair. The devices are so tiny that they can be sewn into a muscle like a suture thread or even loaded into a syringe and injected into the muscle, making them minimally invasive. An earlier version of these technologies was developed in the Georgia Tech PhD work of Muneeb Zia, who is currently a Georgia Tech research faculty member.\u003C\/p\u003E\u003Cp\u003EThey dubbed the new devices \u201cMyomatrix arrays,\u201d incorporating the Greek work \u201cmyo\u201d for muscle. The high-tech biosensors allow researchers for the first time to record high-resolution data across large groups of muscles simultaneously while subjects perform complex behaviors.\u003C\/p\u003E\u003Cp\u003ETo help test and refine the devices, the researchers have already given them to more than 100 different labs in the United States, Canada, Europe and Asia where they have been used to explore neuroscience questions in a variety of species \u2014 from the crawling muscles in a caterpillar to the locomotion of a mouse leg and the reaching movements of a monkey\u2019s arm.\u003C\/p\u003E\u003Ch3\u003ESetting the stage for clinical use\u003Cbr\u003E\u0026nbsp;\u003C\/h3\u003E\u003Cp\u003EComparing data from across species will help speed discoveries of the normal functioning of the neuromuscular system. That sets the stage for the Myomatrix arrays to become a valuable tool in clinical settings.\u003C\/p\u003E\u003Cp\u003EThe researchers recently completed initial experiments with the biosensors in healthy humans, marking another major step forward.\u003C\/p\u003E\u003Cp\u003EThe devices may eventually enable doctors to diagnose a neurogenerative disease earlier so that interventions can start sooner. The sensitivity of the Myomatrix arrays could also potentially measure any improvement a patient may experience after taking a drug or other therapy.\u003C\/p\u003E\u003Cp\u003EThe BRAIN Initiative grant will allow the researchers to disseminate the technology to even more labs to do longer-term studies.\u003C\/p\u003E\u003Cp\u003E\u201cA lot of times when new scientific technology gets developed it can be jealously guarded by the inventors for years,\u201d notes Sober. \u201cOne of the big impacts of this technology is that we\u2019ve already been giving it away as much as possible in an open-science way. And that\u2019s helped us in turn to keep improving the technology because we are getting so much feedback.\u201d\u003C\/p\u003E\u003Cp\u003EThe Georgia Tech team will continue to fabricate and package the Myomatrix arrays using advanced microelectronic technologies in special \u201ccleanrooms\u201d where the air is purified to such extreme levels that the number of dust particles in the environment can be counted.\u003C\/p\u003E\u003Ch3\u003E\u003Cbr\u003EA global educational component\u0026nbsp;\u003C\/h3\u003E\u003Cp\u003EThe Emory team will continue to work on assembling and testing the devices, in addition to training users from around the world in the use of technology via Zoom meetings and in-person sessions.\u003C\/p\u003E\u003Cp\u003E\u201cThis project is not just about making and disseminating the devices; it\u2019s also a teaching mission with a big educational component,\u201d Sober says. \u201cWe believe that this technology is going to have a major impact on the field of motor neuroscience.\u201d\u003C\/p\u003E\u003Cp\u003EThe project members will work with the NIH to ensure that the devices are distributed to a diverse range of users, institutions and research areas, consistent with the BRAIN Initiative\u2019s goal to make the latest neuroscience tools more broadly accessible.\u003C\/p\u003E\u003Cp\u003E\u201cWe\u2019ll be serving scientific communities that historically have not had access to such technologies or manufacturing capabilities,\u201d Bakir says. \u201cEmory and Georgia Tech are opening the doors to our facilities and to our expertise so that anyone who works in motor neuroscience can access and leverage these new devices, which require hundreds of millions of dollars to build and equip. This democratization of the technology will help to advance motor neuroscience at a more rapid pace.\u201d\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThis story was originally published by Emory University. Check out their article \u003Ca href=\u0022https:\/\/news.emory.edu\/stories\/2023\/06\/esc_brain_grant_14-06-2023\/story.html#:~:text=Emory%20University%20and%20Georgia%20Institute,over%20a%20five%2Dyear%20period\u0022\u003Ehere\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EPhoto Caption\u003Cbr\u003ECo-principal investigators for the project are (left) Samuel Sober, Emory associate professor of biology, and Muhannad Bakir, Georgia Tech professor of electrical and computer engineering. They combined the expertise of their labs to develop their breakthrough technology.\u003C\/p\u003E\u003Cp\u003E\u2014 Ann Watson, Emory Photo\/Video\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EEmory University and Georgia Institute of Technology received a $4.8 million grant from the National Institutes of Health (NIH) BRAIN Initiative to establish a center to make and globally distribute next-generation micro-technologies for neuroscience. The funds will be awarded over a five-year period.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Emory University and Georgia Tech has received a $4.8 million NIH grant to establish the Center for Advanced Motor BioEngineering and Research. "}],"uid":"36327","created_gmt":"2023-06-21 16:10:50","changed_gmt":"2024-08-27 17:07:57","author":"mlindo7","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-21T00:00:00-04:00","iso_date":"2023-06-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671003":{"id":"671003","type":"image","title":"NIH Brain Grant","body":null,"created":"1687372210","gmt_created":"2023-06-21 18:30:10","changed":"1687372298","gmt_changed":"2023-06-21 18:31:38","alt":"NIH Brain Grant","file":{"fid":"253991","name":"NIH_Brain_Grant.jpg","image_path":"\/sites\/default\/files\/2023\/06\/21\/NIH_Brain_Grant.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/21\/NIH_Brain_Grant.jpg","mime":"image\/jpeg","size":79569,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/21\/NIH_Brain_Grant.jpg?itok=IQzyz-g5"}}},"media_ids":["671003"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"135","name":"Research"}],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ECarol Clark\u003C\/p\u003E","format":"limited_html"}],"email":["carol.clark@emory.edu"],"slides":[],"orientation":[],"userdata":""}},"668477":{"#nid":"668477","#data":{"type":"news","title":"Tentzeris Named Distinguished Lecturer by Electronic Packaging Society","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003EManos M. Tentzeris\u003C\/a\u003E, a professor at the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E, has been appointed as a Distinguished Lecturer by the \u003Ca href=\u0022https:\/\/eps.ieee.org\/\u0022\u003EIEEE Electronic Packaging Society\u003C\/a\u003E (EPS). The recognition is considered one of the highest honors within the society.\u003C\/p\u003E\u003Cp\u003EEPS \u003Ca href=\u0022https:\/\/eps.ieee.org\/education\/distinguished-lecturer-program.html\u0022\u003EDistinguished Lecturers\u003C\/a\u003E are selected from among EPS Fellows, award winners, and society leaders. Selected experts are highly regarded members of the technical community and renowned experts in their respective fields. They are invited to deliver lectures and courses at EPS events, including chapters, conferences, workshops, symposia, and IEEE Student Chapter events.\u003C\/p\u003E\u003Cp\u003ENotably, Tentzeris has previously served as a Distinguished Lecturer for the \u003Ca href=\u0022https:\/\/mtt.org\/\u0022\u003EIEEE Microwave Theory and Technology Society\u003C\/a\u003E (MTT) and the \u003Ca href=\u0022https:\/\/www.ieee-rfid.org\/\u0022\u003EIEEE Council on Radio Frequency Identification\u003C\/a\u003E (CRFID), highlighting his exceptional contributions across multiple societies within IEEE (Institute of Electrical and Electronics Engineers).\u003C\/p\u003E\u003Cp\u003ESince 2016, Tentzeris has held the Ken Byers Professorship in flexible electronics in ECE. He joined the faculty in 1998 and leads the ATHENA Research Group. Tentzeris\u2019 research specializes in 3D Printed RF electronics, antennas and modules, flexible and conformal electronics and phased antenna arrays up to sub-THz, origami and morphing electromagnetics, Highly Integrated\/Multilayer Packaging for RF and Wireless Applications using ceramic and organic flexible materials, \u201cgreen\u201d paper-based RFIDs and sensors, nanostructures for RF, wireless sensors, energy harvesting and wireless power transfer\/wireless power grids, reconfigurable intelligent metasurfaces, heterogeneous integration and SOP-integrated (UWB, multiband, conformal) antennas.\u003C\/p\u003E\u003Cp\u003EAs an EPS Distinguished Lecturer, Tentzeris will deliver lectures on Smart Cities, Smart Agriculture, Smart Manufacturing\/Industry 4.0, and Digital Twin domains.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Distinguished Lecturer\u0026nbsp;recognition is considered one of the highest honors within the society.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"In recognition of his expertise in electronic packaging, Tentzeris will deliver distinguished lectures for IEEE EPS. "}],"uid":"36172","created_gmt":"2023-07-14 14:05:18","changed_gmt":"2024-08-27 17:07:43","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-07-14T00:00:00-04:00","iso_date":"2023-07-14T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671170":{"id":"671170","type":"image","title":"cropped_manostentzeris131018ar308_web.jpg","body":"\u003Cp\u003EManos M. Tentzeris, Ken Byers Professor in Flexible Electronics at the Georgia Tech School of Electrical and Computer Engineering\u003C\/p\u003E\r\n","created":"1689343678","gmt_created":"2023-07-14 14:07:58","changed":"1689343678","gmt_changed":"2023-07-14 14:07:58","alt":"Photo of Professor Manos M. Tentzeris","file":{"fid":"254184","name":"cropped_manostentzeris131018ar308_web.jpg","image_path":"\/sites\/default\/files\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg","mime":"image\/jpeg","size":820288,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg?itok=rSlYjzW7"}}},"media_ids":["671170"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"42901","name":"Community"},{"id":"42911","name":"Education"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"192847","name":"Manos M. Tentzeris"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192848","name":"IEEE Electronic Packaging Society"},{"id":"192849","name":"IEEE Microwave Theory and Technology Society"},{"id":"192850","name":"IEEE Council on Radio Frequency Identification"},{"id":"5728","name":"Distinguished Lecturer"},{"id":"192851","name":"Ken Byers Professorship"},{"id":"12373","name":"flexible electronics"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003Cbr\u003E\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668942":{"#nid":"668942","#data":{"type":"news","title":"Georgia Tech Researchers Win NSF Rules of Life Funding to Address Societal Challenges","body":[{"value":"\u003Cp\u003EThree of 12 projects that received funding from the U.S. National Science Foundation\u2019s\u0026nbsp;\u003Ca href=\u0022https:\/\/new.nsf.gov\/funding\/opportunities\/using-rules-life-address-societal-challenges\u0022\u003EUsing the Rules of Life to Address Societal Challenges\u003C\/a\u003E\u0026nbsp;are led by researchers in Georgia Tech\u2019s School of Chemical and Biomolecular Engineering (ChBE).\u003C\/p\u003E\u003Cp\u003EThe 12 projects received a total of $27 million in investment, supporting the use of knowledge learned from studying the Rules of Life \u2014 the complex interactions within and between a broad array of living systems across biological scales, and time and space \u2014 to tackle pressing societal challenges, including clean water, planet sustainability, carbon capture, biosecurity, and antimicrobial resistance to antibiotics. The Georgia Tech-related projects received a total of $7.7 million.\u003C\/p\u003E\u003Cp\u003E\u0022The enormous opportunity to apply biological principles to solving the biggest problems of today is one we cannot take lightly,\u0022 said Susan Marqusee, NSF assistant director for Biological Sciences. \u0022These projects will use life to improve life, including for many underprivileged communities and groups.\u0022\u003C\/p\u003E\u003Cp\u003EThe Georgia Tech-led projects include:\u003C\/p\u003E\u003Cul\u003E\u003Cli\u003E\u003Cstrong\u003ECo-Producing Knowledge, Biotechnologies and Practices to Enhance Biological Nitrogen Fixation for Sustainable Agriculture.\u0026nbsp;\u003C\/strong\u003E$2.67 million (Georgia Tech and Worcester Polytechnic Institute, award\u0026nbsp;\u003Ca href=\u0022https:\/\/www.nsf.gov\/awardsearch\/showAward?AWD_ID=2319430\u0022\u003E2319430\u003C\/a\u003E)\u003C\/li\u003E\u003C\/ul\u003E\u003Cp\u003EThe project\u2019s principal investigator is\u0026nbsp;\u003Ca href=\u0022https:\/\/chbe.gatech.edu\/directory\/person\/lily-cheung\u0022\u003ELily Cheung\u003C\/a\u003E, assistant professor of ChBE@GT, and the co-principal investigators are Shuichi Takayama, professor of biomedical engineering at Georgia Tech, and William San Mart\u00edn, assistant professor of global environmental science, technology, and governance at Worcester Polytechnic Institute.\u003C\/p\u003E\u003Cp\u003EThe researchers will address food security through low-cost technology based on biological principles to increase nitrogen content in soils and improve crop production on marginal lands.\u003C\/p\u003E\u003Cul\u003E\u003Cli\u003E\u003Cstrong\u003ENext-Generation Biological Security and Bio-Hackathon\u003C\/strong\u003E, $2.81 million (Georgia Tech and Massachusetts Institute of Technology, award\u0026nbsp;\u003Ca href=\u0022https:\/\/www.nsf.gov\/awardsearch\/showAward?AWD_ID=2319231\u0022\u003E2319231\u003C\/a\u003E).\u003C\/li\u003E\u003C\/ul\u003E\u003Cp\u003EThe project\u2019s principal investigator is\u0026nbsp;\u003Ca href=\u0022https:\/\/chbe.gatech.edu\/directory\/person\/corey-wilson\u0022\u003ECorey Wilson\u003C\/a\u003E, professor of ChBE@GT, and the co-principal investigators are Matthew Realff, professor of ChBE@GT, and\u0026nbsp;Christopher Voigt, professor of biological engineering at Massachusetts Institute of Technology.\u003C\/p\u003E\u003Cp\u003EThe researchers will create programmable, biological combination lock methods \u2014 \u0022on and off\u0022 states \u2014 for using synthetic biology safely, containing potentially dangerous organisms and protecting valuable ones.\u003C\/p\u003E\u003Cul\u003E\u003Cli\u003E\u003Cstrong\u003ESynthetic Protocell Communities to Address Critical Sensing Challenges,\u0026nbsp;\u003C\/strong\u003E$2.23 million\u0026nbsp;(Georgia Tech, award\u0026nbsp;\u003Ca href=\u0022https:\/\/www.nsf.gov\/awardsearch\/showAward?AWD_ID=2319391\u0022\u003E2319391\u003C\/a\u003E).\u003C\/li\u003E\u003C\/ul\u003E\u003Cp\u003EThe project\u2019s principal investigator is\u0026nbsp;\u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/directory\/person\/mark-styczynski\u0022\u003EMark Styczynski\u003C\/a\u003E, professor of ChBE@GT, and the co-principal investigators are Shuichi Takayama, professor of biomedical engineering at Georgia Tech; Brian Hammer, associate professor of biological sciences at Georgia Tech, and Neha Garg, assistant professor of chemistry and biochemistry at Georgia Tech.\u003C\/p\u003E\u003Cp\u003EThe researchers will create synthetic \u0022protocells\u0022 enabling the development of a highly sensitive, field deployable analysis system that could be used for many applications such as measuring micronutrient deficiencies in undernourished populations.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThree of 12 projects that received funding from the U.S. National Science Foundation\u2019s\u0026nbsp;\u003Ca href=\u0022https:\/\/new.nsf.gov\/funding\/opportunities\/using-rules-life-address-societal-challenges\u0022\u003EUsing the Rules of Life to Address Societal Challenges\u003C\/a\u003E\u0026nbsp;are led by researchers in Georgia Tech\u2019s School of Chemical and Biomolecular Engineering\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Three of 12 projects that received funding from the U.S. National Science Foundation\u2019s Using the Rules of Life to Address Societal Challenges to be led by researchers in Georgia Tech\u2019s School of Chemical and Biomolecular Engineering"}],"uid":"27271","created_gmt":"2023-08-14 14:14:05","changed_gmt":"2024-08-27 17:05:26","author":"Brad Dixon","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-14T00:00:00-04:00","iso_date":"2023-08-14T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671388":{"id":"671388","type":"image","title":"cheung2018preferred.jpg","body":"\u003Cp\u003EAssistant Professor Lily Cheung\u003C\/p\u003E\r\n","created":"1692021815","gmt_created":"2023-08-14 14:03:35","changed":"1692021815","gmt_changed":"2023-08-14 14:03:35","alt":"Assistant Professor Lily Cheung","file":{"fid":"254426","name":"cheung2018preferred.jpg","image_path":"\/sites\/default\/files\/2023\/08\/14\/cheung2018preferred.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/14\/cheung2018preferred.jpg","mime":"image\/jpeg","size":121671,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/14\/cheung2018preferred.jpg?itok=CrS8FhQN"}},"671389":{"id":"671389","type":"image","title":"markstyc2018-2.jpg","body":"\u003Cp\u003EProfessor Mark Styczynski\u003C\/p\u003E\r\n","created":"1692021881","gmt_created":"2023-08-14 14:04:41","changed":"1692021881","gmt_changed":"2023-08-14 14:04:41","alt":"Professor Mark Styczynski","file":{"fid":"254427","name":"markstyc2018-2.jpg","image_path":"\/sites\/default\/files\/2023\/08\/14\/markstyc2018-2.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/14\/markstyc2018-2.jpg","mime":"image\/jpeg","size":113967,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/14\/markstyc2018-2.jpg?itok=z4hUUCQg"}},"671387":{"id":"671387","type":"image","title":"coreywilson.jpg","body":"\u003Cp\u003EProfessor Corey Wilson\u003C\/p\u003E\r\n","created":"1692021737","gmt_created":"2023-08-14 14:02:17","changed":"1692021737","gmt_changed":"2023-08-14 14:02:17","alt":"Professor Corey Wilson","file":{"fid":"254425","name":"coreywilson.jpg","image_path":"\/sites\/default\/files\/2023\/08\/14\/coreywilson.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/14\/coreywilson.jpg","mime":"image\/jpeg","size":88472,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/14\/coreywilson.jpg?itok=MJh8ZKNG"}}},"media_ids":["671388","671389","671387"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"1503","name":"Biotechnology"},{"id":"166890","name":"sustainability"},{"id":"140071","name":"micronutrients"},{"id":"560","name":"chemical engineering"},{"id":"192954","name":"Rules of Living"},{"id":"363","name":"NSF"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBrad Dixon, \u003Ca href=\u0022mailto:braddixon@gatech.edu\u0022\u003Ebraddixon@gatech.edu\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["braddixon@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669147":{"#nid":"669147","#data":{"type":"news","title":"IEN Opens Its Doors for Chip Camp","body":[{"value":"\u003Cp\u003ESixty-six students visited Georgia Tech on Friday, July 21, for the final day of \u003Ca href=\u0022https:\/\/www.steamtruck.org\/chip-camp\u0022\u003EChip Camp\u003C\/a\u003E, a three-day STEM camp for rising sixth through eighth graders. The camp is sponsored by the Micron Foundation and is designed to \u201cpique students\u0027 curiosity and challenge their minds through hands-on STEM and semiconductor activities.\u201d\u003C\/p\u003E\u003Cp\u003EThe day began at the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology\u003C\/a\u003E (IEN), where students learned about ferrofluids, thin films, magic sand, measuring their height in nanometers, and the size and scale of the universe. They also visited the \u003Ca href=\u0022https:\/\/mcf.gatech.edu\/\u0022\u003EMaterials Characterization Facility\u003C\/a\u003E for an introduction to characterization and demonstrations of some of its tools, including the digital optical microscope and atomic force microscope. The IEN portion of the day concluded with a window tour of the IEN cleanroom and an opportunity to gown up in \u201cbunny suits,\u201d the standard uniform worn by cleanroom users.\u003C\/p\u003E\u003Cp\u003E\u201cWe\u2019re committed to developing the pipeline of the future microelectronics workforce,\u201d said Mikkel Thomas, assistant director of workforce development at IEN. \u201cThis includes K-12 students who may not know what microelectronics are, or the career paths associated with them. We were glad to host part of Chip Camp and introduce these students to IEN.\u201d\u003C\/p\u003E\u003Cp\u003EFollowing a lunch break, campers visited the \u003Ca href=\u0022https:\/\/inventionstudio.gatech.edu\/\u0022\u003EInvention Studio makerspace\u003C\/a\u003E, where they built their own rockets \u2014 and then launched them in Tech Green.\u003C\/p\u003E\u003Cp\u003EMicron Chip Camp is a global initiative offering opportunities to students in the U.S. and Asia both in person and online. Micron teamed up with \u003Ca href=\u0022https:\/\/www.steamtruck.org\/\u0022\u003ESTE(A)M Truck\u003C\/a\u003E, Atlanta\u0027s leader in hands-on STEAM education, for the Georgia session.\u003C\/p\u003E\u003Cp\u003EIn addition to hosting students for camps, IEN provides a variety of outreach programs for K-12 and adult learners, which include short courses and seminars, research experiences for undergraduates, and research experiences for teachers. To learn more about these opportunities, visit \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\/workforce-development\u0022\u003Eresearch.gatech.edu\/nano\/workforce-development\u003C\/a\u003E.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ESixty-six students visited Georgia Tech on Friday, July 21, for the final day of Chip Camp, a three-day STEM camp for rising sixth through eighth graders.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Sixty-six students visited Georgia Tech on Friday, July 21, for the final day of Chip Camp, a three-day STEM camp for rising sixth through eighth graders. "}],"uid":"34760","created_gmt":"2023-08-24 16:53:02","changed_gmt":"2024-08-27 17:02:24","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-24T00:00:00-04:00","iso_date":"2023-08-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671474":{"id":"671474","type":"image","title":"Chip Campers in bunny suits","body":null,"created":"1692896232","gmt_created":"2023-08-24 16:57:12","changed":"1692896315","gmt_changed":"2023-08-24 16:58:35","alt":"Campers gown up in bunny suits as part of Chip Camp","file":{"fid":"254543","name":"ChipCamp.png","image_path":"\/sites\/default\/files\/2023\/08\/24\/ChipCamp.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/24\/ChipCamp.png","mime":"image\/png","size":7195198,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/24\/ChipCamp.png?itok=ogeLnqNY"}}},"media_ids":["671474"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"192980","name":"Chip Camp"},{"id":"59541","name":"workforce development"},{"id":"183048","name":"K-12 outreach"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670044":{"#nid":"670044","#data":{"type":"news","title":"$50M Cancer Moonshot Grant Will Build an Atlas for Earlier Cancer Detection","body":[{"value":"\u003Cp\u003EThe Georgia Institute of Technology will lead development of a new generation of cancer tests capable of detecting multiple types of tumors earlier than ever with up to $50 million from President Joe Biden\u2019s Cancer Moonshot initiative.\u003C\/p\u003E\u003Cp\u003ELed by biomedical engineer \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/faculty\/Gabe-A.-Kwong\u0022\u003EGabe Kwong\u003C\/a\u003E, the project will map the unique cellular profiles of cancer cells and leverage that knowledge to build new bioengineered sensors to detect those profiles. The goal is to create a new kind of multi-cancer early detection test that would allow oncologists to start treating the tumors sooner, when they\u2019re still small and most responsive.\u003C\/p\u003E\u003Cp\u003EThe funding \u003Ca href=\u0022https:\/\/arpa-h.gov\/news\/baa-cancer\/\u0022\u003Eannounced Sept. 26\u003C\/a\u003E is from the new \u003Ca href=\u0022https:\/\/arpa-h.gov\/\u0022\u003EAdvanced Research Projects Agency for Health\u003C\/a\u003E (ARPA-H) and part of the Biden administration\u2019s efforts to cut the cancer death rate in half in 25 years.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/09\/50m-cancer-moonshot-grant-will-build-atlas-earlier-cancer-detection\u0022\u003E\u003Cstrong\u003ERead the full story on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EBiomedical engineer Gabe Kwong will map cancer cell biomarkers, then engineer new sensors to hunt for multiple kinds of cancer.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Biomedical engineer Gabe Kwong will map cancer cell biomarkers, then engineer new sensors to hunt for multiple kinds of cancer."}],"uid":"27446","created_gmt":"2023-09-29 17:56:55","changed_gmt":"2024-08-27 17:02:12","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-28T00:00:00-04:00","iso_date":"2023-09-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671905":{"id":"671905","type":"image","title":"Gabe Kwong","body":null,"created":"1696010886","gmt_created":"2023-09-29 18:08:06","changed":"1696010948","gmt_changed":"2023-09-29 18:09:08","alt":"Gabe Kwong","file":{"fid":"255056","name":"GabeKwong.jpg","image_path":"\/sites\/default\/files\/2023\/09\/29\/GabeKwong.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/29\/GabeKwong.jpg","mime":"image\/jpeg","size":580200,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/29\/GabeKwong.jpg?itok=8vQx5UF9"}}},"media_ids":["671905"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"108041","name":"Gabe Kwong"},{"id":"249","name":"Biomedical Engineering"},{"id":"594","name":"college of engineering"},{"id":"385","name":"cancer"},{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003Cbr\u003ECollege of Engineering\u003C\/p\u003E","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670253":{"#nid":"670253","#data":{"type":"news","title":"Reinforcement Learning Approach in Electronic Design Automation Earns Top Honors at DAC 2023 - Cloned","body":[{"value":"\u003Cp\u003EResearchers from the \u003Ca href=\u0022https:\/\/www.gtcad.gatech.edu\/\u0022\u003EGeorgia Tech Computer-Aided Design (GTCAD) Laboratory\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E have received this year\u2019s \u003Ca href=\u0022https:\/\/www.dac.com\/\u0022\u003EDesign Automation Conference\u003C\/a\u003E (DAC) \u003Ca href=\u0022https:\/\/www.dac.com\/About\/Conference-Archive\/60th-DAC-2023\/Best-Paper-Recipients-2023\u0022\u003EBest Paper Award For Research\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThe award-winning paper was co-authored by Motorola Solutions Foundation Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/sung-kyu-lim\u0022\u003ESung Kyu Lim\u003C\/a\u003E and Yi-Chen Lu (ECE Ph.D. \u201923, currently at Apple), in collaboration with a team from \u003Ca href=\u0022https:\/\/www.synopsys.com\/\u0022\u003ESynopsys, Inc\u003C\/a\u003E comprised of Wei-Ting Chan, Deyuan Guo, Vishal Khandelwal, and Sudipto Kundu.\u003C\/p\u003E\u003Cp\u003EThe research, titled \u201c\u003Ca href=\u0022https:\/\/gtcad.gatech.edu\/www\/papers\/yi-chen_DAC23_RL-CCD.pdf\u0022\u003ERL-CCD: Concurrent Clock and Data Optimization using Attention-Based Self-Supervised Reinforcement Learning\u003C\/a\u003E,\u201d received Best Paper recognition out of 1,157 submissions. It presents a Reinforcement Learning (RL) agent in Concurrent Clock and Data (CCD) optimization \u2014 a technique used in modern computer design tools to improve the performance and reliability of digital circuits. The introduction of an RL agent enables systems to intelligently enhance their ability to correctly rank violating endpoints according to machine learning-based optimization strategies. This contributes to an optimization flow that maximizes the overall efficiency and effectiveness of the system\u0027s performance.\u003C\/p\u003E\u003Cp\u003EThe team was presented the award at DAC 2023 \u2014 the flagship conference in electronic design automation (EDA) \u2014 in San Francisco this July.\u003C\/p\u003E\u003Cp\u003ELast year, Lim and his research team were presented with the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/07\/lim-and-team-win-2022-transactions-computer-aided-design-best-paper-award\u0022\u003EDonald O. Pederson Best Paper Award\u003C\/a\u003E\u0026nbsp;for their research on Compact-2D physical design tools at DAC. The work was recognized as the best paper published in IEEE\u2019s Transactions on Computer-Aided Design of Integrated Circuits and Systems (IEEE TCAD), the flagship journal of the IEEE Council on Electronic Design Automation (CEDA).\u003C\/p\u003E\u003Cp\u003E\u003Cem\u003ETop photo caption:\u0026nbsp;The team receiving the Best Paper Award For Research this July at the Design Automation Conference.\u0026nbsp;Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).\u003C\/em\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe cutting-edge research on intelligent Concurrent Clock and Data optimization from Professor Sung Kyu Lim\u2019s GTCAD lab has received the highest acclaim at leading electronic design automation (EDA) conference.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The cutting-edge research on intelligent Concurrent Clock and Data optimization from Professor Sung Kyu Lim\u2019s GTCAD lab has received the highest acclaim at leading electronic design automation (EDA) conference."}],"uid":"34760","created_gmt":"2023-10-06 17:28:04","changed_gmt":"2024-08-27 17:02:02","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-31T00:00:00-04:00","iso_date":"2023-08-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671563":{"id":"671563","type":"image","title":"Lim_DAC Award 2023.jpg","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team receiving the Design Automation Conference (DAC) Best Paper Award For Research in July. Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1693526978","gmt_created":"2023-09-01 00:09:38","changed":"1693526978","gmt_changed":"2023-09-01 00:09:38","alt":"The team receiving the Design Automation Conference (DAC) Best Paper Award For Research in July. Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).","file":{"fid":"254648","name":"Lim_DAC Award 2023.jpg","image_path":"\/sites\/default\/files\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg","mime":"image\/jpeg","size":3154668,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg?itok=gVJbe6yE"}}},"media_ids":["671563"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669956":{"#nid":"669956","#data":{"type":"news","title":"Computing Faculty Supporting Research That Could Cut Cancer Deaths in Half","body":[{"value":"\u003Cp\u003EA surgically implantable device the size of a pinky finger could be a huge step toward a cure for cancer. A multi-institutional team of researchers that includes Georgia Tech faculty received $45 million from the\u003Ca href=\u0022https:\/\/arpa-h.gov\/\u0022\u003E\u0026nbsp;Advanced Research Projects Agency for Health (ARPA-H)\u003C\/a\u003E\u0026nbsp;to develop sense-and-respond implant technology for cancer treatment.\u003C\/p\u003E\u003Cp\u003EThe National Cancer Institute estimates more than 600,000 people will die of cancer in the U.S. in 2023, but the researchers say their project could reduce the number of U.S. cancer-related deaths by 50%.\u003C\/p\u003E\u003Cp\u003EJosiah Hester, an associate professor in Georgia Tech\u2019s School of Interactive Computing, is a co-principal investigator on the project and is responsible for the sensing and computing technology in the implantable device. He will also assist with large-scale experimentations and coordinate the integration of the technology.\u003C\/p\u003E\u003Cp\u003EHester specializes in developing sensing, battery-free, and sustainable technology for wearable and mobile devices. He previously worked on a team that developed the first battery-free handheld gaming console.\u003C\/p\u003E\u003Cp\u003ECeline Lin, associate professor in Georgia Tech\u2019s School of Computer Science, is working with Hester to develop ultra-energy-efficient chips for signal processing and embedded control. Together, they will develop a robust platform that is energy-efficient enough to last for months.\u003C\/p\u003E\u003Cp\u003EThe device contains genetically engineered cells catered to each individual patient that attack and eliminate cancer cells in the body. Thanks to Hester\u2019s efforts, the device can monitor a patient\u2019s cancer and adjust the dosage of the genetically engineered cells in real time.\u003C\/p\u003E\u003Cp\u003E\u201cWe must keep the cells alive to fight the cancer, and we must understand and control our progress in delivering this treatment,\u201d Hester said. \u201cReleasing too many cells could be toxic, and not releasing enough could be ineffective.\u201d\u003C\/p\u003E\u003Cp\u003EOmid Veiseh, a bioengineer at\u0026nbsp;\u003Ca href=\u0022https:\/\/news.rice.edu\/news\/2023\/feds-fund-research-could-slash-us-cancer-deaths-50\u0022\u003ERice University\u003C\/a\u003E, serves as principal investigator on the project and genetically engineers the cancer-attacking cells.\u003C\/p\u003E\u003Cp\u003EAlong with Hester and Lin, Veiseh\u2019s team consists of 19 co-PIs from the University of Texas, Stanford University, Carnegie Mellon University, Northwestern University, the University of Houston, and Johns Hopkins University.\u003C\/p\u003E\u003Cp\u003EThe researchers named their project Targeted Hybrid Oncotherapeutic Regulation (THOR) and named the implantable device Hybrid Advanced Molecular Manufacturing Regulator (HAMMR).\u003C\/p\u003E\u003Cp\u003EOver the next five years, the team will test this unique approach to cancer treatment on patients with ovarian, pancreatic, and other difficult-to-treat cancers. They expect to not only improve immunotherapy outcomes for patients, but to make treatment more accessible.\u003C\/p\u003E\u003Cp\u003EHester said once the device is surgically implanted, it is designed to remain in the body for six months or more, making it a minimally invasive alternative to chemotherapy.\u003C\/p\u003E\u003Cp\u003E\u201cIf you\u2019re a patient with advanced stage cancer, you might be going in weekly to do various invasive and painful procedures,\u201d Hester said. \u201cThis implant could remove a lot of the burden and make cancer treatment more accessible.\u003C\/p\u003E\u003Cp\u003E\u201cInstead of driving three or four hours to get your treatment \u2014 which is expensive, and you may not be able to do it \u2014 you can have this implant. You come for the surgery, then you leave, and it stays with you for six months. The localized treatment should reduce the pain and terrible symptoms that chemotherapy and other systemic treatments cause in current protocols.\u201d\u003C\/p\u003E\u003Cp\u003EARPA-H is a federal funding agency established in 2022 to support research that has \u201cthe potential to transform entire areas of medicine and health.\u201d THOR is the second program to receive funding from ARPA-H after its first Open Broad Agency Announcement solicitation for research proposals.\u003C\/p\u003E\u003Cp\u003EThe first funding contract went to a team of researchers led by Philip Santangelo, a professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/\u0022\u003EWallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory\u003C\/a\u003E. Their project, known as\u0026nbsp;\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/08\/bme-researchers-lead-24m-project-using-mrna-turn-helpful-immune-responses\u0022\u003ECUREIT\u003C\/a\u003E, uses mRNA drugs to activate or switch off certain genes to help the immune system fight cancer and other chronic diseases.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EA multi-institutional team, including Georgia Tech researchers, has received $45 million from ARPA-H to develop a surgically implantable device the size of a pinky finger, called HAMMR, which contains genetically engineered cells for real-time cancer treatment and monitoring, potentially reducing U.S. cancer-related deaths by 50%.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"A multi-institutional team, including Georgia Tech researchers, has received $45 million from ARPA-H to develop a surgically implantable device that may potentially reduce U.S. cancer-related deaths by 50%."}],"uid":"32045","created_gmt":"2023-09-26 17:34:27","changed_gmt":"2024-08-27 16:11:46","author":"Ben Snedeker","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-26T00:00:00-04:00","iso_date":"2023-09-26T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671840":{"id":"671840","type":"image","title":"Georgia Tech Associate Professor of Interactive Computing Josiah Hester","body":null,"created":"1695750013","gmt_created":"2023-09-26 17:40:13","changed":"1695750013","gmt_changed":"2023-09-26 17:40:13","alt":"Georgia Tech Associate Professor of Interactive Computing Josiah Hester","file":{"fid":"254978","name":"Josiah Hester_86A0504.jpg","image_path":"\/sites\/default\/files\/2023\/09\/26\/Josiah%20Hester_86A0504.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/26\/Josiah%20Hester_86A0504.jpg","mime":"image\/jpeg","size":598031,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/26\/Josiah%20Hester_86A0504.jpg?itok=9adMnFyo"}}},"media_ids":["671840"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"140","name":"Cancer Research"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"10199","name":"Daily Digest"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ENathan Deen, Communications Officer\u003C\/p\u003E\u003Cp\u003ESchool of Interactive Computing\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"670387":{"#nid":"670387","#data":{"type":"news","title":"Wilbur Lam Elected to National Academy of Medicine","body":[{"value":"\u003Cp\u003EThe list of titles following Wilbur Lam\u2019s name is long, given his appointments at Georgia Tech, Emory University, and Children\u2019s Healthcare of Atlanta. Now he has a new one: member of the National Academy of Medicine (NAM).\u003C\/p\u003E\u003Cp\u003ELam is one of 100 newly elected members of the Academy for 2023, an honor reserved for people who\u2019ve made major contributions to medicine, healthcare, and public health. He joins a roster of just 2,400 or so individuals. Membership is considered one of the highest recognitions in health and medicine.\u003C\/p\u003E\u003Cp\u003E\u201cThis honor is extremely humbling because it\u2019s given to me as one person. But it really reflects the team effort that\u2019s surrounded me all these years,\u201d said Lam, W. Paul Bowers Research Chair in the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University.\u003C\/p\u003E\u003Cp\u003E\u201cIf you look at all the work that they\u2019re recognizing me for, it starts with my laboratory, then goes beyond \u2014 into the centers that we\u2019ve developed related to diagnostic technologies, and then, all the work that we\u2019ve done for the National Institutes of Health during the pandemic.\u201d\u003C\/p\u003E\u003Cp\u003ENew NAM members are nominated and elected by current members, and they\u2019re expected to contribute to National Academies activities providing independent analysis and advice to help the nation tackle complex problems.\u003C\/p\u003E\u003Cp\u003ELam, who is a pediatric hematologist\/oncologist at Children\u2019s Healthcare of Atlanta in addition to a researcher, was cited \u201cfor outstanding contributions in point-of-care, home-based, and\/or smartphone-enabled diagnostics that are changing the management of pediatric and hematologic diseases as well as development of microsystems technologies as research-enabling platforms to investigate blood biophysics.\u201d\u003C\/p\u003E\u003Ch5\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/10\/wilbur-lam-elected-national-academy-medicine?utm_source=newsletter\u0026amp;utm_medium=email\u0026amp;utm_content=Wilbur%20Lam%20Elected%20to%20National%20Academy%20of%20Medicine\u0026amp;utm_campaign=Daily%20Digest%20-%20October%2012%2C%202023\u0022\u003ERead the full article on the College of Engineering website\u003C\/a\u003E\u003C\/h5\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003ELam is a biomedical engineer and pediatrician whose work has included leading national efforts to rapidly verify Covid-19 tests and get them to market.\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Lam is a biomedical engineer and pediatrician whose work has included leading national efforts to rapidly verify Covid-19 tests and get them to market."}],"uid":"34760","created_gmt":"2023-10-12 15:13:22","changed_gmt":"2024-08-27 16:11:32","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-10-11T00:00:00-04:00","iso_date":"2023-10-11T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"635950":{"id":"635950","type":"image","title":"Wilbur Lam, MD, PhD, faculty member of the Wallace H. Coulter Department of Biomedical Engineering.","body":null,"created":"1591281214","gmt_created":"2020-06-04 14:33:34","changed":"1591281252","gmt_changed":"2020-06-04 14:34:12","alt":"Wilbur Lam, MD, PhD, faculty member of the Wallace H. Coulter Department of Biomedical Engineering.","file":{"fid":"241995","name":"18C5413_P2_006.jpg","image_path":"\/sites\/default\/files\/images\/18C5413_P2_006.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/18C5413_P2_006.jpg","mime":"image\/jpeg","size":260117,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/18C5413_P2_006.jpg?itok=IAaCSPQJ"}}},"media_ids":["635950"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187423","name":"go-bio"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EJoshua Stewart (jstewart@gatech.edu)\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"670866":{"#nid":"670866","#data":{"type":"news","title":"Georgia Tech Hosts Nanowire Week 2023","body":[{"value":"\u003Cp\u003EThis year, Nanowire Week 2023 took place at Georgia Tech\u2019s Global Learning Center from October 9-13, 2023. The event, which kicked off on National Nanotechnology Day, brought together attendees and speakers for four and a half days of talks, poster sessions, and panel discussions covering all aspects of nanowire research and development \u2013 from fabrication and fundamental properties to applications.\u003C\/p\u003E\u003Cp\u003E\u201cHosting Nanowire Week 2023 at Georgia Tech\u2019s Global Learning Center has been an extraordinary experience,\u201d said Michael Filler, interim executive director for the Institute of Electronics and Nanotechnology. \u201cThis conference has highlighted the interdisciplinary nature of nanowire research, bringing together scientists and engineers from around the globe. Their shared insights and discoveries are not just academic achievements; they are the building blocks for technological innovations that could transform industries and improve everyday life.\u0022 Filler served as conference chair and worked with an international steering committee to plan the event.\u003C\/p\u003E\u003Cp\u003EWith more than 115 speakers and poster presenters representing more than 20 countries, the agenda reflected the diverse and evolving landscape of nanowire research. Topics included nanowire growth and manufacturing, electron transport and doping in nanowires, quantum behavior and devices, energy conversion and storage, and more.\u003C\/p\u003E\u003Cp\u003ENanowires are 1D nanostructures with a wide range of potential uses. The ability of bottom-up growth methods to \u2018program\u2019 nanowire structure and composition with nanoscale precision opens the door to novel materials properties and functionality.\u003C\/p\u003E\u003Cp\u003ENanowire Week takes place every 18 months and brings together leading experts in the world of nanowires. Past locations include Lund, Sweden; Hamilton, Canada; Pisa, Italy; and Chamonix, France.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThe event, which kicked off on National Nanotechnology Day, brought together attendees and speakers for four and a half days of talks, poster sessions, and panel discussions.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The event, which kicked off on National Nanotechnology Day, brought together attendees and speakers for four and a half days of talks, poster sessions, and panel discussions."}],"uid":"34760","created_gmt":"2023-11-03 12:44:51","changed_gmt":"2024-08-27 16:11:16","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-03T00:00:00-04:00","iso_date":"2023-11-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672262":{"id":"672262","type":"image","title":"Nanowire","body":null,"created":"1699039808","gmt_created":"2023-11-03 19:30:08","changed":"1699039850","gmt_changed":"2023-11-03 19:30:50","alt":"nanowires","file":{"fid":"255473","name":"Nanowire-nanoscope.png","image_path":"\/sites\/default\/files\/2023\/11\/03\/Nanowire-nanoscope.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/11\/03\/Nanowire-nanoscope.png","mime":"image\/png","size":530010,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/11\/03\/Nanowire-nanoscope.png?itok=d8t3LSTX"}}},"media_ids":["672262"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto: amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671332":{"#nid":"671332","#data":{"type":"news","title":"Fall 2023 IEN Seed Grant Winners Announced","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) at Georgia Tech has announced the Fall 2023 Core Facility Seed Grant winners. The primary purpose of this program is to give early-stage graduate students in diverse disciplines working on original and unfunded research in micro- and nanoscale projects the opportunity to access the most advanced academic cleanroom space in the Southeast. In addition to accessing the labs\u0027 high-level fabrication, lithography, and characterization tools, the awardees will have the opportunity to gain proficiency in cleanroom and tool methodology and access the consultation services provided by research staff members in IEN. Seed Grant awardees are also provided travel support to present their research at a scientific conference.\u003C\/p\u003E\u003Cp\u003EIn addition to student research skill development, this biannual grant program gives faculty with novel research topics the ability to develop preliminary data to pursue follow-up funding sources. The Core Facility Seed Grant program is supported by the Southeastern Nanotechnology Infrastructure Corridor (SENIC), a member of the National Science Foundation\u2019s National Nanotechnology Coordinated Infrastructure (NNCI).\u003C\/p\u003E\u003Cp\u003ESince the start of the grant program in 2014, 90 projects from ten different schools in Georgia Tech\u2019s Colleges of Engineering and Science, as well as the Georgia Tech Research Institute and three other universities, have been seeded.\u003C\/p\u003E\u003Cp\u003EThe four winning projects in this round were awarded IEN cleanroom and lab access time to be used over the next year. In keeping with the interdisciplinary mission of IEN, the projects that will be enabled by the grants include research in electronic devices, geochemistry, bio-inspired design, and solid state physics.\u003C\/p\u003E\u003Cp\u003EThe Fall 2023 IEN Core Facility Seed Grant Award winners are:\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EUsing Zircon (U-Th)\/Pb Geochronology to Trace the Source of Himalayan Megafloods\u003C\/strong\u003E\u003Cbr\u003EPI: Karl Lang\u003Cbr\u003EStudent: Srinanda Nath\u003Cbr\u003ESchool of Earth and Atmospheric Sciences\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMaterial Characterization of Keratin-based Barbules with Hygroscopic Coiling-uncoiling Behaviors and Biomimetic Fabrication of Artificial Hygromorphic Barbules\u003C\/strong\u003E\u003Cbr\u003EPI: Saad Bhamla\u003Cbr\u003EStudent: Nami Ha (ME\/BioE)\u003Cbr\u003ESchool of Chemical and Biomolecular Engineering\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EUltra-high Mobility Semiconducting Graphene Device Fabrication\u003C\/strong\u003E\u003Cbr\u003EPI: Claire Berger and Walt de Heer\u003Cbr\u003EStudent: Will Griffin\u003Cbr\u003ESchool of Physics\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EExtracting the Effect of Electrode-Ferroelectric Interface on Photovoltaic Efficiency\u003C\/strong\u003E\u003Cbr\u003EPI: Lauren Garten\u003Cbr\u003EStudent: Marshall Frye\u003Cbr\u003ESchool of Materials Science and Engineering\u003C\/p\u003E\u003Cp\u003EThe Southeastern Nanotechnology Infrastructure Corridor, a member of the National Nanotechnology Coordinated Infrastructure, is funded by NSF Grant ECCS-2025462.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EFour Interdisciplinary Projects to Receive IEN Technical Support and Facility Access\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Four Interdisciplinary Projects to Receive IEN Technical Support and Facility Access"}],"uid":"35272","created_gmt":"2023-11-30 21:56:38","changed_gmt":"2024-08-27 16:10:13","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-30T00:00:00-05:00","iso_date":"2023-11-30T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAmelia Neumeister\u003C\/p\u003E","format":"limited_html"}],"email":["Amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671403":{"#nid":"671403","#data":{"type":"news","title":"Andreas Heirlemann Gives Inaugural Oliver Brand Memorial Lecture on Electronics and Nanotechnology","body":[{"value":"\u003Cp\u003EThe inaugural Oliver Brand Memorial Lectureship on Electronics and Nanotechnology was held on Nov. 13 at Georgia Tech. The lecture was presented by Andreas Heirlemann, professor of biosystems science and engineering at ETH Z\u00fcrich, on microphysicological systems and highly integrated microelectrode arrays.\u003C\/p\u003E\u003Cp\u003EHis talk marks the beginning of an annual lecture series established \u003Ca href=\u0022https:\/\/research.gatech.edu\/memoriam-oliver-brand\u0022\u003Ein memory of Professor Oliver Brand\u003C\/a\u003E, who passed away in April. Brand had served as the executive director of the Georgia Tech Institute for Electronics and Nanotechnology (IEN) since 2014.\u003C\/p\u003E\u003Cp\u003E\u201cOliver\u2019s work, especially in microelectromechanical systems and CMOS-based microsystems, is widely respected in the community, with more than 190 publications to his name,\u201d said Mike Filler, IEN\u2019s interim executive director. \u201cAndreas Heirlemann\u2019s scientific contributions embody the innovative spirit and excellence that Oliver championed throughout his life.\u201d\u003C\/p\u003E\u003Cp\u003EIn addition to their research connection, Heirlemann also had a personal connection with Brand. They worked closely together in the same research lab at ETH Z\u00fcrich for three years before Brand moved to Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u201cWhat impressed me most about Oliver was his innate friendliness,\u201d said Hierlemann. \u201cHe was always supportive. He was always motivating students. I never heard a harsh word come out of him. He had an extremely positive outlook on life that I learned to admire. That is what I take as his legacy.\u201d\u003C\/p\u003E\u003Cp\u003EHierlemann\u2019s lecture was presented in two parts. The first focused on microfluidics, hanging drop networks, and microphysiological systems. Microphysicological systems are 3D cell assemblies, or membrane structures like organs, that occur naturally in the body or are grown with stem cells. These systems allow for comprehensive testing and studying tissue interactions.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThe second part of his talk focused on high-density microelectrode array systems, including neuronal systems characterization and the handling and use of neurons.\u003C\/p\u003E\u003Cp\u003EBrand spent more than 20 years as a member of the Georgia Tech faculty. In addition to leading IEN, he was a professor in the School of Electrical and Computer Engineering, director of the Coordinating Office for the NSF-funded National Nanotechnology Coordinated Infrastructure (NNCI), and director of the Southeastern Nanotechnology Infrastructure Corridor, one of the 16 NNCI sites.\u003C\/p\u003E\u003Cp\u003EBrand united researchers in the fields of electronics and nanotechnology, fostering collaboration and expanding IEN to include more than 200 faculty members. In addition to his respected work in the field of microelectromechanical systems, he is remembered for his kindness, dedication, and unwavering support toward all who knew him.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThe inaugural Oliver Brand Memorial Lectureship on Electronics and Nanotechnology was held on Nov. 13 at Georgia Tech.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The inaugural Oliver Brand Memorial Lectureship on Electronics and Nanotechnology was held on Nov. 13 at Georgia Tech."}],"uid":"35272","created_gmt":"2023-12-04 21:02:13","changed_gmt":"2024-08-27 16:09:56","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-12-04T00:00:00-05:00","iso_date":"2023-12-04T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672499":{"id":"672499","type":"image","title":"filler,hierlemann.jpg","body":null,"created":"1701725821","gmt_created":"2023-12-04 21:37:01","changed":"1701725821","gmt_changed":"2023-12-04 21:37:01","alt":"Andreas Heirlemann and Micheal Filler (Photo by Laurie Haigh)","file":{"fid":"255744","name":"filler,hierlemann.jpg","image_path":"\/sites\/default\/files\/2023\/12\/04\/filler%2Chierlemann.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/12\/04\/filler%2Chierlemann.jpg","mime":"image\/jpeg","size":1629972,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/12\/04\/filler%2Chierlemann.jpg?itok=WjbdKiBi"}}},"media_ids":["672499"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAmelia Neumeister\u003Cbr\u003Eamelia.neumeister@research.gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":["Amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"672961":{"#nid":"672961","#data":{"type":"news","title":"Georgia Tech and Micron Collaborate to Expand Access to Engineering Education","body":[{"value":"\u003Cp\u003EThe Georgia Institute of Technology today announced the signing of a master research agreement with \u003Ca href=\u0022https:\/\/www.micron.com\/\u0022\u003EMicron Technology,\u003C\/a\u003E a global leader in memory and storage solutions. Under the new agreement, the two organizations will expand their collaborative efforts in providing students with experiential research opportunities and expanding access to engineering education.\u003C\/p\u003E\u003Cp\u003E\u201cWe are proud to join forces with Georgia Tech, home to some of the nation\u2019s top programs, to expand students\u2019 opportunities in STEM education,\u201d said Scott DeBoer, executive vice president of Technology and Products at Micron. \u201cThis collaboration will help push the boundaries in memory technology innovation and ensure we prepare the workforce of the future.\u201d\u003C\/p\u003E\u003Cp\u003E\u201cWe believe that when academia and industry converge, the best ideas flourish into game-changing innovations,\u201d said Chaouki T. Abdallah, executive vice president for Research at Georgia Tech. \u201cThe synergy between Micron and Georgia Tech has already been tremendously fruitful, and we are so excited for the boundless opportunities on our shared horizon.\u201d\u003C\/p\u003E\u003Cp\u003E\u201cThe signing of the master research agreement represents a significant step towards increasing additional collaboration pathways between Micron and GT including the joint pursuit of major federal funding activities, technology transfer, student internships and technology transfer,\u201d said George White, senior director of Strategic Partnerships at Georgia Tech.\u003C\/p\u003E\u003Cp\u003EThe first project under the agreement is already underway. \u003Ca href=\u0022https:\/\/research.gatech.edu\/saibal-mukhopadhyay\u0022\u003ESaibal Mukhopadhyay\u003C\/a\u003E, professor in the School of Electrical and Computer Engineering, is leading the research efforts titled \u201cConfigurable Processing-In-Memory.\u201d This cutting-edge research will enable memory devices to work faster and more efficiently.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Georgia Institute of Technology announced the signing of a master research agreement with Micron Technology\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Georgia Institute of Technology announced the signing of a master research agreement with Micron Technology"}],"uid":"35272","created_gmt":"2024-02-15 12:12:43","changed_gmt":"2024-08-27 16:09:07","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-02-15T00:00:00-05:00","iso_date":"2024-02-15T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673091":{"id":"673091","type":"image","title":"Micron_GT.jpg","body":"\u003Cp\u003EFrom Left: George White, Julia Kubanek, Chaouki T. Abdallah, Scott DeBoer, Steve McLaughlin\u003C\/p\u003E\r\n","created":"1707999088","gmt_created":"2024-02-15 12:11:28","changed":"1707998977","gmt_changed":"2024-02-15 12:09:37","alt":"From Left: George White, Julia Kubanek, Chaouki T. Abdallah, Scott DeBoer, Steve McLaughlin","file":{"fid":"256445","name":"Micron_GT.jpg","image_path":"\/sites\/default\/files\/2024\/02\/15\/Micron_GT.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/02\/15\/Micron_GT.jpg","mime":"image\/jpeg","size":298812,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/02\/15\/Micron_GT.jpg?itok=FbOnln20"}}},"media_ids":["673091"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAmelia Neumeister\u003C\/p\u003E\u003Cp\u003EResearch Communications Program Manager\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003Eamelia.neumeister@research.gatech.edu\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"673515":{"#nid":"673515","#data":{"type":"news","title":"Bakir Named Director of the Packaging Research Center","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/muhannad-s-bakir\u0022\u003E\u003Cstrong\u003EMuhannad Bakir\u003C\/strong\u003E\u003C\/a\u003E\u0026nbsp;has been named director of the Institute for Electronics and Nanotechnology\u2019s\u0026nbsp;\u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022\u003E\u003Cstrong\u003E3D Systems Packaging Research Center\u003C\/strong\u003E\u003C\/a\u003E\u0026nbsp;(PRC).\u003C\/p\u003E\u003Cp\u003E\u0022We\u2019re thrilled to have Professor Bakir joining us as the new director,\u201d said Michael Filler, IEN\u2019s interim executive director. \u201cHis wealth of experience and pioneering work in advanced packaging make him an excellent fit to lead the PRC into an exciting new era of innovation and technological impact.\u201d\u003C\/p\u003E\u003Cp\u003EOriginating as a National Science Foundation Engineering Research Center in 1993, the PRC is a national leader in the advanced packaging of microelectronics. Advanced packaging in microelectronics refers to innovative techniques for merging and interconnecting multiple components within a single electronic entity. This enables more powerful, efficient, and versatile microelectronic systems, driving innovation across various industries. The Center conducts research and education\u0026nbsp;in all aspects of electronics packaging, including design, materials, process, assembly, thermal management, and system integration. Its work is driven by a wide range of applications, such as high-performance computing, artificial intelligence, automotive systems, wireless communications, and space exploration.\u003C\/p\u003E\u003Cp\u003E\u201cI am honored for the opportunity to lead the PRC and look forward to working with the campus community and our industry, government, and academic partners on a research agenda that tackles the multifaceted challenges in advanced packaging and heterogeneous integration,\u201d said Bakir.\u003C\/p\u003E\u003Cp\u003EAs director, Bakir will guide the PRC into the future of advanced packaging through his vision and expertise. He is responsible for ensuring that the PRC\u0027s world-class facilities support the emerging needs of advanced packaging of microelectronics and supports members of the campus community who uses these facilities.\u003C\/p\u003E\u003Cp\u003E\u201cWe are excited to lead the science and engineering that culminates in system level prototyping and demonstrators for AI, mm-wave, photonic systems, and beyond,\u201d he said.\u003C\/p\u003E\u003Cp\u003EBakir, who also serves as the Dan Fielder Professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003E\u003Cstrong\u003ESchool of Electrical and Computer Engineering\u003C\/strong\u003E\u003C\/a\u003E\u0026nbsp;and leads the\u0026nbsp;\u003Ca href=\u0022https:\/\/bakirlab.gatech.edu\/\u0022\u003E\u003Cstrong\u003EIntegrated 3D Systems Group\u003C\/strong\u003E\u003C\/a\u003E, brings a wealth of experience to his new role as PRC director. He and his research group have received more than 30 paper and presentation awards including seven from the IEEE Electronic Components and Technology Conference, four from the IEEE International Interconnect Technology Conference, and one from the IEEE Custom Integrated Circuits Conference. His group was also awarded the 2014 and 2017 Best Papers of the IEEE Transactions on Components Packaging and Manufacturing Technology.\u003C\/p\u003E\u003Cp\u003EBakir is the recipient of the 2013 Intel Early Career Faculty Honor Award, 2012 DARPA Young Faculty Award, 2011 IEEE CPMT Society Outstanding Young Engineer Award, and was an Invited Participant in the 2012 National Academy of Engineering Frontiers of Engineering Symposium. He is the co-recipient of the 2018 IEEE Electronics Packaging Society Exceptional Technical Achievement Award \u201cfor contributions to 2.5D and 3D IC heterogeneous integration, with a focus on interconnect technologies.\u201d He is also the co-recipient of the 2018 McKnight Foundation Technological Innovations in Neuroscience Awards. In 2020, Bakir received the Georgia Tech Outstanding Doctoral Thesis Advisor Award.\u003C\/p\u003E\u003Cp\u003EHe serves as a senior area editor for the\u0026nbsp;\u003Cem\u003EIEEE Transactions on Components, Packaging and Manufacturing Technology\u003C\/em\u003E\u0026nbsp;and was previously an Editor for\u0026nbsp;\u003Cem\u003EIEEE Transactions on Electron Devices\u003C\/em\u003E. He has also served as a distinguished lecturer for IEEE EPS.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022\u003E\u003Cstrong\u003ELearn more about PRC\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EMuhannad Bakir has been named director of the Institute for Electronics and Nanotechnology\u2019s 3D Systems Packaging Research Center.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Muhannad Bakir has been named director of the Institute for Electronics and Nanotechnology\u2019s 3D Systems Packaging Research Center."}],"uid":"35272","created_gmt":"2024-03-13 18:16:18","changed_gmt":"2024-08-27 16:08:54","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-03-12T00:00:00-04:00","iso_date":"2024-03-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"626131":{"id":"626131","type":"image","title":"Muhannad Bakir","body":null,"created":"1568386872","gmt_created":"2019-09-13 15:01:12","changed":"1568386872","gmt_changed":"2019-09-13 15:01:12","alt":"photograph of Muhannad Bakir","file":{"fid":"238370","name":"MuhannadBakir-cropped.jpg","image_path":"\/sites\/default\/files\/images\/MuhannadBakir-cropped.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MuhannadBakir-cropped.jpg","mime":"image\/jpeg","size":684989,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MuhannadBakir-cropped.jpg?itok=wo7f2Tl9"}}},"media_ids":["626131"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u003Cbr\u003EResearch Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"673250":{"#nid":"673250","#data":{"type":"news","title":"Honoring Professor Oliver Brand: The Oliver Brand Memorial Technical Symposium at Georgia Tech","body":[{"value":"\u003Cp\u003EThe Oliver Brand Memorial Technical Symposium was held on Feb. 22 at the Georgia Institute of Technology in honor of the technical achievements of Professor Oliver Brand.\u003C\/p\u003E\u003Cp\u003EThe event brought together students, faculty, and professionals in the microelectromechanical systems research community to celebrate Brand\u2019s contributions to the field and explore cutting-edge research.\u003C\/p\u003E\u003Cp\u003E\u201cAs a fellow academic, looking at his contributions, they\u2019re remarkable,\u201d said Mike Filler, interim executive director of the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology (IEN)\u003C\/a\u003E. \u201cBut then what put it over the top was his humanity. He supported every member of the community; he believed in people and had their best interests in mind.\u201d\u003C\/p\u003E\u003Cp\u003EThe seven speakers included research colleagues, graduate students and technical staff who worked closely with Brand throughout his career. They reminisced about Brand and discussed the research and technical achievements they collaborated on with him.\u003C\/p\u003E\u003Cp\u003EBrand spent more than 20 years as a member of the Georgia Tech faculty. In addition to leading IEN, he was a professor in the School of Electrical and Computer Engineering, director of the Coordinating Office for the NSF-funded National Nanotechnology Coordinated Infrastructure (NNCI), and director of the Southeastern Nanotechnology Infrastructure Corridor, one of the 16 NNCI sites.\u003C\/p\u003E\u003Cp\u003EBrand united researchers in the fields of electronics and nanotechnology, fostering collaboration and expanding IEN to include more than 200 faculty members. In addition to his respected work in the field of microelectromechanical systems, he is remembered for his kindness, dedication, and unwavering support toward all who knew him.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Oliver Brand Memorial Technical Symposium celebrated the technical achievements and humanity of Professor Oliver Brand, bringing together a community of researchers in microelectromechanical systems to commemorate his contributions and explore cutting-edge research.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Oliver Brand Memorial Technical Symposium celebrated the technical achievements and humanity of Professor Oliver Brand."}],"uid":"35272","created_gmt":"2024-02-28 20:19:58","changed_gmt":"2024-08-27 16:08:40","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-02-28T00:00:00-05:00","iso_date":"2024-02-28T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673263":{"id":"673263","type":"image","title":"brand_symposium_web.jpg","body":null,"created":"1709223420","gmt_created":"2024-02-29 16:17:00","changed":"1709223386","gmt_changed":"2024-02-29 16:16:26","alt":"Michael Filler gives opening remarks at the Oliver Brand Memorial Technical Symposium","file":{"fid":"256631","name":"brand_symposium_web.jpg","image_path":"\/sites\/default\/files\/2024\/02\/29\/brand_symposium_web.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/02\/29\/brand_symposium_web.jpg","mime":"image\/jpeg","size":171145,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/02\/29\/brand_symposium_web.jpg?itok=08FPPKBJ"}}},"media_ids":["673263"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAmelia Neumeister\u003Cbr\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EResearch Communications Program Manager\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659968":{"#nid":"659968","#data":{"type":"news","title":"Now Online in the MCF: Inorganic Mass Spectrometry Capabilities","body":[{"value":"\u003Cp\u003EThe \u003Ca href=\u0022https:\/\/mcf.gatech.edu\/\u0022\u003EMaterials Characterization Facility (MCF)\u003C\/a\u003E at Georgia Tech has installed a new inorganic m spectrometry facility. The facility includes two new inductively couple plasma mass spectrometry (ICP-MS) systems: a Thermo iCAP RQ quadrupole ICP-MS for streamlined and high-throughput determinations of elemental concentrations and a Thermo Neoma multicollector ICP-MS with collision cell technology for the precise determinations of isotope ratios within a given sample.\u003C\/p\u003E\u003Cp\u003EEach instrument can measure elemental variability in both dissolved aqueous samples as well as solids\/minerals via laser ablation microsampling from a Teledyne Iridia laser ablation system. Together the system can measure isotopes at precision in elemental systems from Li and U.\u003C\/p\u003E\u003Cp\u003EPlanned applications include: (1) high-resolution measurements of Ca, Sr, Ba, Mg, and B elemental and isotopic variability in seawater and marine and terrestrial carbonates for paleoclimate reconstructions, (2) (U-Th)\/Pb dating and Hf isotope measurements to study the origin of critical mineral deposits, with a potential engineering application and the development of novel methods for increasing precision\/accuracy and minimizing sample consumption during routine analyses of water quality and environmental contamination.\u003C\/p\u003E\u003Cp\u003EThe MCF welcomes users interested in these and other potential applications of this new facility to their scientific and engineering research to contact David Tavakoli (atavakoli6@gatech.edu).\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Materials Characterization Facility (MCF) at Georgia Tech has installed a new inorganic mass spectrometry facility. It includes two new inductively couple plasma mass spectrometry (ICP-MS) systems: a Thermo iCAP RQ quadrupole ICP-MS for streamlined and high-throughput determinations of elemental concentrations and a Thermo Neoma multicollector ICP-MS with collision cell technology for the precise determinations of isotope ratios within a given sample.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Materials Characterization Facility (MCF) at Georgia Tech has installed a new inorganic mass spectrometry facility."}],"uid":"27863","created_gmt":"2022-08-05 17:06:41","changed_gmt":"2024-08-27 16:05:12","author":"Christa Ernst","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-05T00:00:00-04:00","iso_date":"2022-08-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659967":{"id":"659967","type":"image","title":"Inorganic Mass Spectrometry at MCF","body":null,"created":"1659718945","gmt_created":"2022-08-05 17:02:25","changed":"1659718945","gmt_changed":"2022-08-05 17:02:25","alt":"Interior of a Inorganic Mass Spectrometry tool","file":{"fid":"250145","name":"MCF Isotope1.png","image_path":"\/sites\/default\/files\/images\/MCF%20Isotope1.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MCF%20Isotope1.png","mime":"image\/png","size":172796,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MCF%20Isotope1.png?itok=znULkdiT"}}},"media_ids":["659967"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"136","name":"Aerospace"},{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"141","name":"Chemistry and Chemical Engineering"},{"id":"144","name":"Energy"},{"id":"145","name":"Engineering"},{"id":"154","name":"Environment"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"150","name":"Physics and Physical Sciences"},{"id":"135","name":"Research"}],"keywords":[{"id":"186870","name":"go-imat"},{"id":"167535","name":"School of Materials Science and Engineering"},{"id":"109341","name":"Materials Characterization Facility"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"},{"id":"39491","name":"Renewable Bioproducts"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDavid Tavakoli (atavakoli6@gatech.edu).\u003C\/p\u003E","format":"limited_html"}],"email":["atavakoli6@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663828":{"#nid":"663828","#data":{"type":"news","title":"Energy Dept Invests $100M in Gleb Yushin\u2019s EV Battery Startup","body":[{"value":"\u003Cp\u003EIn the decade since \u003Ca href=\u0022https:\/\/mse.gatech.edu\/people\/gleb-yushin\u0022\u003EProfessor Gleb Yushin\u2019s\u003C\/a\u003E battery materials startup \u003Ca href=\u0022https:\/\/atdc.org\/atdc-news\/georgia-tech-entrepreneur-pursuing-greener-energy\/\u0022\u003Eparticipated in Georgia Tech\u2019s Advanced Technology Development Center\u003C\/a\u003E, investments in the company have rolled in \u2014 along with the first customers.\u003C\/p\u003E\u003Cp\u003ENow the \u003Ca href=\u0022https:\/\/www.energy.gov\/mesc\/bipartisan-infrastructure-law-battery-materials-processing-and-battery-manufacturing-recycling\u0022\u003EU.S. Department of Energy (DOE) is getting on board\u003C\/a\u003E with Yushin\u2019s Georgia Tech startup as part of federal efforts to reinvigorate tech manufacturing in the United States.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.silanano.com\/press\/press-releases\/u-s-department-of-energy-awards-sila-100-million-to-scale-manufacturing-of-its-next-generation-anode-materials\u0022\u003EDOE awarded Sila Nanotechnologies $100 million\u003C\/a\u003E this fall to support the company\u2019s new factory in Moses Lake, Washington, and help Sila hire and train up to 300 workers for the facility. It was one of 21 projects funded in domestic battery materials processing and manufacturing.\u003C\/p\u003E\u003Cp\u003E\u201cIt\u2019s our mission to help move America away from being energy dependent and become a leader in the energy transformation,\u201d said Yushin, the company\u2019s chief technology officer and a faculty member in the Georgia Tech \u003Ca href=\u0022https:\/\/mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering\u003C\/a\u003E. \u201cWith this funding, Sila will deliver proven, clean energy technology and world-scale manufacturing to revitalize the industry and gain independence.\u201d\u003C\/p\u003E\u003Cp\u003EBirthed from \u003Ca href=\u0022\/news\/2021\/03\/battery-powers-future\u0022\u003EYushin\u2019s research on lithium-ion batteries\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/silanano.com\/\u0022\u003ESila\u003C\/a\u003E manufactures next-generation materials and a silicon anode technology that boosts battery energy density by 20%. The silicon anodes are a drop-in replacement for graphite anodes in lithium-ion batteries. The new facility is projected to produce enough capacity to power 200,000 electric vehicles by 2026. Sila has inked a deal with Mercedes-Benz to use the company\u2019s technology, starting with G-Class vehicles.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2022\/12\/energy-dept-invests-100m-gleb-yushins-ev-battery-startup\u0022\u003E\u003Cstrong\u003ERead the full story on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe company is ramping up production on anode technology Yushin developed at Georgia Tech.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The company is ramping up production on anode technology Yushin developed at Georgia Tech."}],"uid":"27446","created_gmt":"2022-12-13 15:36:05","changed_gmt":"2024-08-27 15:23:38","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-13T00:00:00-05:00","iso_date":"2022-12-13T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663827":{"id":"663827","type":"image","title":"Gleb Yushin 2022 vertical","body":null,"created":"1670945389","gmt_created":"2022-12-13 15:29:49","changed":"1670945400","gmt_changed":"2022-12-13 15:30:00","alt":"Gleb Yushin leaning on a wall. ","file":{"fid":"251278","name":"Gleb-Yushin-2022-v.jpg","image_path":"\/sites\/default\/files\/images\/Gleb-Yushin-2022-v.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Gleb-Yushin-2022-v.jpg","mime":"image\/jpeg","size":383044,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Gleb-Yushin-2022-v.jpg?itok=eFLIkLHJ"}}},"media_ids":["663827"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"14251","name":"Gleb Yushin"},{"id":"187227","name":"Sila Nanotechnologies"},{"id":"187224","name":"battery innovation"},{"id":"189842","name":"battery energy storage"},{"id":"7826","name":"Batteries"},{"id":"182627","name":"lithium ion batteries"},{"id":"12819","name":"electric vehicles"},{"id":"167535","name":"School of Materials Science and Engineering"},{"id":"187915","name":"go-researchnews"},{"id":"186870","name":"go-imat"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003Cbr\u003ECollege of Engineering\u003C\/p\u003E","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665433":{"#nid":"665433","#data":{"type":"news","title":"Seeking Demonstration Groups for Science and Engineering Day","body":[{"value":"\u003Cp\u003EOn Saturday, March 11, Georgia Tech will open its doors to the community for \u003Ca href=\u0022https:\/\/research.gatech.edu\/ATLscifestGTday23\u0022\u003EScience and Engineering Day at Georgia Tech\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThis annual event aims to inspire the next generation of engineers and scientists and share the breadth of Georgia Tech\u2019s research activities with the local community. Last year more than 500 attendees, ranging from toddlers to retirees, explored the campus and participated in hands-on STEAM activities, tours, and demonstrations designed to engage and educate participants. While attendees were able to get a glimpse into one of the nation\u2019s most research-intensive universities, the community-wide event also allowed Georgia Tech students, researchers, and staff members the opportunity to share their work with the public.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003ESeeking Demo Groups\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003ETo continue the success of Science and Engineering Day, we need members of the Georgia Tech community \u2014 including student groups, labs, staff, and faculty \u2014 to participate in this year\u2019s event. Last year, 26 units and student organizations across campus provided activities in biology, space, art, nanotechnology, paper, computer science, wearables, bioengineering, and chemical engineering just to name a few.\u003C\/p\u003E\u003Cp\u003ETaking part in Science and Engineering Day gives Georgia Tech students and researchers a unique opportunity to share their work with the community and inspire attendees. Demo space is limited, so \u003Ca href=\u0022https:\/\/research.gatech.edu\/ATLscifestGTday23\u0022\u003Ereserve your spot today\u003C\/a\u003E. Opportunities include hands-on STEAM activities, exhibits, demonstrations, and opportunities to meet student researchers. If you have questions about how you can participate, reach out to \u003Ca href=\u0022mailto:leslie.oneill@ien.gatech.edu\u0022\u003ELeslie O\u2019Neil\u003C\/a\u003E. \u003Cstrong\u003EAll demo groups must register by February 20, 2023\u003C\/strong\u003E.\u003C\/p\u003E\u003Cp\u003EThe Atlanta Science Festival is engineered by Science ATL and community partners, with major support from founders Emory University, Georgia Tech, and the Metro Atlanta Chamber, and from sponsors UPS, International Paper, Georgia Power, Cox Enterprises, Lockheed Martin, Lenz Marketing, and Mercer University.\u003C\/p\u003E\u003Cp\u003ELearn more and register to demonstrate at \u003Ca href=\u0022https:\/\/research.gatech.edu\/ATLscifestGTday23\u0022\u003Eresearch.gatech.edu\/ATLscifestGTday23\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EOn Saturday, March 11, Georgia Tech will open its doors to the community for Science and Engineering Day at Georgia Tech.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"On Saturday, March 11, Georgia Tech will open its doors to the community for Science and Engineering Day at Georgia Tech."}],"uid":"34760","created_gmt":"2023-02-02 21:42:32","changed_gmt":"2024-08-27 15:21:05","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-02T00:00:00-05:00","iso_date":"2023-02-02T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665434":{"id":"665434","type":"image","title":"Atlanta Science Festival Demo 2022","body":null,"created":"1675374722","gmt_created":"2023-02-02 21:52:02","changed":"1675374722","gmt_changed":"2023-02-02 21:52:02","alt":"Family learning at demo booth","file":{"fid":"251676","name":"pic1.png","image_path":"\/sites\/default\/files\/images\/pic1.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/pic1.png","mime":"image\/png","size":2771914,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/pic1.png?itok=tWtHWUk9"}}},"media_ids":["665434"],"related_links":[{"url":"https:\/\/research.gatech.edu\/georgia-tech-science-and-engineering-day-inspiring-next-generation-innovators-0","title":"Georgia Tech Science and Engineering Day \u2013 Inspiring the Next Generation of Innovators"}],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"192249","name":"cos-community"},{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"},{"id":"166882","name":"School of Biological Sciences"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:leslie.oneill@ien.gatech.edu\u0022\u003ELeslie O\u0027Neill\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"669161":{"#nid":"669161","#data":{"type":"news","title":"The Institute for Materials Announces Initiative Leads for the 2023-24 Academic Year","body":[{"value":"\u003Cp\u003EMaterials research is foundational to the creation of new technologies and economic growth in a variety of areas, which include transportation, energy storage and generation, recyclability, information and communication, infrastructure, and healthcare. To facilitate advances in materials research, Georgia Tech\u2019s Institute for Materials (IMat) brings together researchers from academia and industry to facilitate interdisciplinary collaborations in materials research to address the opportunities and challenges in these areas.\u003C\/p\u003E\u003Cp\u003ETo enable this research, IMat leadership has supported strategic interdisciplinary initiatives since 2021. Each initiative has a dedicated faculty lead to guide the initiative and prepare teams to compete for mid- and large-scale, multi-investigator research centers with academic, national laboratory, and industry partners. Initiative leads also work to increase the campus\u2019 collaborative spirit by working with other Interdisciplinary Research Institutes, campus units, and the Georgia Tech Research Institute to design and support research programs. Initiative leads serve for one academic year and may be considered for renewal based on their progress in achieving community-building goals and their impact on IMat and the materials innovation ecosystem at Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u201cThe goal of our initiative lead program is to provide support for these strategic interdisciplinary research areas,\u201d said IMat Executive Director \u003Ca href=\u0022https:\/\/research.gatech.edu\/eric-vogel\u0022\u003EEric Vogel\u003C\/a\u003E. \u201cNow that we are in the third year of the program, we have seen significant growth in many of the initiatives we have supported, including batteries and energy storage and materials laboratories for the future.\u201d\u003C\/p\u003E\u003Ch3\u003E\u003Cstrong\u003EMaterials for Energy Storage Initiative to Become Georgia Tech Advanced Battery Center\u003C\/strong\u003E\u003C\/h3\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/matthew-mcdowell\u0022\u003EMatthew McDowell\u003C\/a\u003E has served as an IMat initiative lead in \u003Ca href=\u0022https:\/\/energystorage.research.gatech.edu\/\u0022\u003EMaterials for Energy Storage\u003C\/a\u003E, a joint initiative with the Strategic Energy Institute (SEI), since the program began in 2021. With the nation\u2019s increased focus on electric vehicles, battery storage technologies have gained significant attention since McDowell launched his initiative. In addition, the state of Georgia is becoming the epicenter of the battery belt of the Southeast, with more than $25 billion invested or announced in EV-related research in the past three years. The Materials for Energy Storage Initiative has worked to highlight Georgia Tech\u2019s strong energy storage research community and how it can help shape the development of next-generation energy storage devices. In 2023, McDowell and his team hosted \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-battery-day-reveals-opportunities-energy-storage-research\u0022\u003EGeorgia Tech Battery Day\u003C\/a\u003E, a sold-out event that brought together more than 230 energy researchers and industry representatives to advance energy storage technologies.\u003C\/p\u003E\u003Cp\u003EThis year, the Materials for Energy Storage Initiative will become the Georgia Tech Advanced Battery Center, with McDowell and \u003Ca href=\u0022https:\/\/research.gatech.edu\/gleb-yushin\u0022\u003EGleb Yushin\u003C\/a\u003E as co-directors. The new center will build community at Georgia Tech, work to enhance relationships with industrial partners, and create a new battery manufacturing facility on Georgia Tech\u2019s campus. The Advanced Battery Center is the latest initiative to gain external funding and become a center, in addition to the \u003Ca href=\u0022https:\/\/cope.gatech.edu\/\u0022\u003ECenter for Organic Photonics and Electronics\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/www.eda.gov\/funding\/programs\/american-rescue-plan\/build-back-better\/finalists\/georgia-tech-research-corporations\u0022\u003EGeorgia AI Manufacturing\u003C\/a\u003E coalition led by former IMat Initiative Lead \u003Ca href=\u0022https:\/\/research.gatech.edu\/aaron-stebner-0\u0022\u003EAaron Stebner\u003C\/a\u003E.\u003C\/p\u003E\u003Ch3\u003E\u003Cstrong\u003EMeet the 2023-24 IMat Initiative Leads\u003C\/strong\u003E\u003C\/h3\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMaterials for Solar Energy Harvesting and Conversion\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/juan-pablo-correa-baena\u0022\u003EJuan-Pablo Correa-Baena\u003C\/a\u003E is an assistant professor and the Goizueta Early Career Faculty Chair in the School of Materials Science and Engineering. He holds a B.S. in management and engineering and an M.S. and Ph.D. in environmental engineering, all from the University of Connecticut. Correa-Baena runs the \u003Ca href=\u0022https:\/\/baena.gatech.edu\/\u0022\u003EEnergy Materials Lab\u003C\/a\u003E at Georgia Tech, which focuses on understanding and control of crystallographic structure and effects on electronic dynamics at the nanoscale of low-cost semiconductors for optoelectronic applications.\u003C\/p\u003E\u003Cp\u003EAs an initiative lead, Correa-Baena will work to create a community around solar energy harvesting and conversion at Georgia Tech. He aims to integrate photovoltaic, photodetectors, and related devices into IMaT-related research; energize research in these areas at Georgia Tech at large; and consolidate the expertise of the many research groups working on or around photovoltaics\/photodetectors that will allow us to target interdisciplinary research funding opportunities. He also wants to provide an official link at Georgia Tech for industry partners to interact with faculty on photovoltaics, with a special aim at First Solar and QCells, the largest solar panel factory in the western hemisphere.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EAutonomous Research for Materials\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/mark-losego-0\u0022\u003EMark Losego\u003C\/a\u003E is an associate professor, MSE Faculty Fellow, and Dean\u2019s Education Innovation Professor in the School of Materials Science and Engineering. He holds a B.S. from Penn State University and an M.S. and Ph.D. from North Carolina State University, all in materials science and engineering. The Losego research lab focuses on materials processing to develop novel organic-inorganic hybrid materials and interfaces for microelectronics, sustainable energy devices, national security technologies, and advanced textiles.\u003C\/p\u003E\u003Cp\u003EAs an IMat initiative lead, Losego will help build a community at Georgia Tech that works toward developing autonomous and intelligent systems (robots) that execute physical experiments \u2014 processing, characterizing, and measuring the properties of materials \u2014 and then uses this knowledge to iteratively and intelligently execute subsequent experiments that produce new knowledge about process-structure-property relations, which inform materials discovery and design. He also hopes to learn what technical questions, training opportunities, or other incentives would compel Georgia Tech roboticists to collaborate with materials scientists to develop autonomous materials discovery systems and what the Georgia Tech materials community can do with emerging, inexpensive, and simple-to-use robotics systems to drive autonomous materials discovery.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMacromolecular Materials at Biotic and Abiotic Interfaces\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/valeria-milam\u0022\u003EValeria Tohver Milam\u003C\/a\u003E is an associate professor and MSE Faculty Fellow in MSE. She holds a B.S. from the University of Florida, and an M.S. and Ph.D. from the University of Illinois Urbana-Champaign, all in materials science and engineering. Her research interests are in DNA-based ligands for molecular, macromolecular, and mesoscale targets and bio-inspired colloidal assembly for multifunctional drug delivery vehicles and colloidal-based sensing. She also leads the \u003Ca href=\u0022\/\/efaidnbmnnnibpcajpcglclefindmkaj\/https:\/www.mse.gatech.edu\/sites\/default\/files\/groupoverview\/Milam%20Poster%20for%20Grad%20Fair_2020_v3%20-%20steven%20ochoa.pdf\u0022\u003EMilam Group\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EAs an IMat initiative lead, Milam will work to build an inclusive and active community across and beyond Georgia Tech to identify emerging research directions in macromolecular materials. Macromolecules, whether natural, bio-inspired, or completely synthetic, hold promise for enabling the next generation of materials to successfully perform at biotic as well as abiotic interfaces. Motivated by broad applications ranging from health to the environment, this initiative will bring together experimental and computational engineers and scientists focused on fundamental studies of macromolecular systems. The goal is to identify pathways to novel compositions, structures, synthesis, and characterization approaches to designing and implementing macromolecular materials.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMechanical Metamaterials\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/physics.gatech.edu\/user\/david-rocklin\u0022\u003ED. Zeb Rocklin\u003C\/a\u003E is an assistant professor in the School of Physics. He holds a B.Sc. in physics and economics from the California Institute of Technology and a Ph.D. in physics from the University of Illinois Urbana-Champaign. His research interests include soft condensed matter physics and adjacent fields like statistical physics, physics of living systems, and hard condensed matter with a particular focus on the relationship between the geometric structure of a system and its mechanical response. He leads the \u003Ca href=\u0022https:\/\/rocklin.gatech.edu\/\u0022\u003ERocklin Group\u003C\/a\u003E at Georgia Tech, which focuses on the structure and motion of soft materials.\u003C\/p\u003E\u003Cp\u003EAs an IMat initiative lead, Rocklin aims to bring faculty together within the Colleges of Sciences, Engineering, and Design to develop, characterize, and apply novel metamaterials \u2014 those with programmed structures above the atomic scale, blurring the line between material and machine. They can reveal fundamentally new physics while also incorporating new functionality for flexibility, strength, and intelligent processing of mechanical force and energy.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMaterials and Interfaces for Catalysis and Separations | Marta Hatzell\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/hatzell\u0022\u003EMarta Hatzell\u003C\/a\u003E is an associate professor in the George W. Woodruff School of Mechanical Engineering and the School of Chemical and Biomolecular Engineering. She earned a B.S., M.S., and Ph.D. in mechanical engineering and an M.Eng in environmental engineering from Pennsylvania State University. Her research group focuses on exploring sustainable catalysis and separations with applications from electrofuels and solar fuels to desalination.\u003C\/p\u003E\u003Cp\u003ETo mitigate issues related to climate change, there is a societal push to reach net zero carbon emissions by 2050. Thermal separations and catalysis are the primary sources of carbon emissions in industry today. Thus, there is a growing research focus on developing next-generation materials for net zero catalysis and separation processes. In year one, Hatzell aided in bringing together faculty for two center-level proposals through the NSF and DOE. She also helped run a workshop to disseminate information regarding the DOE Earthshot call. In her second year as an initiative lead, Hatzell will continue to bring faculty together who are working on materials-related issues aimed at decarbonizing industrial separations and catalysis, identify the bottlenecks for new materials, and assess their long-term impacts.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EQuantum Responses of Topological and Magnetic Matter | Zhigang Jiang\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/zhigang-jiang\u0022 title=\u0022https:\/\/research.gatech.edu\/zhigang-jiang\u0022\u003EZhigang Jiang\u003C\/a\u003E\u0026nbsp;is a professor in the School of Physics. He holds a B.S. in physics from Beijing University and a Ph.D. in physics from Northwestern University. He was also a postdoctoral research associate at Columbia University jointly with Princeton University and NHMFL from 2005 to 2008. His research interests are in the quantum transport and infrared optical properties of topological and magnetic materials. His current projects include infrared magneto-spectroscopy of topological semimetals, band-engineering topological phases in metamorphic InAsSb ordered alloys, and developing new materials for portable, real-time radiation monitoring devices.\u003C\/p\u003E\u003Cp\u003EThe goals of this initiative are twofold: first, to anchor, develop, and promote the community of researchers working on the fundamental magnetic properties of quantum materials. And second, to connect these researchers to application-centric initiatives led by other science or engineering colleagues across Georgia Tech. The focus will be on fundamental research progress in topological and magnetic matter and to communicate their importance, relevance, and significance to Georgia Tech\u2019s research audience. In addition, this initiative aims to leverage fundamental discoveries in quantum materials and explore how they can be translated in their own right into quantum systems with new functionalities for spintronics, qubits, and electronic devices.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMaterials in Extreme Environments | Richard W. Neu\u003C\/strong\u003E\u003Cbr\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/richard-neu\u0022\u003ERichard W. Neu\u003C\/a\u003E is a professor in the Woodruff School of Mechanical Engineering and the School of Materials Science and Engineering. His research involves the understanding and prediction of the fatigue behavior of materials and closely related topics, typically when the material must resist degradation and failure in harsh environments. He has investigated a broad range of structural materials, including steels, titanium alloys, nickel-base superalloys, metal matrix composites, molybdenum alloys, high entropy alloys, medical device materials, and solder alloys used in electronic packaging.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ENeu served as an initiative lead in 2022 and will continue in this role in 2023. He will continue to engage and build an interdisciplinary research community to address the complex issues associated with new materials in extreme environments. These environments include high temperature, high pressure, corrosive, wear\/erosion, cyclic loading, high-rate impacts, and radiation. In harsh environments, materials are continuously evolving and deforming, presenting a roadblock in advancing engineering systems due to the uncertainty in the performance of new materials or new process methods such as additive manufacturing. Managing this risk by predicting the uncertainties, both internal to the material (its structure feature) and external environment, is an important consideration that materials engineering must address.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EOrganic Photonics and Electronics | Jason Azoulay\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EJason Azoulay\u003C\/strong\u003E\u0026nbsp;is an associate professor and Georgia Research Alliance Vasser-Woolley Chair in Optoelectronics in the\u0026nbsp;School of Chemistry and Biochemistry, with a joint appointment in the\u0026nbsp;School of Materials Science and Engineering. He received his Ph.D. in chemistry from the University of California at Santa Barbara and performed postdoctoral studies at Sandia National Laboratories. His\u0026nbsp;\u003Ca href=\u0022https:\/\/azoulaygroup.org\/\u0022 title=\u0022https:\/\/azoulaygroup.org\/\u0022\u003Eresearch group\u003C\/a\u003E\u0026nbsp;unites strong synthetic foundations with physics, materials science, and engineering to synthesize and apply next-generation functional materials. Research within his group includes homogeneous catalysis applied to polymer synthesis; electronic, photonic, magnetic, and quantum materials; device fabrication and engineering; chemical sensing in complex aqueous environments for environmental monitoring; and the synthesis, application, and engineering of high-performance polymers across multiple technology platforms.\u003C\/p\u003E\u003Cp\u003EEmerging semiconductor materials open new pathways and opportunities to address critical national needs with global societal impacts in climate change, manufacturing, energy, healthcare, information science, consumer applications, defense-wide applications, and many others. Azoulay will work across multiple Georgia Tech centers, topical working groups, and institutes to create a unique materials research environment that spans traditionally siloed disciplines and materials classes. These efforts will advance the chemistry, materials science, and application of emerging photonic, optoelectronic, semiconductor, spin-based, and quantum technologies and raise the recognition of the materials innovations at Georgia Tech to the international stage.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EMaterials for Biomedical Systems | W. Hong Yeo\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/w-hong-yeo\u0022 target=\u0022_blank\u0022\u003EW. Hong Yeo\u003C\/a\u003E\u0026nbsp;is an associate professor and Woodruff Faculty Fellow in the Woodruff School of Mechanical Engineering and the director of the IEN \u003Ca href=\u0022https:\/\/chcie.me.gatech.edu\/\u0022\u003ECenter for Human-Centric Interfaces and Engineering\u003C\/a\u003E at Georgia Tech. He received a Ph.D. in mechanical engineering and genome sciences from the University of Washington and did a postdoctoral fellowship at the University of Illinois Urbana-Champaign. His research focuses on the areas of nano-microengineering, soft materials, molecular interactions, and biosystems, with an emphasis on nanomembrane bioelectronics and human-machine interfaces.\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EYeo led the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/materials-for-biomedical-systems\/\u0022\u003EMaterials for Biomedical Systems\u003C\/a\u003E initiative in 2022 and will continue in this role in 2023, where he will continue to foster collaborations between faculty, researchers, and clinicians to advance research in biomaterials and biomedical systems. In 2022, this initiative successfully hosted the MBS Day by inviting more than 80 people from academia, industry, and national labs to share knowledge, research ideas, and commercialization opportunities. Yeo believes collaborative research environments between materials science and engineering and medicine will result in fundamental breakthroughs in bioinspired materials, human-centered designs, and integrated biomedical systems, which will significantly advance human healthcare. He also hopes to enhance human health via multidisciplinary materials research to tackle the\u0026nbsp;\u003Ca href=\u0022http:\/\/www.engineeringchallenges.org\/challenges\/medicines.aspx\u0022 target=\u0022_blank\u0022\u003ENational Academy of Engineering Grand Challenge\u003C\/a\u003E\u0026nbsp;to engineer better medicines in collaboration with both academic and industry partners.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EEach initiative has a dedicated faculty lead to guide the initiative and prepare teams to compete for mid- and large-scale, multi-investigator research centers with academic, national laboratory, and industry partners. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Each initiative has a dedicated faculty lead to guide the initiative and prepare teams to compete for mid- and large-scale, multi-investigator research centers with academic, national laboratory, and industry partners. "}],"uid":"34760","created_gmt":"2023-08-24 21:01:29","changed_gmt":"2024-08-27 14:58:07","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-24T00:00:00-04:00","iso_date":"2023-08-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671479":{"id":"671479","type":"image","title":"IMat Initiatives include researchers from a variety of schools and research areas","body":null,"created":"1692911828","gmt_created":"2023-08-24 21:17:08","changed":"1692911914","gmt_changed":"2023-08-24 21:18:34","alt":"IMat Initiatives","file":{"fid":"254548","name":"Initiative lead-01.png","image_path":"\/sites\/default\/files\/2023\/08\/24\/Initiative%20lead-01.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/24\/Initiative%20lead-01.png","mime":"image\/png","size":4376912,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/24\/Initiative%20lead-01.png?itok=SYqILTwW"}}},"media_ids":["671479"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003C\/p\u003E","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669833":{"#nid":"669833","#data":{"type":"news","title":"Lauren Garten Receives Future of Semiconductors Award","body":[{"value":"\u003Cp\u003EThe U.S. National Science Foundation today announced 24 research and education projects with a total investment of $45.6 million \u2014 including funding from the \u0022CHIPS and Science Act of 2022\u0022 \u2014 to enable rapid progress in new semiconductor technologies and manufacturing as well as workforce development. The projects are supported by the \u003Ca href=\u0022https:\/\/new.nsf.gov\/funding\/opportunities\/national-science-foundation-future-semiconductors\u0022\u003ENSF\u0026nbsp;Future of Semiconductors (FuSe) program\u003C\/a\u003E through a public-private partnership spanning NSF and four companies: Ericsson, IBM, Intel and Samsung.\u003C\/p\u003E\u003Cp\u003E\u0022Our investment will help train the next generation of talent necessary to fill key openings in the semiconductor industry and grow our economy from the middle out and bottom up,\u0022 said NSF Director Sethuraman Panchanathan. \u0022By supporting novel, transdisciplinary research, we will enable breakthroughs in semiconductors and microelectronics and address the national need for a reliable, secure supply of innovative semiconductor technologies, systems and professionals.\u0022\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/new.nsf.gov\/news\/nsf-partners-invest-45-million-future\u0022\u003E\u003Cstrong\u003EView the announcement\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ENSF and partners invest $45 million in the future of semiconductors\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"NSF and partners invest $45 million in the future of semiconductors"}],"uid":"34760","created_gmt":"2023-09-21 18:29:17","changed_gmt":"2024-08-27 14:52:30","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-21T00:00:00-04:00","iso_date":"2023-09-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"670637":{"#nid":"670637","#data":{"type":"news","title":"Emory, Georgia Tech receives $7 million NIH grant to advance health technologies","body":[{"value":"\u003Cp\u003EThe National Institute of Biomedical Imaging and Bioengineering of the National Institutes of Health has awarded $7.8 million over the next five years to the Atlanta Center for Microsystems Engineered Point-of-Care Technologies (ACME POCT) to support inventors across the country in developing, translating and testing microsystems-based point-of-care technologies to help improve patient care.\u003C\/p\u003E\u003Cp\u003EPoint-of-care technologies are medical diagnostic tests performed outside the laboratory in close proximity to where a patient is receiving care. This allows health care providers to make clinical decisions more rapidly, conveniently and efficiently.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.acmepoct.org\/\u0022\u003EAMCE POCT\u003C\/a\u003E, which is one of six sites in the U.S. selected by NIH as part of the NIH Point-of-Care Technologies Research Network, was originally established in 2018 to foster the development and commercialization of microsystems (microchip-enabled, biosensor-based, microfluidic) diagnostic tests that can be used in places such as the home, community or doctor\u2019s office. The center played a pivotal role during the onset of the COVID-19 pandemic as the national test verification center to rapidly evaluate COVID-19 tests and help make them widely available.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/news.emory.edu\/stories\/2023\/10\/hs_acme_poct_funding_18-10-2023\/story.html\u0022\u003ERead the full announcement\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003EThe National Institute of Biomedical Imaging and Bioengineering of the National Institutes of Health has awarded $7.8 million over the next five years to the Atlanta Center for Microsystems Engineered Point-of-Care Technologies to support inventors across the country in developing, translating and testing microsystems-based point-of-care technologies.\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The National Institute of Biomedical Imaging and Bioengineering of the National Institutes of Health has awarded $7.8 million over the next five years to the Atlanta Center for Microsystems Engineered Point-of-Care Technologies."}],"uid":"34760","created_gmt":"2023-10-24 20:30:45","changed_gmt":"2024-08-27 14:51:51","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-10-18T00:00:00-04:00","iso_date":"2023-10-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672165":{"id":"672165","type":"image","title":"ACME POCT NIH Grant","body":null,"created":"1698179773","gmt_created":"2023-10-24 20:36:13","changed":"1698179995","gmt_changed":"2023-10-24 20:39:55","alt":"ACME POCT Image","file":{"fid":"255355","name":"ACME-POCT.png","image_path":"\/sites\/default\/files\/2023\/10\/24\/ACME-POCT.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/10\/24\/ACME-POCT.png","mime":"image\/png","size":864993,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/10\/24\/ACME-POCT.png?itok=gHM_xxvc"}}},"media_ids":["672165"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"670533":{"#nid":"670533","#data":{"type":"news","title":"$3M NSF Investment Will Create New Semiconductor, 3D Printing Materials","body":[{"value":"\u003Cp\u003EResearchers at Georgia Tech will work to develop new controllable materials for 3D printing, electronics made from plastics, and semiconductors that convert infrared light into electrical signals as part of the National Science Foundation\u2019s (NSF) efforts to create advanced materials.\u003C\/p\u003E\u003Cp\u003EAltogether, the agency is \u003Ca href=\u0022https:\/\/new.nsf.gov\/news\/nsf-invests-72m-design-revolutionary-materials\u0022\u003Einvesting $3 million in the three projects\u003C\/a\u003E led by faculty members in the \u003Ca href=\u0022https:\/\/me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E (ME) and the \u003Ca href=\u0022https:\/\/mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering\u003C\/a\u003E (MSE). Georgia Tech is a contributing partner on a fourth project led by Notre Dame researchers to explore materials that can be \u003Ca href=\u0022https:\/\/www.nsf.gov\/awardsearch\/showAward?AWD_ID=2324172\u0022\u003Eswitched from an insulator to a metal with an external trigger\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EThe new awards are part of NSF\u2019s Designing Materials to Revolutionize and Engineer our Future (DMREF) program, which is intended to discover and create advanced materials twice as fast and at a fraction of the cost of traditional research methods.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/10\/3m-nsf-investment-will-create-new-semiconductor-3d-printing-materials\u0022\u003E\u003Cstrong\u003ERead more about the researchers\u0027 plans on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EME, MSE researchers lead 3 projects in agency\u2019s new round of advanced materials grants.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"ME, MSE researchers lead 3 projects in agency\u2019s new round of advanced materials grants."}],"uid":"27446","created_gmt":"2023-10-20 13:11:32","changed_gmt":"2024-08-27 14:41:36","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-10-19T00:00:00-04:00","iso_date":"2023-10-19T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672110":{"id":"672110","type":"image","title":"NSF Materials Grants - Azoulay, Stingelin, Qi composite","body":"\u003Cp\u003EFrom left, researchers Jason Azoulay, Natalie Stingelin, and H. Jerry Qi have received grants from the National Science Foundation to create advanced materials for semiconductors and 3D printing.\u003C\/p\u003E\r\n","created":"1697807502","gmt_created":"2023-10-20 13:11:42","changed":"1697807502","gmt_changed":"2023-10-20 13:11:42","alt":"Headshots of Jason Azoulay, Natalie Stingline, Jerry Qi.","file":{"fid":"255297","name":"NSF-Materials-Grants-Azoulay-Stingelin-Qi-composite-t.jpg","image_path":"\/sites\/default\/files\/2023\/10\/20\/NSF-Materials-Grants-Azoulay-Stingelin-Qi-composite-t.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/10\/20\/NSF-Materials-Grants-Azoulay-Stingelin-Qi-composite-t.jpg","mime":"image\/jpeg","size":612138,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/10\/20\/NSF-Materials-Grants-Azoulay-Stingelin-Qi-composite-t.jpg?itok=iXta-NPs"}}},"media_ids":["672110"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"594","name":"college of engineering"},{"id":"362","name":"National Science Foundation"},{"id":"84281","name":"advanced materials"},{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003Cbr\u003ECollege of Engineering\u003C\/p\u003E","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671144":{"#nid":"671144","#data":{"type":"news","title":"New Interdisciplinary Research Institute to Launch This Summer","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) and the Institute for Materials (IMat) have announced they will combine to form a new Interdisciplinary Research Institute (IRI) set to begin operations on July 1, 2024.\u003C\/p\u003E\u003Cp\u003EThe new IRI, which has yet to be named, will explore the vast scientific, technological, societal, and economic impacts of innovative materials and devices, as well as foster their incorporation into systems that improve the human condition in areas such as information and communication technologies, \u003Ca href=\u0022https:\/\/www.epa.gov\/smm\/basic-information-about-built-environment\u0022\u003Ethe built environment\u003C\/a\u003E, and human well-being and performance.\u003C\/p\u003E\u003Cp\u003E\u201cThe new IRI will not only combine the strengths of IEN and IMat, but will also allow us to further expand faculty representation from across the Institute,\u201d said Julia Kubanek, vice president of Interdisciplinary Research at Georgia Tech. \u201cAs we look at the future of research in these areas, expanding inclusivity of researchers from the liberal arts, design, business, and basic sciences will allow us to better meet the education, workforce development, and innovation needs of Georgia, the U.S., and the world.\u201d\u003C\/p\u003E\u003Cp\u003EThe new IRI will strengthen Georgia Tech\u2019s role in national focus areas such as the \u003Ca href=\u0022https:\/\/www.nano.gov\/sites\/default\/files\/pub_resource\/NNI-2021-Strategic-Plan.pdf\u0022\u003ENational Nanotechnology Initiative\u003C\/a\u003E, the \u003Ca href=\u0022https:\/\/www.mgi.gov\/sites\/default\/files\/documents\/MGI-2021-Strategic-Plan.pdf\u0022\u003EMaterials Genome Initiative\u003C\/a\u003E, and the \u003Ca href=\u0022https:\/\/new.nsf.gov\/chips#:~:text=About%20the%20%22CHIPS%20and%20Science%20Act%22\u0026amp;text=On%20August%209%2C%202022%2C%20President,use%2Dinspired%2C%20translational%20research.\u0022\u003ECHIPS and Science Act\u003C\/a\u003E, as well as identify and shape future priorities.\u003C\/p\u003E\u003Cp\u003ECore competencies of the new IRI will include:\u003C\/p\u003E\u003Cul\u003E\u003Cli\u003EFundamental science to comprehend and control matter from the nanoscale to the mesoscale.\u003C\/li\u003E\u003Cli\u003EThe synthesis, processing, and characterization of materials to achieve desired properties.\u003C\/li\u003E\u003Cli\u003EThe design and fabrication of novel devices and components with enhanced capabilities.\u003C\/li\u003E\u003Cli\u003EThe integration of materials, devices, and components into larger systems.\u003C\/li\u003E\u003Cli\u003EComputing, modeling, simulation, and big data to advance progress at all length scales.\u003C\/li\u003E\u003Cli\u003EIntegration into all stages of research, from conceptualization to impact assessment, of economic, business, and social factors to ensure sustainable and equitable benefits.\u003C\/li\u003E\u003C\/ul\u003E\u003Cp\u003E\u201cIEN and IMat have worked closely together for years, and there is overlap in the research areas we cover,\u201d said Eric Vogel, IMat\u2019s executive director. \u201cThis is an opportunity for us to build on IEN and IMat\u2019s individual successes and our strong record of collaboration to create something even more exceptional.\u201d\u003C\/p\u003E\u003Cp\u003EThe new IRI will strengthen the state-of-the-art core cleanroom and characterization facilities, providing researchers with the tools and resources necessary for cutting-edge interdisciplinary research. These facilities will continue to serve both Georgia Tech and, through its leadership within the \u003Ca href=\u0022https:\/\/nnci.net\/\u0022\u003ENSF National Nanotechnology Coordinated Infrastructure\u003C\/a\u003E, the nation. Recognizing the importance of nurturing talent, it will champion education and outreach programs to inspire the next generation and equip the workforce with the skills necessary to collaborate and communicate across multiple disciplines.\u003C\/p\u003E\u003Cp\u003E\u201cThis is an exciting time to look to the future,\u201d said Michael Filler, interim executive director of IEN. \u201cWe highly value the dedication and hard work of our staff and research faculty, who have been crucial to the success of IEN and IMat and will be the backbone of this new organization. We look forward to creating something exceptional in the coming months.\u201d\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology and the Institute for Materials have announced they will combine to form a new Interdisciplinary Research Institute set to begin operations on July 1, 2024.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Institute for Electronics and Nanotechnology and the Institute for Materials have announced they will combine to form a new Interdisciplinary Research Institute set to begin operations on July 1, 2024. "}],"uid":"34760","created_gmt":"2023-11-17 15:06:17","changed_gmt":"2024-08-27 14:41:17","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-17T00:00:00-05:00","iso_date":"2023-11-17T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670830":{"id":"670830","type":"image","title":"Marcus Nanotechnology Building","body":null,"created":"1684353022","gmt_created":"2023-05-17 19:50:22","changed":"1684353077","gmt_changed":"2023-05-17 19:51:17","alt":"Marcus Nanotechnology Building","file":{"fid":"253766","name":"14C10042-P1-117.jpg","image_path":"\/sites\/default\/files\/2023\/05\/17\/14C10042-P1-117.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/17\/14C10042-P1-117.jpg","mime":"image\/jpeg","size":2902337,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/17\/14C10042-P1-117.jpg?itok=Albu8ej-"}}},"media_ids":["670830"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ELaurie Haigh\u003Cbr\u003Elaurie.haigh@research.gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"671297":{"#nid":"671297","#data":{"type":"news","title":"Sensor Fabric, Big Data Could Help End Pressure Injuries for Wheelchair Users","body":[{"value":"\u003Cp\u003EAt least half of veterans with spinal cord injuries will develop sores on their skin from the unrelieved pressure of sitting for long periods of time in a wheelchair. It\u2019s a constant worry, because these skin ulcers can greatly limit patients\u2019 mobility.\u003C\/p\u003E\u003Cp\u003E\u201cPressure injuries directly impact the veteran\u2019s quality of life, because the medical provider will order the veteran to bed rest for weeks and potentially months,\u201d said Kim House, a physician and medical director of the Spinal Cord Injury Clinic at the Atlanta Veterans Administration Healthcare System. \u201cAt every clinic visit, I provide education for pressure injury prevention.\u201d\u003C\/p\u003E\u003Cp\u003EHouse could one day have a new tool to offer her patients, thanks to researchers in the Georgia Tech College of Engineering, and wheelchair-bound veterans are just the beginning.\u003C\/p\u003E\u003Cp\u003EMaterials engineers are developing new fabric sensors and a customized wheelchair system that assesses and automatically eases pressure at contact points to prevent injuries from developing in the first place.\u003C\/p\u003E\u003Cp\u003E\u201cWe have three key issues happening: First, continuous pressure. Second, moisture, because when you\u0027re sitting in the same spot, you tend to sweat and generate moisture. And third is shear. When you try to move somebody, the skin shears. That perfect combination is what causes pressure injuries,\u201d said \u003Ca href=\u0022https:\/\/mse.gatech.edu\/people\/sundaresan-jayaraman\u0022\u003ESundaresan Jayaraman\u003C\/a\u003E, professor in the \u003Ca href=\u0022https:\/\/mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering\u003C\/a\u003E (MSE). \u201cWe believe we have a solution to the perfect storm of pressure, moisture and shear, which means the user\u2019s quality of life is going to get better.\u201d\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/11\/sensor-fabric-big-data-could-help-end-pressure-injuries-wheelchair-users\u0022\u003E\u003Cstrong\u003EGet the full story on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EMSE researchers are using a Catalyst Award from the National Academy of Medicine to develop a pressure-relieving sensor system that could also be used in hospital beds.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"MSE researchers are using a Catalyst Award from the National Academy of Medicine to develop a pressure-relieving sensor system that could also be used in hospital beds."}],"uid":"27446","created_gmt":"2023-11-29 14:53:14","changed_gmt":"2024-08-27 14:40:29","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-29T00:00:00-05:00","iso_date":"2023-11-29T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672467":{"id":"672467","type":"image","title":"Wheelchair Pressure Injuries - Sundaresan Jayaraman \u0026 Sungmee Park","body":"\u003Cp\u003ESundaresan Jayaraman (left) looks at pressure data from fabric sensors he developed with Sungmee Park, who is seated in their prototype wheelchair system. (Photo: Candler Hobbs)\u003C\/p\u003E\r\n","created":"1701269721","gmt_created":"2023-11-29 14:55:21","changed":"1701269721","gmt_changed":"2023-11-29 14:55:21","alt":"  Sundaresan Jayaraman (left) looks at pressure data from fabric sensors he developed with Sungmee Park, who is seated in their prototype wheelchair system. (Photo: Candler Hobbs)","file":{"fid":"255706","name":"_MG_6310(edited).jpg","image_path":"\/sites\/default\/files\/2023\/11\/29\/_MG_6310%28edited%29.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/11\/29\/_MG_6310%28edited%29.jpg","mime":"image\/jpeg","size":7474105,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/11\/29\/_MG_6310%28edited%29.jpg?itok=KCFcnewS"}}},"media_ids":["672467"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"125711","name":"materials science and engineeering"},{"id":"594","name":"college of engineering"},{"id":"169344","name":"Sundaresan Jayaraman"},{"id":"193313","name":"Sungmee Park"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003Cbr\u003ECollege of Engineering\u003C\/p\u003E","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671426":{"#nid":"671426","#data":{"type":"news","title":"New IEN Center to Research Wearable Technologies","body":[{"value":"\u003Cp\u003EA new research center in the Institute for Electronics and Nanotechnology (IEN) will help bring together human-centered bioelectronics technology research to improve human healthcare and expand human-machine interface technologies.\u003C\/p\u003E\u003Cp\u003EThe Wearable Intelligent Systems and Healthcare (WISH) Center will work to push innovation in wearable sensors and electronics technologies. Focus areas of the center will include electronics, artificial intelligence, biological science, material sciences, manufacturing, system design, and medical engineering.\u003C\/p\u003E\u003Cp\u003E\u201cWe are excited by the promise of bioelectronics improving human health and all the exciting science engineering that is required to make it a reality,\u201d said Michael Filler, interim executive director of IEN.\u003C\/p\u003E\u003Cp\u003EWISH is directed by \u003Ca href=\u0022https:\/\/research.gatech.edu\/w-hong-yeo\u0022\u003EW. Hong Yeo\u003C\/a\u003E, associate professor in Georgia Tech\u2019s George W. Woodruff School of Mechanical Engineering and the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/yuhang-hu\u0022\u003EYuhang Hu\u003C\/a\u003E, associate professor in the School of Chemical and Biomolecular Engineering at Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u201cI founded WISH to bring together Georgia Tech\u2019s expertise in various disciplines and to create opportunities for developing wearable bioelectronics and human-machine technologies leading to better lives and communities,\u201d said Yeo.\u003C\/p\u003E\u003Cp\u003EYeo\u2019s research focuses on developing soft sensors, electronics and robotics for health monitoring and disease diagnosis at the intersection of human and machine interaction. Other researchers in the center represent disciplines from across Georgia Tech\u2019s Colleges of Engineering, Computing, Sciences, Design, and Liberal Arts; Emory University; and Children\u2019s Healthcare of Atlanta.\u003C\/p\u003E\u003Cp\u003EWISH will be one of IEN\u2019s 10 strategic research centers, along with the \u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E, a graduated NSF Engineering Research Center focusing on advanced packaging using 2.5D and 3D heterogeneous integration technologies, and the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/gedc\/\u0022\u003EGeorgia Electronic Design Center, \u003C\/a\u003Eone of the world\u2019s largest university-based semiconductor research centers. WISH is an evolution of the Center for Human-Centric Interfaces and Engineering, which received seed funding from IEN to focus on collaborative research for human-centered design, biofeedback control, and integrated nanosystems to advance human-machine interaction in the scope of healthcare.\u003C\/p\u003E\u003Cp\u003EIEN supports early-stage research in underfunded research areas that span all disciplines in science and engineering through its seed grant programs, which focus on research in biomedicine, electronics, optoelectronics and photonics, and energy applications.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThe Wearable Intelligent Systems and Healthcare (WISH) Center will work to push innovation in wearable sensors and electronics technologies. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The Wearable Intelligent Systems and Healthcare (WISH) Center will work to push innovation in wearable sensors and electronics technologies. "}],"uid":"35272","created_gmt":"2023-12-05 16:57:45","changed_gmt":"2024-08-27 14:40:15","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-12-05T00:00:00-05:00","iso_date":"2023-12-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672505":{"id":"672505","type":"image","title":"flexible-health-monitor-georgia-tech_4-1024x576.jpeg","body":null,"created":"1701795589","gmt_created":"2023-12-05 16:59:49","changed":"1701795589","gmt_changed":"2023-12-05 16:59:49","alt":"Flexible health monitor created by Georgia Tech Researchers","file":{"fid":"255754","name":"flexible-health-monitor-georgia-tech_4-1024x576.jpeg","image_path":"\/sites\/default\/files\/2023\/12\/05\/flexible-health-monitor-georgia-tech_4-1024x576.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/12\/05\/flexible-health-monitor-georgia-tech_4-1024x576.jpeg","mime":"image\/jpeg","size":62039,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/12\/05\/flexible-health-monitor-georgia-tech_4-1024x576.jpeg?itok=dYaYSS4s"}},"637803":{"id":"637803","type":"image","title":"W. Hong Yeo, assistant professor, George W. Woodruff School of Mechanical Engineering ","body":null,"created":"1597255420","gmt_created":"2020-08-12 18:03:40","changed":"1597255420","gmt_changed":"2020-08-12 18:03:40","alt":"","file":{"fid":"242577","name":"W. Hong Yeo.png","image_path":"\/sites\/default\/files\/images\/W.%20Hong%20Yeo.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/W.%20Hong%20Yeo.png","mime":"image\/png","size":128577,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/W.%20Hong%20Yeo.png?itok=mA8iDG4Y"}}},"media_ids":["672505","637803"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"},{"id":"186870","name":"go-imat"},{"id":"188087","name":"go-irim"},{"id":"187582","name":"go-ibb"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E, Research Communications\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"email":["Amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670880":{"#nid":"670880","#data":{"type":"news","title":"IMat Initiative Lead Q\u0026A: Juan-Pablo Correa-Baena","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/juan-pablo-correa-baena\u0022\u003E\u003Cstrong\u003EJuan-Pablo Correa-Baena\u003C\/strong\u003E\u0026nbsp;\u003C\/a\u003Eleads the Materials for Solar Energy Harvesting and Conversion research initiative for the\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/materials\u0022\u003EInstitute for Materials\u003C\/a\u003E (IMat)\u0026nbsp;and \u003Ca href=\u0022https:\/\/research.gatech.edu\/energy\u0022\u003EStrategic Energy Institute\u003C\/a\u003E at Georgia Tech. In this role, he is working to create a community around solar energy harvesting and conversion at Georgia Tech. He aims to integrate photovoltaic, photodetectors, and related devices into IMaT-related research; energize research in these areas at Georgia Tech at large; and consolidate the expertise of the many research groups working on or around photovoltaics\/photodetectors that will allow researchers to target interdisciplinary research funding opportunities. He is also an assistant professor and the Goizueta Junior Faculty Rotating Chair in the School of Materials Science and Engineering.\u003C\/p\u003E\u003Cp\u003EIn this brief Q\u0026amp;A, Correa-Baena discusses his research focus, how it relates to materials research, and the impact of this initiative.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EWhat is your field of expertise and at what point in your life did you first become interested in this area?\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EI am an expert in materials for energy harvesting and conversion. I first became interested in this topic when I was an undergraduate student and started thinking about the future of energy production.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EWhat questions or challenges sparked your current materials research?\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EI was born and raised in a country where fossil fuels dominate the energy production landscape, yet where renewables are readily available. Colombia is a large producer of oil but also boasts a huge potential for solar energy production. This juxtaposition always puzzled me growing up. As a researcher in this field, I want to ensure that all countries around the world have access to solar energy, by helping lower deployment cost.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EWhy is your initiative important to the development of Georgia Tech\u2019s Materials research strategy?\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EThere is a growing need to expand our research footprint at Georgia Tech with regard to photovoltaics. This is especially important with the impact of the photovoltaic industry presence in Georgia. My initiative is focusing on galvanizing activities around photovoltaic research at Georgia Tech that can benefit our footprint globally as well as locally with industry partners.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EWhat are the broader global and social benefits of the research you and your team conduct?\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EThe main benefit of the research we do is to the photovoltaic industry, which we hope to engage through cutting-edge research at Georgia Tech.\u003C\/p\u003E\u003Cp\u003E\u003Cstrong\u003EWhat are your plans for engaging a wider Georgia Tech faculty pool with IMat research?\u003C\/strong\u003E\u003C\/p\u003E\u003Cp\u003EI am planning to organize an internal workshop, as well as a session on photovoltaics in the Next Generation of Energy Materials Symposium to be held in March 2024 at Georgia Tech. In addition, as part of my efforts to engage the Georgia Tech community at large, I am working to create a website that will connect the Georgia Tech community working towards advancing photovoltaic capabilities for future manufacturing advancements.\u0026nbsp;\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ECorrea-Baena leads the Materials for Solar Energy Harvesting and Conversion research initiative for the Institute for Materials (IMat) and Strategic Energy Institute at Georgia Tech.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Correa-Baena leads the Materials for Solar Energy Harvesting and Conversion research initiative for the Institute for Materials (IMat) and Strategic Energy Institute at Georgia Tech."}],"uid":"34760","created_gmt":"2023-11-03 19:34:45","changed_gmt":"2024-08-27 14:39:10","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-03T00:00:00-04:00","iso_date":"2023-11-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672263":{"id":"672263","type":"image","title":"Juan-Pablo Correa-Baena","body":null,"created":"1699039995","gmt_created":"2023-11-03 19:33:15","changed":"1699040057","gmt_changed":"2023-11-03 19:34:17","alt":"JuanpBablo CIrrea-Baena in a lab holding a chip","file":{"fid":"255474","name":"Juan-Pablo Correa-Baena.png","image_path":"\/sites\/default\/files\/2023\/11\/03\/Juan-Pablo%20Correa-Baena.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/11\/03\/Juan-Pablo%20Correa-Baena.png","mime":"image\/png","size":425873,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/11\/03\/Juan-Pablo%20Correa-Baena.png?itok=Drv2otre"}}},"media_ids":["672263"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto: amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"675570":{"#nid":"675570","#data":{"type":"news","title":"Secure Hardware VIP wins Best Paper Award at International Computing Conference","body":[{"value":"\u003Cp\u003EA group of Georgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) students in the \u003Ca href=\u0022https:\/\/vip.gatech.edu\/teams\/vpm\u0022\u003ESecure Hardware Vertically Integrated Projects \u003C\/a\u003E(VIP) group won the Best Paper Award at the \u003Ca href=\u0022https:\/\/mecoconference.me\/meco2024\/\u0022\u003EMediterranean Conference on Embedded Computing\u003C\/a\u003E (MECO) in Montenegro in June.\u003C\/p\u003E\u003Cp\u003EThe paper was co-authored by all undergraduate students, with guidance from ECE associate professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/vincent-j-mooney\u0022\u003EVincent Mooney\u003C\/a\u003E. Three students were from ECE: Gabrielle Calderon, Andrew Hamby, and Valeriia Rubanova. Two others were from the \u003Ca href=\u0022https:\/\/scs.gatech.edu\/\u0022\u003ESchool of Computer Science\u003C\/a\u003E: Olivia Blanchette and Jing Liu.\u003C\/p\u003E\u003Cp\u003E\u201cThis is the first time I have ever seen an undergraduate team take an unknown research problem with no external funding or relationship to ongoing graduate research and turn the idea into a paper which receives an award,\u201d Mooney said.\u003C\/p\u003E\u003Cp\u003EThe paper titled, \u201cLinguistic Encryption for Underwater Communication,\u201d examined how to use a stream cipher to encode short-fixed length sounds for a swarm of robots to communicate with each other deep under water in a cryptographically secure fashion.\u003C\/p\u003E\u003Cp\u003EThe idea was to \u0022translate\u0022 simple commands into the constructed Toki Pona language, which are then mapped to dolphin noises. The dynamic nature of the constructed language made translation and decryption very hard without the stream cipher seed, thus creating a very secure communication system.\u003C\/p\u003E\u003Cp\u003EThe technology has uses in search and rescue capacities as well as general underwater topological surveying.\u003C\/p\u003E\u003Cp\u003EThe paper was selected out of over 100 papers published in the conference.\u003C\/p\u003E\u003Cp\u003EAll the research was done by Mooney\u2019s Secure Hardware VIP group with no outside source of funding.\u003C\/p\u003E\u003Cp\u003EThe \u003Ca href=\u0022https:\/\/vip.gatech.edu\/\u0022\u003EVIP program\u003C\/a\u003E gives undergraduate students the chance to conduct ambitious, long-term, large-scale, multidisciplinary research projects under the guidance of faculty members, giving them substantial real-world experience.\u003C\/p\u003E\u003Cp\u003E\u201cThe VIP program allowed me to explore my interdisciplinary academic interests with the depth of a full research project alongside other highly motivated students,\u201d Calderon said. \u201cEven before this award, the experience I gained working on this project made it extremely worthwhile, especially because we had the flexibility to pursue a somewhat unorthodox idea.\u201d\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe undergraduate research group presented experiments showing how encrypted sounds can help swarms of unmanned autonomous vehicles securely communicate underwater.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The undergraduate research group presented experiments showing how encrypted sounds can help swarms of unmanned autonomous vehicles securely communicate underwater."}],"uid":"36558","created_gmt":"2024-07-23 16:39:52","changed_gmt":"2024-07-24 18:43:02","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-07-23T00:00:00-04:00","iso_date":"2024-07-23T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674409":{"id":"674409","type":"image","title":"Mooney Undergrad VIP Group.jpg","body":"\u003Cp\u003E(From left to right) Olivia Blanchette (CS), Gabrielle Calderon (ECE), Andrew Hamby (ECE), Valeriia Rubanova (ECE) and Vincent Mooney (ECE).\u0026nbsp; Coauthor Jing Liu (CS) not pictured.\u003C\/p\u003E","created":"1721752819","gmt_created":"2024-07-23 16:40:19","changed":"1721752819","gmt_changed":"2024-07-23 16:40:19","alt":"Mooney Undergrad VIP Group","file":{"fid":"257914","name":"Mooney Undergrad VIP Group.jpg","image_path":"\/sites\/default\/files\/2024\/07\/23\/Mooney%20Undergrad%20VIP%20Group.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/07\/23\/Mooney%20Undergrad%20VIP%20Group.jpg","mime":"image\/jpeg","size":1413973,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/07\/23\/Mooney%20Undergrad%20VIP%20Group.jpg?itok=0PVPVC3J"}}},"media_ids":["674409"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"69381","name":"best paper"},{"id":"28061","name":"Linguistics"},{"id":"30661","name":"VIP"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"675452":{"#nid":"675452","#data":{"type":"news","title":"HBCU CHIPS Network Defines Organization\u0027s Strategic Direction at Atlanta Meeting ","body":[{"value":"\u003Cdiv\u003E\u003Cp\u003E\u003Cem\u003EThe consortium of historically Black educational institutions and other stakeholders convened to establish the organization\u2019s strategic direction and governance model. The goal is to foster a diverse workforce and drive innovation in the U.S. semiconductor industry.\u003C\/em\u003E\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EIn the heart of Atlanta, members of the \u003Ca href=\u0022https:\/\/www.commerce.gov\/news\/blog\/2024\/02\/commerce-secretary-gina-raimondo-hosts-launch-hbcu-chips-network-build-skilled\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EHBCU CHIPS Network\u003C\/a\u003E gathered for a pivotal meeting on June 3-4, 2024. Taking place at Georgia Institute of Technology\u2019s campus, 30-plus representatives from historically Black colleges and universities (HBCUs), historically Black community colleges (HBCCs), nonprofit organizations, and the Institute convened to chart a new course for the microelectronics industry.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAt the event, co-hosted by Clark Atlanta University (CAU) and Georgia Tech, attendees worked to establish a strategic direction for the HBCU CHIPS Network, as well as a formal operational and governance model \u2014 with the principal goals of enhancing research collaboration,\u0026nbsp;positioning for CHIPS Act funding, and empowering a diverse, inclusive workforce that can meet the needs of the growing U.S. semiconductor sector.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EDietra Trent, executive director for the White House Initiative on HBCUs, attended the first day\u2019s sessions. \u003Ca href=\u0022https:\/\/research.gatech.edu\/frances-williams\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EFrances Williams\u003C\/a\u003E, vice president for Research and Sponsored Programs at CAU and one of the organizers and co-leaders of the HBCU CHIPS Network, welcomed the attendees and outlined the meeting agenda.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EOver two days of discussion, facilitated by Michael Wilkinson, the founder of Leadership Strategies, members reframed the Network\u2019s vision as follows: \u201cThe HBCU CHIPS Network is envisioned as a research and education consortium that serves as the nexus of collaboration and cooperation between HBCUs, government agencies, academia, and industry \u2026 Through a multidisciplinary approach, the Network will facilitate fulfilling talent pipelines to grow the workforce of the future, research innovations, resolving longstanding disparities in facilities, building out domestic capacity, and providing shared accessibility across the Network stakeholders.\u201d \u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003EThe group also established the Network\u2019s governance and operational model, including its leadership and organizational structure.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EAccording to \u003Ca href=\u0022https:\/\/research.gatech.edu\/george-white\u0022\u003EGeorge White\u003C\/a\u003E, senior director for Strategic Partnerships at Georgia Tech and an HBCU graduate, \u201cThe outcome from this workshop has the potential to transform HBCU research collaboration and innovation well beyond the CHIPS Act. Additionally, the Network will provide outreach to community colleges, veterans, and k-12 students, empowering a diverse and inclusive workforce that leverages research innovations, including experiential learning opportunities across all stakeholder groups.\u201d\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003ENationally, the network comprises five regions: the Southeast, the mid-Atlantic and South Atlantic, the Midwest, and the Southwest. Each region will have representation commensurate with their competencies and capacities in microelectronics. Selected board members within each region will constitute the leadership structure. The Network will have affiliate members that include nonprofit organizations and academic institutions like Georgia Tech.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp\u003EFurther, the Network identified several committees and working groups, including technical advisory, education and workforce, innovation and entrepreneurship, contracting, facilities access, communication and tech transfer, and assessment and evaluation. These committees will meet regularly and communicate status and outcomes to the larger Network.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003EThe Network plans to host an annual conference highlighting research from participating HBCUs\/HBCCs and industry partners, and the event will include a student-focused career fair.\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E\u003Cdiv\u003E\u003Cp lang=\u0022EN-US\u0022\u003E\u003Cem\u003EThe HBCU CHIPS Network thanks ASML, Micron, Microsoft, and Synopsis for their sponsorship.\u0026nbsp;\u003C\/em\u003E\u0026nbsp;\u003C\/p\u003E\u003C\/div\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cem\u003EThe consortium of historically Black educational institutions and other stakeholders convened to establish the organization\u2019s strategic direction and governance model. The goal is to foster a diverse workforce and drive innovation in the U.S. semiconductor industry.\u003C\/em\u003E\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The consortium of historically Black educational institutions and other stakeholders convened to establish the organization\u2019s strategic direction and governance model. The goal is to foster a diverse workforce and drive innovation in the U.S. semiconducto"}],"uid":"28766","created_gmt":"2024-07-14 22:04:33","changed_gmt":"2024-07-15 23:27:30","author":"Shelley Wunder-Smith","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-07-14T00:00:00-04:00","iso_date":"2024-07-14T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674355":{"id":"674355","type":"image","title":"HBCU group photo","body":null,"created":"1721084618","gmt_created":"2024-07-15 23:03:38","changed":"1721084645","gmt_changed":"2024-07-15 23:04:05","alt":"Attendees of the recent HBCU CHIPS Network meeting, where the Network\u0027s strategic direction and goals were determined.","file":{"fid":"257856","name":"HBCU-updated-image_0.jpg","image_path":"\/sites\/default\/files\/2024\/07\/15\/HBCU-updated-image_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/07\/15\/HBCU-updated-image_0.jpg","mime":"image\/jpeg","size":762214,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/07\/15\/HBCU-updated-image_0.jpg?itok=0Gt4vUUg"}},"674356":{"id":"674356","type":"video","title":"Overview of the HBCU CHIPS Network Led by Georgia Tech","body":"\u003Cp\u003EThe HBCU CHIPS Network engages the HBCU community in a comprehensive plan to support the manufacture of microelectronic products with the benefit that this strategy will effectively reach underserved communities across the national landscape. This effort provides an opportunity to design and implement innovative approaches that optimize resources across diverse institutions\u2014and with lasting impacts for traditionally untapped citizens and communities.\u003C\/p\u003E","created":"1721085493","gmt_created":"2024-07-15 23:18:13","changed":"1721086092","gmt_changed":"2024-07-15 23:28:12","video":{"youtube_id":"oYXt6ZOWje0","video_url":"https:\/\/youtu.be\/oYXt6ZOWje0"}}},"media_ids":["674355","674356"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ETaiesha Smith, Sr. Program Manager, HBCU-MSI\u0026nbsp;Research Partnerships\u003C\/p\u003E\u003Cp\u003Etaiesha.smith@gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"675436":{"#nid":"675436","#data":{"type":"news","title":"Saligram Receives High Recognition for Computing Memory Research at Design Automation Conference","body":[{"value":"\u003Cp\u003EResearch from Georgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E Ph.D. candidate Rakshith Saligram received high recognition at the \u003Ca href=\u0022https:\/\/www.dac.com\/\u0022\u003EDesign Automation Conference\u003C\/a\u003E in San Francisco, Calif. in June.\u003C\/p\u003E\u003Cp\u003ESaligram\u2019s paper, \u201cCryogenic CMOS for High Performance Computing,\u0022 won third place in the conference\u2019s \u003Ca href=\u0022https:\/\/www.dac.com\/Attend\/Students-Scholarships\/PhD-Forum\u0022\u003EPh.D. Forum\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003ECryogenic CMOS for high performance computing is a radical idea that proposes the use of ultra-low temperature devices (~77K\/-196C) for server and cloud computing applications. It has gained traction due to the soaring energy costs of data center operation.\u003C\/p\u003E\u003Cp\u003EThe research Rakshith presented at the conference focused on the modeling of devices and interconnects, design technology co-optimization, benchmarking and design of memory macro test chips to demonstrate the system level benefits of cryo-CMOS.\u003C\/p\u003E\u003Cp\u003EThe Ph.D. Forum is a poster session hosted by the \u003Ca href=\u0022https:\/\/www.acm.org\/\u0022\u003EAssociation for Computing Machinery\u003C\/a\u003E \u003Ca href=\u0022https:\/\/www.acm.org\/special-interest-groups\/sigs\/sigda\u0022\u003ESpecial Interest Group on Design Automation\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/ieee-ceda.org\/\u0022\u003EIEEE Council on Electronic Design Automation\u003C\/a\u003E for Ph.D. students to present and discuss their dissertation research with people in the electronic design automation community.\u003C\/p\u003E\u003Cp\u003EIt has become one of the premier forums for Ph.D. students in design automation to get feedback on their research and for industry to see academic work in progress. Hundreds of people attended the forums, and participation is competitive with an acceptance rate of around 30 percent.\u003C\/p\u003E\u003Cp\u003ERakshith is a member of the Integrated Circuits and Systems Research Lab and advised by ECE Steve W. Chaddick School Chair \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EHe will be joining the faculty of the University of Tennessee, Knoxville at the start of the Fall 2024 semester.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. candidate presented research on Cryogenic CMOS for High Performance Computing in a highly competitive Ph.D. Forum.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. candidate presented research on Cryogenic CMOS for High Performance Computing in a highly competitive Ph.D. Forum."}],"uid":"36558","created_gmt":"2024-07-11 17:27:10","changed_gmt":"2024-07-11 17:29:06","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-07-11T00:00:00-04:00","iso_date":"2024-07-11T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674332":{"id":"674332","type":"image","title":"Saligram Award.jpg","body":null,"created":"1720718841","gmt_created":"2024-07-11 17:27:21","changed":"1720718841","gmt_changed":"2024-07-11 17:27:21","alt":"Rakshith Saligram","file":{"fid":"257832","name":"Saligram Award.jpg","image_path":"\/sites\/default\/files\/2024\/07\/11\/Saligram%20Award.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/07\/11\/Saligram%20Award.jpg","mime":"image\/jpeg","size":782822,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/07\/11\/Saligram%20Award.jpg?itok=KzXMcQy_"}}},"media_ids":["674332"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"1228","name":"memory"},{"id":"3047","name":"ACM"},{"id":"192664","name":"IEEE Council on Electronic Design Automation"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"675350":{"#nid":"675350","#data":{"type":"news","title":"Laboratory for Emerging Devices and Circuits Team Wins Best Paper Award for AI Computing Memory Research","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003EShimeng Yu\u003C\/a\u003E and his team at the \u003Ca href=\u0022https:\/\/shimeng.ece.gatech.edu\/\u0022\u003ELaboratory for Emerging Devices and Circuits\u003C\/a\u003E\u0026nbsp;won the \u003Ca href=\u0022https:\/\/www.acm.org\/\u0022\u003EAssociation for Computer Memory\u003C\/a\u003E (ACM) \u003Ca href=\u0022https:\/\/dl.acm.org\/journal\/todaes\u0022\u003ETransactions on Design Automation of Electronic Systems\u003C\/a\u003E (TODAES) 2024 Best Paper Award.\u003C\/p\u003E\u003Cp\u003EThe prestigious award recognizes the best paper published in the TODAES, the ACM\u0027s flagship publications in the area of electronic design automation (EDA).\u003C\/p\u003E\u003Cp\u003EYu accepted the award at the \u003Ca href=\u0022https:\/\/www.dac.com\/\u0022\u003E61st Design Automation Conference\u003C\/a\u003E in San Francisco, Calif. in June.\u003C\/p\u003E\u003Cp\u003EThis is \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/neurosim-series-research-recognized-prestigious-computer-aided-design-award\u0022\u003Ethe second consecutive year Yu\u2019s team won an award\u003C\/a\u003E for research printed in a flagship publication in the area of EDA, and the third year in a row research from ECE has received such an honor.\u003C\/p\u003E\u003Cp\u003EThe paper titled, \u201c\u003Ca href=\u0022https:\/\/dl.acm.org\/doi\/10.1145\/3569940\u0022\u003EHardware-aware quantization\/mapping strategies for compute-in-memory accelerators,\u003C\/a\u003E\u201d analyzed different combinations of settings for emerging non-volatile memory (eNVM) technologies.\u003C\/p\u003E\u003Cp\u003EThis new technology is important for mixed-signal Compute-in-Memory (CIM) accelerators, which are very energy efficient, thus making them crucial for artificial intelligence hardware design, which are notoriously resource intensive platforms.\u003C\/p\u003E\u003Cp\u003EUltimately, the research found the right configuration and settings can significantly improve output and efficiency. Yu\u2019s team was able to achieve an increase in processing speed by up to 60 percent, while doubling the energy efficiency and reducing overall hardware size by up to 25 percent.\u003C\/p\u003E\u003Cp\u003EThe findings provide design guidelines to engineers who continue to research eNVM and CIM technology.\u003C\/p\u003E\u003Cp\u003EYu co-authored the paper with ECE Ph.D. graduates Shanshi Huang and Hongwu Jiang, who are now both assistant professors in Hong Kong University of Science and Technology.\u003C\/p\u003E\u003Cp\u003EYu\u2019s lab won the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/neurosim-series-research-recognized-prestigious-computer-aided-design-award\u0022\u003EIEEE\u2019s Donald O. Pederson Best Paper Award in 2023\u003C\/a\u003E for their research on an end-to-end benchmark framework to evaluate state-of-the-art CIM accelerators. The award honors the best paper in the IEEE\u2019s Transactions on Computer-Aided Design of Integrated Circuits and Systems, the flagship journal of the IEEE Council on Electronic Design Automation.\u003C\/p\u003E\u003Cp\u003EIn 2022, ECE Professor Sung Kyu Lim and his research team won the Donald O. Pederson Best Paper Award for their paper on a physical design tool named Compact-2D that automatically builds high-density and commercial-quality monolithic three-dimensional integrated circuits.\u003C\/p\u003E\u003Cp\u003EYu also recently received a \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2024\/04\/yu-receives-intel-outstanding-research-award-novel-computing-hardware\u0022\u003E2023 Intel Outstanding Research Award\u003C\/a\u003E for his work on a chip that will help quantify uncertainty that is beyond the capabilities of existing binary computing systems, and improve computing robustness.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe team, led by ECE professor Shimeng Yu, analyzed different combinations of settings for emerging non-volatile memory (eNVM) technologies in hopes of improving AI hardware efficiency and power.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The team, led by ECE professor Shimeng Yu, analyzed different combinations of settings for emerging non-volatile memory (eNVM) technologies in hopes of improving AI hardware efficiency and power."}],"uid":"36558","created_gmt":"2024-07-03 18:28:54","changed_gmt":"2024-07-03 18:34:39","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-07-03T00:00:00-04:00","iso_date":"2024-07-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674298":{"id":"674298","type":"image","title":"1000018515.jpg","body":null,"created":"1720031344","gmt_created":"2024-07-03 18:29:04","changed":"1720031344","gmt_changed":"2024-07-03 18:29:04","alt":"Shimeng Yu at the 61st Design Automation Conference","file":{"fid":"257795","name":"1000018515.jpg","image_path":"\/sites\/default\/files\/2024\/07\/03\/1000018515.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/07\/03\/1000018515.jpg","mime":"image\/jpeg","size":4662903,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/07\/03\/1000018515.jpg?itok=Nuwd9BgM"}}},"media_ids":["674298"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"103141","name":"Best Paper Award"},{"id":"193836","name":"Association for Computer Memory"},{"id":"190745","name":"Electronic Design Automation"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"675270":{"#nid":"675270","#data":{"type":"news","title":"Al Jamal Wins Best Paper Award at 2024 IEEE International Microwave Symposium","body":[{"value":"\u003Cp\u003EGeorgia Tech School of Electrical and Computer Engineering Ph.D. candidate Hani Al Jamal won first-place in the Student Paper Competition (Best Paper Award) at the 2024 \u003Ca href=\u0022https:\/\/ims-ieee.org\/\u0022\u003EIEEE International Microwave Symposium\u003C\/a\u003E (IMS), held June 17-20 in Washington, DC.\u003C\/p\u003E\u003Cp\u003EThis prestigious award recognizes top technical papers at the conference. His paper was selected out of the 306 total submissions eligible for this award this year.\u003C\/p\u003E\u003Cp\u003EHis paper, \u201cBeyond Planar: An Additively Manufactured, Origami-Inspired Shape-Changing, and RFIC-Based Phased Array for Near-Limitless Radiation Pattern Reconfigurability in 5G\/mm-Wave Applications,\u201d was co-authored by fellow ECE Ph.D. candidates Chenhao Hu and Nathan Wille, and ECE Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003EManos Tentzeris\u003C\/a\u003E, in collaboration with George Mason University Electrical and Computer Engineering professor Kai Zeng.\u003C\/p\u003E\u003Cp\u003EAl Jamal and his team successfully demonstrated the first-ever additively manufactured, origami-inspired, shape-changing phased array at mm-wave frequencies, showcasing near-limitless reconfigurability. This work represents a significant leap, opening impactful opportunities for the advancement of massive MIMO and beyond-5G communication.\u003C\/p\u003E\u003Cp\u003EAn origami-inspired, shape-changing phased array combines this traditional antenna function with the ability to electronically control the direction of the signal and mechanically change its shape through folding structures inspired by origami. This makes the antenna highly adaptable.\u003C\/p\u003E\u003Cp\u003EAl Jamal has been enrolled in the ECE Ph.D. program since 2022, and is a member of the \u003Ca href=\u0022https:\/\/athena.gatech.edu\/\u0022\u003EATHENA Lab\u003C\/a\u003E, where he is advised by\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003E Tentzeris\u003C\/a\u003E.\u003C\/p\u003E\u003Cp\u003EHe received his bachelor\u2019s degree in electrical and computer engineering from the American University of Beirut with high distinction.\u003C\/p\u003E\u003Cp\u003EHis research interests include the use of additive manufacturing techniques in designing highly integrated, heterogeneous, and conformal\/flexible RF systems encompassing RF front-end circuits, antennas, and packaging up to mm-wave frequencies. He is also keen on advocating engineering education to high school and undergraduate students.\u003C\/p\u003E\u003Cp\u003EThrough his research, Al Jamal aspires to design and build communication devices and RF electronics that draw inspiration from origami and art, leading to enhanced functionality and physical flexibility to seamlessly integrate with human-centered devices, thereby enabling more efficient and integrated communication networks for digital awareness.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EAl Jamal\u2019s research on origami-inspired phased array antennas represents a quantum leap in antenna reconfigurability at mm-wave frequencies and a paradigm shift in massive MIMO applications and beyond-5G communication.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Al Jamal\u2019s research on origami-inspired phased array antennas represents a quantum leap in antenna reconfigurability at mm-wave frequencies and a paradigm shift in massive MIMO applications and beyond-5G communication."}],"uid":"36558","created_gmt":"2024-06-28 15:16:20","changed_gmt":"2024-07-01 15:43:51","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-06-28T00:00:00-04:00","iso_date":"2024-06-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674269":{"id":"674269","type":"image","title":"Hani Best Paper.jpg","body":null,"created":"1719587795","gmt_created":"2024-06-28 15:16:35","changed":"1719587795","gmt_changed":"2024-06-28 15:16:35","alt":"Hani Al Jamal","file":{"fid":"257764","name":"Hani Best Paper.jpg","image_path":"\/sites\/default\/files\/2024\/06\/28\/Hani%20Best%20Paper.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/06\/28\/Hani%20Best%20Paper.jpg","mime":"image\/jpeg","size":1158007,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/06\/28\/Hani%20Best%20Paper.jpg?itok=0coLfY8U"}}},"media_ids":["674269"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"69381","name":"best paper"},{"id":"1187","name":"IEEE"},{"id":"171699","name":"International Microwave Symposium"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"675170":{"#nid":"675170","#data":{"type":"news","title":"Afroze Wins Best Presentation at JUMP 2.0 SUPREME Annual Review","body":[{"value":"\u003Cp\u003EGeorgia Tech \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE) third-year Ph.D. candidate Nashrah Afroze won the Best Presentation Award at the \u003Ca href=\u0022https:\/\/supreme.cornell.edu\/\u0022\u003ESuperior Energy-efficient Materials and Devices Center\u2019s\u003C\/a\u003E (SUPREME) Annual Review on June 11-12 in Cambridge, Mass. on the campus of the Massachusetts Institute of Technology.\u003C\/p\u003E\u003Cp\u003EShe won the award for her research, \u0022Interface Engineering for High-Performance Memories at Elevated Temperatures,\u0022 which aims to improve memory robustness at high temperatures.\u003C\/p\u003E\u003Cp\u003EEmerging memories are essential for AI applications due to their substantial memory demands. These memories must function reliably at elevated temperatures, such as high bandwidth memory operating at 105 degrees C, monolithic back end at 125 degrees C, and automotive applications at 160 degrees C.\u003C\/p\u003E\u003Cp\u003EEnsuring robustness at these high temperatures is crucial for maintaining performance and reliability.\u003C\/p\u003E\u003Cp\u003EAt the event, Afroze demonstrated an interface engineering method to enhance the robustness of these memories at elevated temperatures, ensuring their effectiveness under realistic temperature conditions.\u003C\/p\u003E\u003Cp\u003E\u201cAttending the JUMP 2.0 SUPREME annual meeting in Cambridge was truly remarkable,\u201d Afroze said. \u201cEngaging with top semiconductor researchers from both academia and industry was incredibly inspiring. I\u0027m grateful for the insights and connections gained, shaping my vision for future advancements in technology.\u201d\u003C\/p\u003E\u003Cp\u003EThe SUPREME center, led by Cornell University, is one of the seven \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/\u0022\u003EJoint University Microelectronics Program\u003C\/a\u003E (JUMP) 2.0 academic research centers co-sponsored by \u003Ca href=\u0022https:\/\/www.src.org\/\u0022\u003ESemiconductor Research Corporation\u2019s\u003C\/a\u003E (SRC).\u003C\/p\u003E\u003Cp\u003EIt aims to demonstrate the basic materials and technology breakthroughs needed to address the seismic shifts identified by the semiconductor community in the Decadal Plan for Semiconductors.\u003C\/p\u003E\u003Cp\u003EAfroze is a third-year Ph.D. candidate under the supervision of ECE associate professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/asif-islam-khan\u0022\u003EAsif Islam Khan\u003C\/a\u003E, who is part of the SUPREME Center team.\u003C\/p\u003E\u003Cp\u003EHer research interests encompass a comprehensive study of ferroelectric memories, from microstructure analysis to electrical characterization, aiming to advance the understanding and application of the ferroelectric materials in next-generation memory technologies.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe third-year ECE Ph.D. student was recognized for her research on improving memory robustness at high temperatures.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"The third-year ECE Ph.D. student was recognized for her research on improving memory robustness at high temperatures."}],"uid":"36558","created_gmt":"2024-06-20 20:13:07","changed_gmt":"2024-06-21 16:58:30","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-06-20T00:00:00-04:00","iso_date":"2024-06-20T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674225":{"id":"674225","type":"image","title":"afroze.jpg","body":null,"created":"1718988990","gmt_created":"2024-06-21 16:56:30","changed":"1718988990","gmt_changed":"2024-06-21 16:56:30","alt":"Nashrah Afroze","file":{"fid":"257715","name":"afroze.jpg","image_path":"\/sites\/default\/files\/2024\/06\/21\/afroze_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/06\/21\/afroze_0.jpg","mime":"image\/jpeg","size":717490,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/06\/21\/afroze_0.jpg?itok=rIJBeBst"}}},"media_ids":["674225"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"191818","name":"JUMP 2.0"},{"id":"193807","name":"SUPREME"},{"id":"1228","name":"memory"},{"id":"7510","name":"temperature"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"657717":{"#nid":"657717","#data":{"type":"news","title":"2022 Spring Undergraduate Research Symposium","body":[{"value":"\u003Cp\u003EBy Frida Carrera\u003C\/p\u003E\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EOn Wednesday, April 13th\u0026nbsp;2022, the Undergraduate Research Opportunities Program (UROP) hosted the 16th\u0026nbsp;annual Spring Undergraduate Research Symposium. UROP\u2019s annual symposium is Georgia Tech\u2019s largest undergraduate research colloquium and allows students to present their research and gain valuable skills and presentation experience. Each year the symposium also presents awards to the top poster and oral presentation from each college and honors the Outstanding Undergraduate Researcher (OUR) from each college.\u0026nbsp;And with over 40 oral presentations and nearly 90 poster presentations, this year\u2019s symposium proved to be another success for UROP and Georgia Tech.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EThis year the symposium was held in Exhibition Hall and opened with an introduction and keynote address to students, faculty, and other non-presenters. Shortly after, the event moved into the poster presentations segment where undergraduate students displayed their research to judges, faculty, and other attendees. The oral presentations followed soon after and gave student researchers the opportunity to go more in-depth with their research and findings and answer any questions the judges and attendees had. To end the event, sponsoring colleges and departments recognized Outstanding Undergraduate Researchers from their respective colleges. Additionally, the symposium judges were tasked with selecting the top student researchers having exceptional poster and oral presentations.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003EAny Georgia Tech undergraduate student interested in presenting their research is encouraged to apply for future symposiums and to build on research presentation skills, connect with other undergraduate researchers and faculty, and the chance to be recognized with awards by members of the Georgia Tech research community. UROP also hosts other research-related events and workshops throughout the school year to assist undergraduate students interested in research and build on their passions!\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo view the list of awardees and pictures from the event visit:\u0026nbsp;\u003Ca href=\u0022https:\/\/symposium.urop.gatech.edu\/awards\/\u0022\u003Ehttps:\/\/symposium.urop.gatech.edu\/awards\/\u003C\/a\u003E\u0026nbsp;\u003C\/p\u003E\u003Cp\u003ETo learn more about undergraduate research at Georgia Tech visit:\u0026nbsp;\u003Ca href=\u0022https:\/\/urop.gatech.edu\/\u0022\u003Ehttps:\/\/urop.gatech.edu\/\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EUndergraduate Research Opportunities Program (UROP) hosted the 16th\u0026nbsp;annual Spring Undergraduate Research Symposium.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Undergraduate Research Opportunities Program (UROP) hosted the 16th\u00a0annual Spring Undergraduate Research Symposium."}],"uid":"28156","created_gmt":"2022-04-27 22:43:16","changed_gmt":"2024-06-10 20:39:05","author":"Recha Reid","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-04-13T00:00:00-04:00","iso_date":"2022-04-13T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"657713":{"id":"657713","type":"image","title":"UROP Welcome Ceremony","body":null,"created":"1651097417","gmt_created":"2022-04-27 22:10:17","changed":"1651097417","gmt_changed":"2022-04-27 22:10:17","alt":"","file":{"fid":"249272","name":"52033978825_a40d67e556_c.jpg","image_path":"\/sites\/default\/files\/images\/52033978825_a40d67e556_c.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/52033978825_a40d67e556_c.jpg","mime":"image\/jpeg","size":152658,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/52033978825_a40d67e556_c.jpg?itok=5XUt8J8P"}},"657714":{"id":"657714","type":"image","title":"UROP Poster presentation 1","body":null,"created":"1651097453","gmt_created":"2022-04-27 22:10:53","changed":"1651097453","gmt_changed":"2022-04-27 22:10:53","alt":"","file":{"fid":"249273","name":"52033979580_b185e86b40_c.jpg","image_path":"\/sites\/default\/files\/images\/52033979580_b185e86b40_c.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/52033979580_b185e86b40_c.jpg","mime":"image\/jpeg","size":109021,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/52033979580_b185e86b40_c.jpg?itok=Y7Z2YuI3"}},"657715":{"id":"657715","type":"image","title":"UROP Poster presentation 2","body":null,"created":"1651097500","gmt_created":"2022-04-27 22:11:40","changed":"1651097500","gmt_changed":"2022-04-27 22:11:40","alt":"","file":{"fid":"249274","name":"52033460951_c781fc34bc_c.jpg","image_path":"\/sites\/default\/files\/images\/52033460951_c781fc34bc_c.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/52033460951_c781fc34bc_c.jpg","mime":"image\/jpeg","size":98642,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/52033460951_c781fc34bc_c.jpg?itok=Dc0FxHLr"}}},"media_ids":["657713","657714","657715"],"groups":[{"id":"98291","name":" Experiential \u0026 Engaged Learning"},{"id":"638854","name":"UROP (news)"}],"categories":[{"id":"129","name":"Institute and Campus"}],"keywords":[{"id":"365","name":"Research"},{"id":"167061","name":"symposium"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"145171","name":"Cybersecurity"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"},{"id":"39481","name":"National Security"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"},{"id":"39491","name":"Renewable Bioproducts"},{"id":"39521","name":"Robotics"},{"id":"39541","name":"Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["urop@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674942":{"#nid":"674942","#data":{"type":"news","title":"Georgia Tech Is at the Leading Edge of Semiconductor Research","body":[{"value":"\u003Cp\u003ESemiconductors make our world run, but the industry faces a turning point. For decades, computer chip efficiency has doubled every two years, but that progress is slowing. To complicate the problem further, global demand for semiconductors threatens to outpace the supply. The U.S. has the opportunity to meet the growing need for chips \u2014 both by increasing domestic manufacturing and building up the workforce, which is at its \u003Ca href=\u0022https:\/\/www.whitehouse.gov\/cea\/written-materials\/2024\/03\/20\/u-s-semiconductor-jobs-are-making-a-comeback\/\u0022\u003E\u003Cstrong\u003Elowest\u003C\/strong\u003E\u003C\/a\u003E in decades. To bolster semiconductor research and manufacturing, in 2022, Congress passed the $52.7 billion bipartisan CHIPS and Science Act that President Joe Biden signed into law. New paradigms and pioneers are needed to make these critical advances.\u003C\/p\u003E\u003Cp\u003EGeorgia Tech is playing \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-addressing-nations-call-semiconductors\u0022\u003E\u003Cstrong\u003Ea significant role\u003C\/strong\u003E\u003C\/a\u003E in creating the next generation of chips, as the Institute is especially well positioned to innovate in the semiconductor field. All areas of the semiconductor stack \u2014 the components that build a chip, from hardware to artificial intelligence \u2014 are studied at Tech, and collaboration among faculty is a hallmark of its research enterprise. Such cooperation is necessary to build better chips, since they need to be reinvented in every layer of the stack.\u003C\/p\u003E\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/feature\/chips-research\u0022\u003ERead the full story on GT Research News.\u003C\/a\u003E\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"Smartphones. Kettles. MRI machines. LED lightbulbs. Cars. Almost every electronic device uses a semiconductor, a tiny silicon chip made of myriad transistors that can perform billions of computations in a second."}],"field_summary":[{"value":"\u003Cp\u003EGeorgia Tech is playing a significant role in creating the next generation of semiconductor chips.\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech is playing a significant role in creating the next generation of semiconductor chips."}],"uid":"35272","created_gmt":"2024-05-30 16:11:12","changed_gmt":"2024-05-30 16:12:54","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-05-07T00:00:00-04:00","iso_date":"2024-05-07T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674094":{"id":"674094","type":"image","title":"chips-banner-overlay.png","body":null,"created":"1717085517","gmt_created":"2024-05-30 16:11:57","changed":"1717085517","gmt_changed":"2024-05-30 16:11:57","alt":"Computer chips are being produced by Georgia Tech researchers","file":{"fid":"257566","name":"chips-banner-overlay.png","image_path":"\/sites\/default\/files\/2024\/05\/30\/chips-banner-overlay.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/05\/30\/chips-banner-overlay.png","mime":"image\/png","size":1990320,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/05\/30\/chips-banner-overlay.png?itok=0hjpksBd"}}},"media_ids":["674094"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EMedia Contact\u003C\/strong\u003E: Tess Malone | tess.malone@gatech.edu\u003C\/p\u003E","format":"limited_html"}],"email":["tess.malone@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674927":{"#nid":"674927","#data":{"type":"news","title":"Georgia Tech Joins Global Industrial Technology Cooperation Center to Advance Semiconductor Electronics Research","body":[{"value":"\u003Cp\u003EGeorgia Tech has been selected as one of six universities globally to receive funding for the newly established Global Industrial Technology Cooperation Center. The announcement was made by the Ministry of Trade, Industry, and Energy in South Korea during the Global Open Innovation Strategy Meeting in April.\u003C\/p\u003E\u003Cp\u003EThe KIAT-Georgia Tech Semiconductor Electronics Center will receive $1.8 million to establish a sustainable semiconductor electronics research partnership between Korean companies, researchers, and Georgia Tech.\u0026nbsp;\u003C\/p\u003E\u003Cp\u003E\u201cI am thrilled to announce that we have secured funding to launch a groundbreaking collaboration between Georgia Tech\u2019s world-class researchers and Korean companies,\u201d said \u003Ca href=\u0022https:\/\/research.gatech.edu\/w-hong-yeo\u0022\u003EHong Yeo\u003C\/a\u003E, associate professor and Woodruff Faculty Fellow in the George W. Woodruff School of Mechanical Engineering and the Wallace H. Coulter Department of Biomedical Engineering. \u201cThis initiative will drive the development of cutting-edge technologies to advance semiconductor, sensors, and electronics research.\u201d\u003C\/p\u003E\u003Cp\u003EYeo will lead the center, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/michael-filler\u0022\u003EMichael Filler\u003C\/a\u003E, interim executive director for the Institute of Electronics and Nanotechnology, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E, director of the \u003Ca href=\u0022prc.gatech.edu\u0022\u003E3D Advanced Packaging Research Center\u003C\/a\u003E, will serve as co-PIs.\u003C\/p\u003E\u003Cp\u003EThe center will focus on advancing semiconductor research, a critical area of technology that forms the backbone of modern electronics.\u003C\/p\u003E\u003Cp\u003EThe Cooperation Center is a global technology collaboration platform designed to facilitate international joint research and development planning, partner matching, and local support for domestic researchers. The selection of Georgia Tech underscores the Institute\u2019s leadership and expertise in the field of semiconductors.\u003C\/p\u003E","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech has been selected as one of six universities globally to receive funding for the newly established Global Industrial Technology Cooperation Center.\u0026nbsp;\u003C\/p\u003E","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech has been selected as one of six universities globally to receive funding for the newly established Global Industrial Technology Cooperation Center. "}],"uid":"35272","created_gmt":"2024-05-29 12:45:29","changed_gmt":"2024-05-29 16:11:41","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-05-29T00:00:00-04:00","iso_date":"2024-05-29T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"674085":{"id":"674085","type":"image","title":"14C10042-P1-097_web.jp","body":null,"created":"1716986919","gmt_created":"2024-05-29 12:48:39","changed":"1716986919","gmt_changed":"2024-05-29 12:48:39","alt":"Electronics packaging at Georgia Tech","file":{"fid":"257555","name":"14C10042-P1-097_web.jpg","image_path":"\/sites\/default\/files\/2024\/05\/29\/14C10042-P1-097_web.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/05\/29\/14C10042-P1-097_web.jpg","mime":"image\/jpeg","size":136186,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/05\/29\/14C10042-P1-097_web.jpg?itok=gM6j-Oge"}}},"media_ids":["674085"],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u0026nbsp;\u003Cbr\u003EResearch Communications Program Manager\u003C\/p\u003E","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"673098":{"#nid":"673098","#data":{"type":"news","title":"Energy Materials: Driving the Clean Energy Transition","body":[{"value":"\u003Cp\u003EEnergy is everywhere, affecting everything, all the time. And it can be manipulated and converted into the kind of energy that we depend on as a civilization. But transforming this ambient energy (the result of gyrating atoms and molecules) into something we can plug into and use when we need it requires specific materials.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThese energy materials \u2014 some natural, some manufactured, some a combination \u2014 facilitate the conversion or transmission of energy. They also play an essential role in how we store energy, how we reduce power consumption, and how we develop cleaner, efficient energy solutions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cAdvanced materials and clean energy technologies are tightly connected, and at Georgia Tech we\u2019ve been making major investments in people and facilities in batteries, solar energy, and hydrogen, for several decades,\u201d said \u003Ca href=\u0022https:\/\/ae.gatech.edu\/directory\/person\/timothy-charles-lieuwen\u0022\u003ETim Lieuwen\u003C\/a\u003E, the David S. Lewis Jr. Chair and professor of aerospace engineering, and executive director of Georgia Tech\u2019s Strategic Energy Institute (\u003Ca href=\u0022https:\/\/research.gatech.edu\/energy\u0022\u003ESEI\u003C\/a\u003E).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThat research synergy is the underpinning of \u003Ca href=\u0022https:\/\/research.gatech.edu\/energymaterials\u0022\u003EGeorgia Tech Energy Materials Day (March 27)\u003C\/a\u003E, a gathering of people from academia, government, and industry, co-hosted by SEI, the Institute for Materials (\u003Ca href=\u0022https:\/\/research.gatech.edu\/materials\u0022\u003EIMat\u003C\/a\u003E), and the Georgia Tech Advanced Battery Center. This event aims to build on the momentum created by \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-battery-day-reveals-opportunities-energy-storage-research\u0022\u003EGeorgia Tech Battery Day\u003C\/a\u003E, held in March 2023, which drew more than 230 energy researchers and industry representatives.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cWe thought it would be a good idea to expand on the Battery Day idea and showcase a wide range of research and expertise in other areas, such as solar energy and clean fuels, in addition to what we\u2019re doing in batteries and energy storage,\u201d said \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/matthew-mcdowell\u0022\u003EMatt McDowell\u003C\/a\u003E, associate professor in the George W. \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EWoodruff School of Mechanical Engineering\u003C\/a\u003E and the \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering (MSE)\u003C\/a\u003E, and co-director, with \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/gleb-yushin\u0022\u003EGleb Yushin\u003C\/a\u003E, of the Advanced Battery Center.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEnergy Materials Day will bring together experts from academia, government, and industry to discuss and accelerate research in three key areas: battery materials and technologies, photovoltaics and the grid, and materials for carbon-neutral fuel production, \u201call of which are crucial for driving the clean energy transition,\u201d noted \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/eric-vogel\u0022\u003EEric Vogel\u003C\/a\u003E, executive director of IMat and the Hightower Professor of Materials Science and Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cGeorgia Tech is leading the charge in research in these three areas,\u201d he said. \u201cAnd we\u2019re excited to unite so many experts to spark the important discussions that will help us advance our nation\u2019s path to net-zero emissions.\u201d\u003C\/p\u003E\r\n\r\n\u003Ch4\u003EBuilding an Energy Hub\u003C\/h4\u003E\r\n\r\n\u003Cp\u003EEnergy Materials Day is part of an ongoing, long-range effort to position Georgia Tech, and Georgia, as a go-to location for modern energy companies. So far, the message seems to be landing. Georgia has had more than $28 billion invested or announced in electric vehicle-related projects since 2020. And Georgia Tech was recently ranked by U.S. News \u0026amp; World Report as the \u003Ca href=\u0022https:\/\/research.gatech.edu\/georgia-tech-named-top-ranked-public-university-energy\u0022\u003Etop public university for energy research\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia has become a major player in solar energy, also, with the announcement last year of a $2.5 billion plant being developed by Korean solar company Hanwha Qcells, taking advantage of President Biden\u2019s climate policies. Qcells\u2019 global chief technology officer, Danielle Merfeld, a member of SEI\u2019s External Advisory Board, will be the keynote speaker for Energy Materials Day.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cGrowing these industry relationships, building trust through collaborations with industry \u2014 these have been strong motivations in our efforts to create a hub here in Atlanta,\u201d said Yushin, professor in MSE and co-founder of Sila Nanotechnologies, a battery materials startup valued at more than $3 billion.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMcDowell and Yushin are leading the battery initiative for Energy Materials Day and they\u2019ll be among 12 experts making presentations on battery materials and technologies, including six from Georgia Tech and four from industry. In addition to the formal sessions and presentations, there will also be an opportunity for networking.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cI think Georgia Tech has a responsibility to help grow a manufacturing ecosystem,\u201d McDowell said. \u201cWe have the research and educational experience and expertise that companies need, and we\u2019re working to coordinate our efforts with industry.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/marta-hatzell\u0022\u003EMarta Hatzell\u003C\/a\u003E, associate professor of mechanical engineering and chemical and biomolecular engineering, is leading the carbon-neutral fuel production portion of the event, while \u003Ca href=\u0022https:\/\/research.gatech.edu\/juan-pablo-correa-baena\u0022\u003EJuan-Pablo Correa-Baena\u003C\/a\u003E, assistant professor in MSE, is leading the photovoltaics initiative.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey\u2019ll be joined by a host of experts from Georgia Tech and institutes across the country, \u201csome of the top thought leaders in their fields,\u201d said Correa-Baena, whose lab has spent years optimizing a semiconductor material for solar energy conversion.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cOver the past decade, we have been working to achieve high efficiencies in solar panels based on a new, low-cost material called halide perovskites,\u201d he said. His lab recently discovered how to \u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/12\/researchers-find-they-can-stop-degradation-promising-solar-cell-materials\u0022\u003Eprevent the chemical interactions that can degrade it\u003C\/a\u003E. \u201cIt\u2019s kind of a miracle material, and we want to increase its lifespan, make it more robust and commercially relevant.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhile Correa-Baena is working to revolutionize solar energy, Hatzell\u2019s lab is designing materials to clean up the manufacturing of clean fuels.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cWe\u2019re interested in decarbonizing the industrial sector, through the production of carbon-neutral fuels,\u201d said Hatzell, whose lab is designing new materials to make clean ammonia and hydrogen, both of which have the potential to play a major role in a carbon-free fuel system, without using fossil fuels as the feedstock. \u201cWe\u2019re also working on a collaborative project focusing on assessing the economics of clean ammonia on a larger, global scale.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe hope for Energy Materials Day is that other collaborations will be fostered as industry\u2019s needs and the research enterprise collide in one place \u2014 Georgia Tech\u2019s Exhibition Hall \u2014 over one day. The event is part of what Yushin called \u201cthe snowball effect.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cYou attract a new company to the region, and then another,\u201d he said. \u201cIf we want to boost domestic production and supply chains, we must roll like a snowball gathering momentum. Education is a significant part of that effect. To build this new technology and new facilities for a new industry, you need trained, talented engineers. And we\u2019ve got plenty of those. Georgia Tech can become the single point of contact, helping companies solve the technical challenges in a new age of clean energy.\u201d\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EEnergy materials facilitate the conversion or transmission of energy. They also play an essential role in how we store energy, reduce power consumption, and develop cleaner, efficient energy solutions.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Energy materials facilitate the conversion or transmission of energy. They also play an essential role in how we store energy, reduce power consumption, and develop cleaner, efficient energy solutions."}],"uid":"34760","created_gmt":"2024-02-21 16:55:41","changed_gmt":"2024-04-29 18:57:42","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-02-21T00:00:00-05:00","iso_date":"2024-02-21T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673164":{"id":"673164","type":"image","title":"Georgia Tech Energy Materials Day 2024","body":null,"created":"1708534719","gmt_created":"2024-02-21 16:58:39","changed":"1708534718","gmt_changed":"2024-02-21 16:58:38","alt":"Images of a light bulb, solar panels, and batteries","file":{"fid":"256522","name":"GTEM_event_web (2).png","image_path":"\/sites\/default\/files\/2024\/02\/21\/GTEM_event_web%20%282%29.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/02\/21\/GTEM_event_web%20%282%29.png","mime":"image\/png","size":420152,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/02\/21\/GTEM_event_web%20%282%29.png?itok=HkvgnWJZ"}}},"media_ids":["673164"],"groups":[{"id":"1278","name":"College of Sciences"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"144","name":"Energy"},{"id":"145","name":"Engineering"},{"id":"154","name":"Environment"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"186858","name":"go-sei"},{"id":"187433","name":"go-ien"},{"id":"193266","name":"cos-research"},{"id":"192251","name":"cos-quantum"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[{"id":"71911","name":"Earth and Environment"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto: jerry.grillo@ibb.gatech.edu\u0022\u003EJerry Grillo\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"673313":{"#nid":"673313","#data":{"type":"news","title":"IEN Exponential Electronics Seed Grant Winner Announced","body":[{"value":"\u003Cp\u003EThe Institute for Electronics and Nanotechnology (IEN) at Georgia Tech has announced the 2023 \u003Ca href=\u0022\/\/\/nano\/funding-opportunities\u0022\u003EIEN Exponential Electronics (IEN-EX) Seed Grant\u003C\/a\u003E winner, \u003Ca href=\u0022\/\/\/vida-jamali\u0022\u003EVida Jamali\u003C\/a\u003E, Assistant Professor in the School of Chemical and Biomolecular Engineering at Georgia tech. \u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe primary purpose of this program is to give early-stage research and development to create revolutionary electronic systems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIEN-EX provides seed funding for Georgia Tech researchers to pursue \u201c1000x\u201d ideas within electronics or that bridge electronics with other technical domains. \u201c1000x\u201d ideas are those with the potential to improve one or more well-defined, but often overlooked or underappreciated performance metrics by at least 1000x.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn this brief Q\u0026amp;A, Jamali discusses her research focus, how it relates to electronics research, and the impact of this initiative.\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EWhat is your field of expertise and at what point in your life did you first become interested in this area? \u003C\/strong\u003EIn situ liquid phase transmission electron microscopy. I started learning about this tool when I was a postdoc to develop it as a single particle tracking method.\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EBriefly explain your research:\u003C\/strong\u003E My research is focused on investigating the dynamics\u0026nbsp;of nanoscale objects in their native liquid environment, from synthetic colloidal nanomachines to biological macromolecules, using liquid phase transmission\u0026nbsp;electron microscopy. We develop experimental and computational tools to visualize and characterize dynamic behavior (equilibrium and non-equilibrium) at small length scales and in real-time.\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EWho are the PIs:\u003C\/strong\u003E Me and \u003Ca href=\u0022\/amirali-aghazadeh\u0022\u003EAmirali Aghazadeh\u003C\/a\u003E, Assistant Professor in the School of Electrical and Computer Engineering.\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EWhat questions or challenges sparked your current research?\u003C\/strong\u003E Is it possible to use an electron microscope and capture the dynamics of nanoscale materials in time as they\u0026nbsp;move and interact with each other and respond to their surrounding environment with a high spatiotemporal resolution?\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EHow is your research working to create revolutionary electronic systems? \u003C\/strong\u003EWe design and develop a new nanoelectronic coded aperture device that once integrated into transmission electron microscopes can increase resolution exponentially.\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EWhat are the broader global and social benefits of the research you and your team conduct? \u003C\/strong\u003EOnce realized this technology opens a new window into dynamic phenomena at a scale inaccessible\u0026nbsp;before. This unprecedented level of information will significantly advance areas from drug discovery impacting human health to achieving single crystalline\u0026nbsp;materials for the semiconductor industry.\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EHow will this funding support your research?\u003C\/strong\u003E This funding will support graduate students who will be realizing this idea\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EVida Jamali received the 2023 IEN Exponential Electronics Seed Grant for research on the dynamics of nanoscale objects in liquid environments.\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Vida Jamali received the 2023 IEN Exponential Electronics Seed Grant for research on the dynamics of nanoscale objects in liquid environments. "}],"uid":"35272","created_gmt":"2024-03-04 17:06:29","changed_gmt":"2024-04-25 14:18:34","author":"aneumeister3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-03-04T00:00:00-05:00","iso_date":"2024-03-04T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673292":{"id":"673292","type":"image","title":"IEN_Jamali_Aghazadeh.jpg","body":null,"created":"1709571977","gmt_created":"2024-03-04 17:06:17","changed":"1709571914","gmt_changed":"2024-03-04 17:05:14","alt":"Illustration of nano particle in liquid","file":{"fid":"256662","name":"IEN_Jamali_Aghazadeh.jpg","image_path":"\/sites\/default\/files\/2024\/03\/04\/IEN_Jamali_Aghazadeh.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/03\/04\/IEN_Jamali_Aghazadeh.jpg","mime":"image\/jpeg","size":2138856,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/03\/04\/IEN_Jamali_Aghazadeh.jpg?itok=FH0jlki3"}}},"media_ids":["673292"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"660369","name":"Matter and Systems"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:amelia.neumeister@research.gatech.edu\u0022\u003EAmelia Neumeister\u003C\/a\u003E\u003Cbr \/\u003E\r\nResearch Communications Program Manager\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["amelia.neumeister@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674299":{"#nid":"674299","#data":{"type":"news","title":"Vogel to Lead Institute for Matter and Systems","body":[{"value":"\u003Cp\u003EEffective July 1, \u003Ca href=\u0022https:\/\/research.gatech.edu\/eric-vogel\u0022\u003EEric Vogel\u003C\/a\u003E will become the executive director of the Institute for Matter and Systems (IMS), Georgia Tech\u2019s \u003Ca href=\u0022https:\/\/research.gatech.edu\/new-interdisciplinary-research-institute-launch-summer\u0022\u003Enewest Interdisciplinary Research Institute\u003C\/a\u003E (IRI) that will launch on the same date.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs an evolution of the\u0026nbsp;Institute for Materials\u0026nbsp;(IMat) and the\u0026nbsp;Institute for Electronics and Nanotechnology (IEN), IMS aims to enable convergent research at Georgia Tech related to the science, technology, and societal underpinnings of innovative materials and devices. Additionally, IMS seeks to integrate these innovations into systems that enhance human well-being and performance across information and communication, \u003Ca href=\u0022https:\/\/www.epa.gov\/smm\/basic-information-about-built-environment\u0022\u003Ethe built environment\u003C\/a\u003E, and human-centric technologies\u003Cstrong\u003E\u0026nbsp;\u003C\/strong\u003Ethat improve human health, wellness, and performance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cExecutive Vice President for Research Chaouki Abdallah and I are very excited about the launch of IMS, which positions Georgia Tech for integration of science and technology from atoms to devices, while explicitly drawing in researchers in the social sciences, design, business, and computing,\u201d said Vice President of Interdisciplinary Research Julia Kubanek.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cIMS will ensure relevance across Georgia Tech through its newly configured Internal Advisor and Ambassador Board with representation across all six Colleges and GTRI,\u201d she said. \u201cAdditional advisory committees representing IMS employees and facility users will ensure that we don\u2019t sacrifice any of the research excellence for which IEN and IMat are known. With IMS I expect we will be even better positioned to tackle research problems that will have the greatest positive societal impact.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EVogel will continue in his current position as the executive director of IMat until the launch of IMS. In addition to leading and growing IMat, Vogel is the Hightower Professor of Materials Science and Engineering at Georgia Tech\u2019s School of Materials Science and Engineering, and he served as the IEN deputy director prior to leading IMat.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cIt is an honor to be appointed executive director of the Institute for Matter and Systems, and I look forward to collaborating with the talented faculty and staff associated with it,\u201d said Vogel. \u201cThis opportunity allows us to leverage the core competencies of IEN and IMat while extending our capabilities beyond nanotechnology and materials science. Together, we will be a hub for interdisciplinary research ranging from advanced materials to complex systems that solve global challenges.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech\u2019s IRIs facilitate collaboration between researchers and students from its six Colleges, the Georgia Tech Research Institute, national laboratories, and corporate entities to tackle critical topics of strategic significance for the Institute as well as for local, state, national, and international communities. IMS will also house and maintain the state-of-the-art \u003Ca href=\u0022https:\/\/mcf.gatech.edu\/\u0022\u003EMaterials Characterization Facility\u003C\/a\u003E and one of the largest \u003Ca href=\u0022https:\/\/cleanroom.gatech.edu\/\u0022\u003Eacademic cleanroom\u003C\/a\u003Es in the nation, which offers a broad range of fabrication capabilities from basic discovery to prototype realization.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBefore joining Georgia Tech in 2011, Vogel was an associate professor of materials science and engineering and electrical engineering at the University of Texas at Dallas. During this time, he also served as the associate director of the Texas Analog Center of Excellence and led UT Dallas\u2019s involvement in the Southwest Academy for Nanoelectronics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPrior to UT Dallas, he led the CMOS and Novel Devices Group and established the Nanofabrication Facility at the National Institute of Standards and Technology. Vogel holds a Ph.D. in electrical engineering from North Carolina State University and a B.S. in electrical engineering from the Pennsylvania State University. His research focuses on the development and fundamental understanding of electronic and nanomaterials and devices.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EEffective July 1, Eric Vogel will become the executive director of the Institute for Matter and Systems, Georgia Tech\u2019s newest Interdisciplinary Research Institute.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Effective July 1, Eric Vogel will become the executive director of the Institute for Matter and Systems, Georgia Tech\u2019s newest Interdisciplinary Research Institute. "}],"uid":"34760","created_gmt":"2024-04-22 13:40:02","changed_gmt":"2024-04-25 13:57:03","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-04-22T00:00:00-04:00","iso_date":"2024-04-22T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"642750":{"id":"642750","type":"image","title":"Eric Vogel, Institute for Materials","body":null,"created":"1610372678","gmt_created":"2021-01-11 13:44:38","changed":"1713798724","gmt_changed":"2024-04-22 15:12:04","alt":"Eric Vogel, IMat executive director","file":{"fid":"244081","name":"eric-vogel-horiz.jpg","image_path":"\/sites\/default\/files\/images\/eric-vogel-horiz.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/eric-vogel-horiz.jpg","mime":"image\/jpeg","size":797227,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/eric-vogel-horiz.jpg?itok=GGRTeQHw"}}},"media_ids":["642750"],"related_links":[{"url":"https:\/\/research.gatech.edu\/new-interdisciplinary-research-institute-launch-summer","title":"New Interdisciplinary Research Institute to Launch This Summer"}],"groups":[{"id":"217141","name":"Georgia Tech Materials Institute"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"},{"id":"1188","name":"Research Horizons"},{"id":"660369","name":"Matter and Systems"}],"categories":[{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"193652","name":"Matter and Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto: laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003Cbr \/\u003E\r\nResearch Communications\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["laurie.haigh@research.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674279":{"#nid":"674279","#data":{"type":"news","title":"New Research out of GT-Europe on 2-D Materials Could Revolutionize Energy Storage Systems","body":[{"value":"\u003Cp\u003E\u003Cem\u003EMetz, France\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThree-dimensional (3D) hetero-integration technology is set to transform the field of electronics. Vertically stacking functional layers, creates novel 2D-3D circuit architectures with high integration density and unprecedented multifunctionality.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThree researchers at \u003Ca href=\u0022https:\/\/europe.gatech.edu\/en\/research\u0022\u003EGeorgia Tech-CNRS IRL 2958\u003C\/a\u003E, a joint international research laboratory based at Georgia Tech-Europe in Metz, France, were among a team that demonstrated cutting-edge 2D\/single-crystalline 3D\/2D (2D\/C-3D\/2D) Integration using a precise layer splitting technique to overcome drawbacks in ferroelectric materials use in electrostatic capacitors. \u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/abdallah-ougazzaden\u0022\u003EAbdallah Ougazzaden\u003C\/a\u003E, professor of Electrical and Computer Engineering at Georgia Tech, and president of Georgia Tech-Europe, Phuong Vuong, Georgia Tech-CNRS IRL 2958 researcher, and Suresh Sundaram, adjunct faculty in Georgia Tech\u2019s School of Electrical and Computer Engineering, are co-authors on an April 19, 2024 research article in the journal, \u003Cem\u003EScience\u003C\/em\u003E, entitled \u003Ca href=\u0022https:\/\/www.science.org\/doi\/pdf\/10.1126\/science.adl2835\u0022\u003E\u201cHigh energy density in artificial heterostructures through relaxation time modulation.\u201d\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFerroelectric materials used in electrostatic capacitors have unique advantages such as maximum polarization due to their higher electric susceptibilities related to dielectric constants, or permittivity, a measure of a material\u2019s ability to store electrical energy. However, their high remnant polarization, the amount of polarization that remains in the material after the electric field is removed, limits how well they can store and release energy during the discharging process.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the Science article, researchers demonstrated an innovative approach that sandwiches a single crystalline BTO (C-BTO) layer with 2D materials in the form of a freestanding membrane and effectively suppresses the remnant polarization of ferroelectric materials while maintaining the maximum polarization.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis ultra-thin vertical stacking technology was achieved using three different two-dimensional materials in combination with single crystalline BTO (C-BTO). Hexagonal boron nitride semiconductor was developed in the International Research Laboratory at GT-Europe, while graphene, and Molybdenum disulfide (MoS2) were developed at MIT.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThese new 2D material technologies have a special type of bonding called van der Waals forces. On account of this, the\u0026nbsp;layers can be easily separated to create components without needing any chemical etching or cutting processes.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cThe 2D hexagonal boron nitride (h-BN) material that we are developing at Georgia Tech-CNRS IRL 2958 on large surfaces using the MOCVD epitaxial growth technique has demonstrated its significant potential in emerging technologies across various domains such as future quantum computers, biotechnology, flexible electronics, sensors, energy, and optogenetics.\u201d said Ougazzaden, head of the h-BN project at Georgia Tech-CNRS IRL 2958,\u201d adding, \u201cWe are currently working on some of these applications, and we hope to produce even more results and demonstrate new achievements.\u0022\u003C\/p\u003E\r\n\r\n\u003Cp\u003EElectrostatic capacitors, with their ability to store and release electrical energy quickly, find a wide range of applications across various fields of electronics and electrical engineering for energy storage, power conditioning etc.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn a similar collaboration, the same research team from Georgia Tech-CNRS IRL 2958 published a paper in December 2023, showing the first demonstration of the monolithic 3D integration of an artificial intelligence (AI) processor using two-dimensional (2D) materials.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis innovative integration approach combined six layers of transistor and memristor networks into a 3D nano-system. By stacking nanoscale materials made from 2D materials using bottom-up technology, the team created a fully integrated AI system.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe monolithic 3D method significantly improved processing efficiency by reducing time, voltage drops, latency, and footprint. In addition to offering a solution for electronic hetero-integration with 2D materials, broke new ground for advanced multifunctional processors and systems for AI applications and complex computing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team\u2019s results on vertical hetero-integration were published in the scientific journal,\u003Cem\u003E Nature Materials, \u003C\/em\u003Eentitled, \u003Ca href=\u0022https:\/\/doi.org\/10.1038\/s41563-023-01704-z\u0022\u003E\u0022Monolithic 3D Integration of 2D Materials-Based Electronics towards Ultimate Edge Computing Solutions.\u201d\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers who contributed to the Science article discovered that when ferroelectric materials are combined in special structures (like 2D\/C-3D\/2D layers), it affects how much leftover charge a capacitor has and how well it can store energy. These insights will advance designs of high-energy capacitors using these materials. In the future, this could lead to more efficient and powerful energy storage systems.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThree researchers at Georgia Tech-CNRS IRL 2958, a joint international research laboratory based at Georgia Tech-Europe in Metz, France, were among a team that demonstrated cutting-edge 2D\/single-crystalline 3D\/2D (2D\/C-3D\/2D) Integration using a precise layer splitting technique to overcome drawbacks in ferroelectric materials use in electrostatic capacitors. \u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Researchers at Georgia Tech-CNRS IRL 2958 contribute to optimizing the design and performance of high-energy electrostatic capacitors using ferroelectric materials."}],"uid":"28490","created_gmt":"2024-04-19 09:53:11","changed_gmt":"2024-04-19 20:29:41","author":"Andrea Gappell","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-04-19T00:00:00-04:00","iso_date":"2024-04-19T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673772":{"id":"673772","type":"image","title":"Picture1.png","body":"\u003Cp\u003EElectrostatic capacitors realized with ferroelectric single crystalline BaTiO3 (BTO) sandwiched by 2D materials (including h-BN).\u003C\/p\u003E\r\n","created":"1713542685","gmt_created":"2024-04-19 16:04:45","changed":"1713542685","gmt_changed":"2024-04-19 16:04:45","alt":"Electrostatic capacitors realized with ferroelectric single crystalline BaTiO3 (BTO) sandwiched by 2D materials (including h-BN). ","file":{"fid":"257208","name":"Picture1.png","image_path":"\/sites\/default\/files\/2024\/04\/19\/Picture1_1.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/04\/19\/Picture1_1.png","mime":"image\/png","size":527817,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/04\/19\/Picture1_1.png?itok=67u8G_yE"}}},"media_ids":["673772"],"related_files":{"257217":{"fid":"257217","name":"Science (2024) - High energy density in artificial heterostructures through relaxation time modulation","file_path":"\/sites\/default\/files\/documents\/2024-04\/scienceadl2835_240419_112535.pdf","file_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/documents\/2024-04\/scienceadl2835_240419_112535.pdf","mime":"application\/pdf","description":"Science (2024) - High energy density in artificial heterostructures through relaxation time modulation"}},"related_links":[{"url":"https:\/\/www.science.org\/doi\/pdf\/10.1126\/science.adl2835","title":"DOI - Science (2024) - \u201cHigh energy density in artificial heterostructures through relaxation time modulation\u201d "},{"url":"https:\/\/doi.org\/10.1038\/s41563-023-01704-z","title":"DOI - Nature Materials (2023) - \u0022Monolithic 3D Integration of 2D Materials-Based Electronics towards Ultimate Edge Computing Solutions.\u201d"},{"url":"https:\/\/umi2958.gatech.edu\/","title":"Georgia Tech-CNRS IRL 2958"},{"url":"https:\/\/europe.gatech.edu\/","title":"Georgia Tech-Europe"},{"url":"https:\/\/coe.gatech.edu\/","title":"Georgia Tech College of Engineering"},{"url":"https:\/\/ece.gatech.edu\/","title":"School of Electrical and Computer Engineering"},{"url":"https:\/\/hg.gatech.edu\/sites\/default\/files\/documents\/2024-04\/scienceadl2835_240419_112535_0.pdf","title":"Science (2024) - High energy density in artificial heterostructures through relaxation time modulation"}],"groups":[{"id":"54809","name":"Georgia Tech-Europe (GTE)"}],"categories":[{"id":"135","name":"Research"}],"keywords":[{"id":"191566","name":"Georgia Tech-Europe"},{"id":"63681","name":"CNRS-GT UMI 2958"},{"id":"8016","name":"CoE"},{"id":"107031","name":"College of Engineering; School of Electrical and Computer Engineering"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto: andrea.gappell@europe.gatech.edu\u0022\u003EAndrea Gappell\u003C\/a\u003E, Communications Program Manager\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech-Europe\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["andrea.m.gappell@gmail.com"],"slides":[],"orientation":[],"userdata":""}},"674211":{"#nid":"674211","#data":{"type":"news","title":"Yu Receives Intel Outstanding Research Award for Novel Computing Hardware","body":[{"value":"\u003Cp\u003EGeorgia Tech School of Electrical and Computer Engineering Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003ESheming Yu\u003C\/a\u003E\u0026nbsp;has been awarded \u003Ca href=\u0022https:\/\/www.intel.com\/content\/www\/us\/en\/research\/news\/outstanding-researcher-awards-2023.html\u0022\u003EIntel\u0027s Outstanding Researcher Award.\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe award recognizes exceptional contributions made through Intel university-sponsored research that aligns with Intel\u2019s mission of creating world-changing technology to improve daily life.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe was recognized for his project \u201cSimulation of Probabilistic Learning Ecosystems (SIMPLE),\u201d with Ian Young and his team at Intel\u0027s Components Research Labs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhile most modern computer hardware is primarily based upon determinist zeros and ones, there are some phenomena that create uncertainty that is beyond the capabilities of this binary system.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EYu\u2019s team used conventional and emerging technologies and novel hardware-software co-design for pathfinding of a prototype small-scale accelerator chip. This super energy-efficient probabilistic hardware will be able to quantify this uncertainty and compute with more robustness.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team now looks to further research and prototype the design into silicon.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThrough this industry-academia collaboration, multiple students from \u003Ca\u003EYu\u2019s Laboratory for Emerging Devices and Circuits \u003C\/a\u003Ehave interned at Intel and been hired by the company for full-time positions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe is the first Georgia Tech faculty to receive the honor since \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/mukhopadhyay-receives-intel-outstanding-researcher-award\u0022\u003ESaibal Mukhopadhyay in 2019\u003C\/a\u003E. More recently, ECE assistant professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECong (Callie) Hao\u003C\/a\u003E \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/hao-earns-intel-rising-star-faculty-award\u0022\u003Ewon an Intel Rising Star Faculty Award\u003C\/a\u003E in 2023.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EYu\u2019s work has been recognized with a number of recent awards, including the Semiconductor Research Corporation (SRC) Inaugural Young Faculty Award in 2019 and the ACM\/IEEE Design Automation Conference (DAC) Under-40 Innovators Award 2020. He was named an \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/12\/ieee-fellow-status-bestowed-upon-durgin-kim-inan-yu-and-zhang\u0022\u003EInstitute of Electrical and Electronics Engineers (IEEE) Fellow in 2023.\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe chip will help quantify uncertainty that is beyond the capabilities of existing binary computing systems.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The chip will help quantify uncertainty that is beyond the capabilities of existing binary computing systems."}],"uid":"36558","created_gmt":"2024-04-16 17:19:56","changed_gmt":"2024-04-16 17:26:32","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-04-16T00:00:00-04:00","iso_date":"2024-04-16T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673722":{"id":"673722","type":"image","title":"shimeng_yu_2020.jpg","body":null,"created":"1713288003","gmt_created":"2024-04-16 17:20:03","changed":"1713288003","gmt_changed":"2024-04-16 17:20:03","alt":"Sheming Yu","file":{"fid":"257151","name":"shimeng_yu_2020.jpg","image_path":"\/sites\/default\/files\/2024\/04\/16\/shimeng_yu_2020.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/04\/16\/shimeng_yu_2020.jpg","mime":"image\/jpeg","size":50292,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/04\/16\/shimeng_yu_2020.jpg?itok=sw6u2OK_"}}},"media_ids":["673722"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"}],"keywords":[{"id":"4767","name":"Intel"},{"id":"208","name":"computing"},{"id":"101","name":"Award"},{"id":"365","name":"Research"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"674091":{"#nid":"674091","#data":{"type":"news","title":"Exploring One Grad Student\u2019s Trailblazing Research Journey","body":[{"value":"\u003Cp\u003EFollow Mo Jarin\u2019s Quest for Innovation, Entrepreneurship, and Personal Triumphs in the World of Environmental Engineering\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EThis is part one of the feature on Mo Jarin. Jarin is a Ph.D. student in environmental engineering who expects to graduate in May 2025.\u0026nbsp;\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMo Jarin, Ph.D. student in environmental engineering, grew up around the sights, sounds, and smells of a research lab. Throughout her childhood, Jarin tagged along with her Ph.D. parents to the lab where she played with the pipettes and string together the colorful test tubes to make necklaces. Surrounded by experiments and scientific inquiry from a young age, Jarin\u2019s fascination with the world of research was sparked early in life. \u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EEarly Influences in Environmental Engineering\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EA self-described \u201cthird culture kid,\u201d everyone in Jarin\u2019s family has a different first language. Jarin was raised in Japan by Bengali parents. After living in Japan for 10 years, her parents accepted jobs at Cornell University in Ithaca, New York, and the family moved to the United States.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThroughout the years, the family visited Jarin\u2019s parents\u2019 home country of Bangladesh. During these visits, Jarin experienced issues with her health. Water quality issues are prevalent in Bangladesh, and those issues effected Jarin the most. This experience coupled with Jarin\u2019s affinity toward research led her to the University of Buffalo for her undergrad.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EFinding Mentorship and Research Passion\u003C\/h2\u003E\r\n\r\n\u003Cp\u003E\u201cWhen I got into the college level, I was thinking about research, and I found a mentor who was Bengali,\u201d said Jarin. \u201cHe was working on water disinfection, so I explored that lab. Not only did I have interest in the research, but the mentor was wonderful. That\u2019s where I stuck for a couple years, and that was my first undergraduate research experience that I fulfilled.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJarin was working with nanotechnology focusing on clean water, specifically as it relates to other places of the world. While Jarin\u2019s bachelor\u2019s was in chemical engineering, her research was in environmental engineering, and she felt this work was making real-world impact.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cMy mentor [in the University of Buffalo\u2019s Department of Civil, Structural, and Environmental Engineering], Nirupam Aich, was the one who inspired me to apply to grad school,\u201d said Jarin. \u201cHe recommended a number of environmental programs\u2013really top universities. He built me into a better presenter, and I took all of that into my graduate application process.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EChoosing Georgia Tech\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EWhile Jarin received offers from prestigious universities across the country, her decision to attend Georgia Tech for her graduate education was significantly influenced by the people and opportunities it offered. She credits the students and staff she met during her visit to Tech as the impetus for her decision, specifically Danielle Lesperance Ramirez, a graduate coordinator in the School of Civil and Environmental Engineering graduate school, and her advisor, Xing Xie.\u003Cbr \/\u003E\r\n\u0026nbsp;\u003Cbr \/\u003E\r\n\u201cMy advisor is a very open, welcoming individual,\u201d said Jarin. \u201cDespite his extremely nice exterior, he pushed very hard for me to come here. He nominated me for the President\u2019s Fellowship that I received. He clearly showed that not only did he want to advise me and guide me, but he also showed me the potential I didn\u2019t see in myself. That is how I ended up here, and I have never regretted it since.\u201d \u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EXie\u2019s support fostered a transformative experience in her research journey.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cHe first pushed me into some of these entrepreneurial paths,\u201d said Jarin. \u201cIt really brought out all of my strengths, and now I\u2019m getting to do cutting-edge research. I don\u2019t think I would have had the slightest fraction of a similar experience anywhere else.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EStay tuned for part two of Jarin\u2019s story as she delves deeper into her research and impact.\u0026nbsp;\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"Follow Mo Jarin\u2019s Quest for Innovation, Entrepreneurship, and Personal Triumphs in the World of Environmental Engineering"}],"field_summary":[{"value":"\u003Cp\u003EFollow Mo Jarin\u2019s Quest for Innovation, Entrepreneurship, and Personal Triumphs in the World of Environmental Engineering\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Follow Mo Jarin\u2019s Quest for Innovation, Entrepreneurship, and Personal Triumphs in the World of Environmental Engineering"}],"uid":"36249","created_gmt":"2024-04-09 20:24:18","changed_gmt":"2024-04-11 14:32:50","author":"Sara Franc","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-04-09T00:00:00-04:00","iso_date":"2024-04-09T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673670":{"id":"673670","type":"image","title":"Mo Jarin2.jpg","body":null,"created":"1712755290","gmt_created":"2024-04-10 13:21:30","changed":"1712755290","gmt_changed":"2024-04-10 13:21:30","alt":"Mo Jarin","file":{"fid":"257093","name":"Mo Jarin2.jpg","image_path":"\/sites\/default\/files\/2024\/04\/10\/Mo%20Jarin2.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/04\/10\/Mo%20Jarin2.jpg","mime":"image\/jpeg","size":482645,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/04\/10\/Mo%20Jarin2.jpg?itok=MJNaylj2"}}},"media_ids":["673670"],"groups":[{"id":"221981","name":"Graduate Studies"}],"categories":[{"id":"154","name":"Environment"},{"id":"129","name":"Institute and Campus"}],"keywords":[{"id":"1808","name":"graduate students"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"672055":{"#nid":"672055","#data":{"type":"news","title":"The Challenges of Regulating Artificial Intelligence","body":[{"value":"\u003Cp\u003EIn 1950, Alan Turing asked, \u201cCan machines think?\u201d More than 70 years later, advancements in artificial intelligence are creating exciting possibilities and questions about its potential pitfalls.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EA recent executive order issued by President Joe Biden seeks to establish \u0022new standards for AI safety and security\u0022 while addressing consumer privacy concerns and promoting innovation. Georgia Tech experts have examined the key elements of the order and offer their thoughts on its scope and what comes next.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EA Precautionary Tale\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe order calls for the development of standards, tools, and tests to ensure the safe use of AI. From voice scams and phishing campaigns to larger-scale threats, the technology\u2019s potential dangers have been widely documented. But \u003Ca href=\u0022https:\/\/iac.gatech.edu\/people\/person\/margaret-e-kosal\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EMargaret Kosal\u003C\/a\u003E, associate professor in the Ivan Allen College of Liberal Arts, says that additional context is often needed to dispel hysteria.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022No one is going to be hooking up AI to launch nuclear weapons, but AI capabilities may enable targeting, or enable the command and control and the decision-making time to be compressed,\u201d she said. \u0026nbsp;\u003Cbr \/\u003E\r\n\u0026nbsp;\u003Cbr \/\u003E\r\nThe order will create an AI Safety and Security Board tasked with addressing critical threats. Companies developing foundation models that \u0022pose a serious risk to national security, national economic security, or national public health and safety\u201d will be required to notify the federal government when training the model and required to share the results of all red-team safety tests \u2014 a simulated cyberattack to test a system\u0027s defenses.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince the launch of ChatGPT in 2022, \u003Ca href=\u0022https:\/\/www.cnbc.com\/2023\/11\/28\/ai-like-chatgpt-is-creating-huge-increase-in-malicious-phishing-email.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ea CNBC report\u003C\/a\u003E details a 1,267% rise in phishing emails. \u003Ca href=\u0022https:\/\/faculty.cc.gatech.edu\/~srijan\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ESrijan Kumar\u003C\/a\u003E, assistant professor in the College of Computing, attributes the increase to the technology\u0027s availability and an inability to rein in \u0022bad actors.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe says these scams will only continue to get more sophisticated and personalized. They \u201ccan be created by knowing what you might be willing to fall prey to versus what I might fall prey to,\u201d said Kumar, whose systems have influenced misinformation detection on sites like X (formerly Twitter) and Wikipedia. \u201cAI is not going to autonomously do all of those bad things, but this order can ensure there are consequences for people who misuse it.\u201d\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EA Delicate Balance\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EBuilding an AI platform requires large amounts of data regardless of its intended application. Two primary goals of the executive order are protecting privacy and advancing equity.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo protect personal data, the order tasks Congress with evaluating how agencies collect and use commercially available information and address algorithmic discrimination.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAcknowledging that everyone should be allowed to have their voice represented in the outputs of AI data sets, \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/directory\/faculty\/desai\/index.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EDeven Desai,\u003C\/a\u003E associate professor in the Scheller College of Business, noted, \u0022There are people who don\u0027t want to be part of data sets, which is their right, but this means their voices won\u0027t be reflected in the outputs.\u201d\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe order also includes sections to address intellectual property concerns among inventors and creators, though legal challenges will likely set new precedents in the years ahead.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen that time comes, Kosal says that \u003Ca href=\u0022https:\/\/www.nytimes.com\/2023\/12\/27\/business\/media\/new-york-times-open-ai-microsoft-lawsuit.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Edefining \u201ctheft\u201d in the context of AI becomes the true challenge\u003C\/a\u003E and that, ultimately, money will play a significant role. \u0022If you spit out a Harry Potter book and read it yourself, nobody will care. It\u0027s when you start selling it to make money, and you don\u0027t share proceeds with the original people, then it becomes an issue,\u0022 she said.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EWhat Does AI-Generated Mean?\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe order instructs the Department of Commerce to develop guidelines for content authentication and watermarking to label AI-generated content. Desai questions what it means for something to be truly created by AI.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAn important distinction lies between using AI to assist a writer in organizing their thoughts and using the technology to generate content. He likens the trend to the music industry in the 1980s.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022Synthesizers really changed people\u0027s ability to generate music and, for a while, people thought that was horrible. They can just program the music. They\u0027re not. I am still the human responsible for that music, or that article in this case, so what is the point of the label?\u0022 he asks.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs AI assistance becomes commonplace in content creation, trusting the source of information is increasingly important. Recently, articles published on Sports Illustrated\u0027s website \u003Ca href=\u0022https:\/\/futurism.com\/sports-illustrated-ai-generated-writers\u0022\u003Efeatured AI-generated content\u003C\/a\u003E provided by a third-party company that had used a machine to write the content and create fake bylines. Sports Illustrated, which may not have known of the problem, ran the material without disclosure to readers. CEO Ross Levinsohn was ousted shortly after the story broke.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cPerhaps if the third party had disclosed its use of AI software, SI would have been able to assess how much AI was used and then chosen not to run the material, or to run it with a disclaimer that AI helped write the material,\u201d Desai said. \u0022Of course, even if they label the content as AI-generated, a reader still won\u0027t know exactly how much of the content came from AI or a human.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EAI and the Workforce\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EAs AI systems and models become more sophisticated, workers may become more concerned about being replaced. To counteract these concerns, the order calls for a study to examine AI\u2019s potential impact on labor markets and investments in workforce training efforts.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKumar compares the rise of AI to similar technological innovations throughout history and sees it as an opportunity for workers and industries to adapt. \u0022It\u0027s less a matter of AI replacing workers and more of reskilling people to use the new technology. It\u0027s no different from when assembly lines in the auto industry were created.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EPromoting Innovation and Competition\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe power to harness the full potential of AI has initiated a race to the top. Desai believes that part of the executive order providing resources to smaller developers can help level the playing field.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022There is a possibility here for markets to open up. Current players using models that weren\u0027t built with transparency in mind might struggle, but maybe that\u0027s OK.\u0022\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe issue of reliability and transparency comes into focus for Desai, especially as it relates to government usage of AI. The order calls on agencies to \u0022acquire specified AI products and services faster, more cheaply, and more effectively through more rapid and efficient contracting.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen taxpayer dollars are at stake, government can\u2019t afford to trust a technology it doesn\u2019t fully understand \u2014 a topic Desai \u003Ca href=\u0022https:\/\/papers.ssrn.com\/sol3\/papers.cfm?abstract_id=2959472\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ehas explored elsewhere\u003C\/a\u003E. \u0022You can\u2019t just say, \u2018We don\u2019t know how it works, but we trust it.\u2019 That\u2019s not going to work. So that\u2019s where there may be a slowdown in the government\u2019s ability to use private sector software if they can\u2019t explain how the thing works and to show that it doesn\u2019t have discriminatory issues.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EWhat\u0027s Next\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EPromoting and policing the safe use of AI cannot be done independently. Georgia Tech experts agree that participation on a global scale is necessary. To that end, the European Union will unveil its comprehensive EU AI Act, which includes a similar framework to the president\u0027s executive order.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDue to the evolving nature of AI, the executive order or the EU\u0027s actions will not be all-encompassing. Law often lags behind technology, but Kosal points out that it\u0027s crucial to think beyond what currently exists when crafting policy.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EExperts also agree that AI cannot be regulated or governed through a single document and that this order is likely the first in a series of policymaking moves. Kosal sees tremendous opportunity with the innovation surrounding AI but hopes the growing fear of its rise does not usher in another AI winter, in which interest and research funding fade.\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"As innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI."}],"field_summary":[{"value":"\u003Cp\u003EAs innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"As innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI."}],"uid":"36418","created_gmt":"2024-01-11 19:25:53","changed_gmt":"2024-04-10 21:07:00","author":"sgagliano3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-11T00:00:00-05:00","iso_date":"2024-01-11T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672744":{"id":"672744","type":"image","title":"Artificial Intelligence and Policy","body":null,"created":"1705003002","gmt_created":"2024-01-11 19:56:42","changed":"1705003002","gmt_changed":"2024-01-11 19:56:42","alt":"Artificial Intelligence and Policy","file":{"fid":"256040","name":"GettyImages-1191080384.jpg","image_path":"\/sites\/default\/files\/2024\/01\/11\/GettyImages-1191080384.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/11\/GettyImages-1191080384.jpg","mime":"image\/jpeg","size":15716234,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/11\/GettyImages-1191080384.jpg?itok=QW7a-19y"}}},"media_ids":["672744"],"related_links":[{"url":"https:\/\/news.gatech.edu\/ai-am-i","title":"AI: Am I...The Future of Artificial Intelligence at Georgia Tech"}],"groups":[{"id":"1214","name":"News Room"},{"id":"66220","name":"Neuro"}],"categories":[{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"151","name":"Policy, Social Sciences, and Liberal Arts"},{"id":"135","name":"Research"}],"keywords":[{"id":"2556","name":"artificial intelligence"},{"id":"8144","name":"Georgia Tech Yellow Jackets"},{"id":"187812","name":"artificial intelligence (AI)"},{"id":"172970","name":"go-neuro"}],"core_research_areas":[{"id":"145171","name":"Cybersecurity"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:Steven.gagliano@gatech.edu\u0022\u003ESteven Gagliano\u003C\/a\u003E - Institute Communications\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Steven.gagliano@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670214":{"#nid":"670214","#data":{"type":"news","title":"Hao and Li Join Department of Energy Artificial Intelligence Initiative to Propel Nuclear Physics Research","body":[{"value":"\u003Cp\u003EThe U.S. Department of Energy (DOE) announced\u0026nbsp;\u003Ca href=\u0022https:\/\/www.energy.gov\/science\/articles\/department-energy-announces-16-million-research-artificial-intelligence-and\u0022\u003E$16 million\u003C\/a\u003E\u0026nbsp;for fifteen projects that will leverage the power of artificial intelligence and machine learning (AI\/ML) to accelerate scientific discovery within the realm of nuclear physics. The fifteen projects were announced in August and will work to advance understanding of atomic structure and the nature of matter.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAmong the select group of researchers involved in a specific project are professors \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECong \u201cCallie\u201d Hao\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/pan-li\u0022\u003EPan Li\u003C\/a\u003E\u0026nbsp;in the\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;(ECE).\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHao and Li will play a pivotal role in the \u0022Intelligent Experiments Through Real-time AI: Fast Data Processing and Autonomous Detector Control for sPHENIX and Future EIC detectors\u0022 project; a $2 million endeavor being led by Ming Xiong Liu of the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.lanl.gov\/\u0022\u003ELos Alamos National Laboratory\u003C\/a\u003E\u0026nbsp;(LANL).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cI am thrilled to see how our achievements in computer architecture research can have cross-disciplinary impact on high-energy physics experiments, extending well beyond mere academic papers and hardware prototypes,\u201d said Hao. \u201cWe are highly motivated and proud to tackle real-world problems by offering solutions that are both intelligent and practical.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHao and her research team will work to furnish an ultra-fast field programmable gate arrays (FPGA) system for particle detection and tracking in high-energy physics experiments. The system will be equipped with an automated design flow that eliminates the need for manual intervention. Achieving this necessitates sophisticated hardware optimizations, coupled with algorithmic innovations, according to Hao.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELi and his team will contribute to the development of robust learning algorithms via domain adaptation methods, aiming to address the online shift of the beam point of particle collisions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAll projects are supported by the DOE Office of Science, Nuclear Physics Program, and were selected through a rigorous and competitive peer review process. According to the DOE press release, the fifteen projects will be conducted by researchers at eight DOE national laboratories and 22 universities. Projects will include the development of deep learning algorithms to identify a unique signal for studying physics of fundamental symmetry in extremely rare nuclear decays that if observed would demonstrate how our universe could have become dominated by matter rather than antimatter.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe research teams will develop an ultra-fast field-programmable gate array system and robust learning algorithms.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Hao\u0027s research team is developing an ultra-fast field-programmable gate array system to detect and track particles in high-energy physics experiments."}],"uid":"36172","created_gmt":"2023-10-05 18:34:38","changed_gmt":"2024-03-25 12:50:55","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-10-05T00:00:00-04:00","iso_date":"2023-10-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673477":{"id":"673477","type":"image","title":"Hao_Li_DOE Nuclear Physics graphic.jpg","body":null,"created":"1711371018","gmt_created":"2024-03-25 12:50:18","changed":"1711371018","gmt_changed":"2024-03-25 12:50:18","alt":"Pan Li and Callie Hao Nuclear Physics research graphic","file":{"fid":"256876","name":"Hao_Li_DOE Nuclear Physics graphic.jpg","image_path":"\/sites\/default\/files\/2024\/03\/25\/Hao_Li_DOE%20Nuclear%20Physics%20graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/03\/25\/Hao_Li_DOE%20Nuclear%20Physics%20graphic.jpg","mime":"image\/jpeg","size":86815,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/03\/25\/Hao_Li_DOE%20Nuclear%20Physics%20graphic.jpg?itok=drzufPii"}}},"media_ids":["673477"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[],"keywords":[{"id":"193134","name":"Cong"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"28931","name":"U.S. Department of Energy"},{"id":"2556","name":"artificial intelligence"},{"id":"9167","name":"machine learning"},{"id":"193135","name":"nuclear physics"},{"id":"193136","name":"field programmable gate arrays"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"673400":{"#nid":"673400","#data":{"type":"news","title":"Yu Wins Outstanding Paper Award at Electronic Components and Technology Conference","body":[{"value":"\u003Cp\u003EShengtao Yu won the Intel Outstanding Student Paper Award at the 2023 IEEE \u003Ca href=\u0022https:\/\/www.ectc.net\/\u0022\u003EElectronic Components and Technology Conference\u003C\/a\u003E (ECTC) in Orlando, Fla.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe presented his paper, \u201cScalable Fiber-Array-to-Chip Interconnections with Sub-Micron Alignment Accuracy,\u201d at the conference in June 2023 and was recently notified of the outstanding paper recognition.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe paper explored co-packaged optics (CPO) for next generation AI and mm-wave electronic systems, which will require optical connectivity in very close proximity to the electronics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cI got valuable technical feedback from the audience,\u201d said Yu, a Ph.D. candidate in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E.\u202f\u201cI also learned more about the exciting trends in the packaging industry.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis co-authors were his Ph.D. advisor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E and\u202fco-advisor ECE Regents Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/thomas-k-gaylord\u0022\u003EThomas Gaylord.\u003C\/a\u003E\u0026nbsp;Bakir also serves as the Interim Director of the GT \u003Ca href=\u0022https:\/\/sites.gatech.edu\/ien-prc\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E (PRC).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe research presented innovative design and technology to enable the passive alignment and interconnection of an array of optical fibers to an underlying photonic integrated circuit (PIC). The key to the demonstrated technology is a passive silicon chiplet, which contains 3D printed slots for fiber insertion, that precisely self-aligns to an underlying PIC at sub-micron scale.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis has the potential to eliminate active alignment techniques commonly used in photonics packaging and enable a scalable and silicon-based solution to fiber alignment and coupling. Photonic interconnection between modern 2.5D packages with PICs and optical fibers is a current key bottleneck.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis work will potentially lead to improved and scalable CPO architectures, enabling massive off-package bandwidth and reduced energy consumption\u202fof interconnects in data centers, which will be important to meet the rapidly increasing packaging demands of artificial intelligence applications and beyond.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe work was supported by the United States Air Force under Contract FA8650-20-C-1003 and in part by the Georgia Tech Institute for Coordinated Infrastructure (NNCI), through the National Science Foundation under Grant ECCS-2025462.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EYu plans to continue this research in Bakir\u2019s Integrated 3D Systems Group to create more robust and scalable designs that are compatible with the latest semiconductor technology.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. candidate was recognized for his research on next generation co-packaged optics.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. candidate was recognized for his research on next generation co-packaged optics."}],"uid":"36558","created_gmt":"2024-03-07 19:05:48","changed_gmt":"2024-03-08 15:56:03","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-03-07T00:00:00-05:00","iso_date":"2024-03-07T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673337":{"id":"673337","type":"image","title":"Shengtao SQ Graphic.jpg","body":null,"created":"1709837968","gmt_created":"2024-03-07 18:59:28","changed":"1709837953","gmt_changed":"2024-03-07 18:59:13","alt":"Shengtao Yu","file":{"fid":"256721","name":"Shengtao SQ Graphic.jpg","image_path":"\/sites\/default\/files\/2024\/03\/07\/Shengtao%20SQ%20Graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/03\/07\/Shengtao%20SQ%20Graphic.jpg","mime":"image\/jpeg","size":978595,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/03\/07\/Shengtao%20SQ%20Graphic.jpg?itok=DlRBP0y8"}}},"media_ids":["673337"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"193557","name":"co-packaged optics"},{"id":"193558","name":"CPO"},{"id":"125461","name":"ECTC"},{"id":"193559","name":"Outstanding Paper Award"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"673023":{"#nid":"673023","#data":{"type":"news","title":"Marshall and Matthews Recognized for Aluminum Nitride Semiconductor Research ","body":[{"value":"\u003Cp\u003EGeorgia Institute of Technology electrical and computer engineering \u0026nbsp;students Emily Marshall and Chris Matthews each earned Best Student Awards at the \u003Ca href=\u0022https:\/\/icns14.jp\/\u0022\u003EInternational Conference on Nitride Semiconductors\u003C\/a\u003E in Fukuoka, Japan on November 17, 2023.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMarshall, who is pursuing her M.S. and Ph.D. in ECE, received the award for her talk \u0022Pushing the Limits of Low-Temperature Growth of Improved-Quality ScAlN Via Metal-Rich Epitaxy,\u201d and Matthews, a recent ECE Ph.D. graduate, for his talk \u201cSurface Oxide Removal on AlN Substrates via Low Temperature Aluminum Flashing.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe conference featured over 1,200 participants and 400 presentations. Marshall and Matthews were among just a handful of students to have their research recognized.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMarshall\u2019s talk presented her team\u2019s prior success with growing improved-quality scandium aluminium nitride (ScAlN) and observations of a ScAIN coverage dependent and substrate temperature dependent scandium (Sc) catalytic effect. It also emphasized the importance of Marshall\u2019s current research in quantifying the Sc catalytic effect to improve ScAlN films and devices.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey both conducted their research in \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/william-alan-doolittle\u0022\u003EProfessor Alan Doolittle\u003C\/a\u003E\u2019s \u003Ca href=\u0022https:\/\/alan.ece.gatech.edu\/ASTF\/Files%20for%20Upload\/index.htm\u0022\u003EAdvanced Semiconductor Technology Facility\u003C\/a\u003E. The main focus of the lab is the advancement of semiconductor technology.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETheir current research utilizes molecular beam epitaxy (MBE) to grow films, uniquely using metal modulated epitaxy (MME), a specialized technique of MBE developed by the group that helps them to precisely control the buildup of metal film on the surface of the samples. This process creates higher-quality films at low temperatures.\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE students won Best Student Awards at the International Conference on Nitride Semiconductors in Fukuoka, Japan in November.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE students won Best Student Awards at the International Conference on Nitride Semiconductors in Fukuoka, Japan in November."}],"uid":"36558","created_gmt":"2024-02-16 15:18:59","changed_gmt":"2024-02-16 15:57:42","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-02-16T00:00:00-05:00","iso_date":"2024-02-16T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"673118":{"id":"673118","type":"image","title":"Untitled-1.jpg","body":null,"created":"1708096395","gmt_created":"2024-02-16 15:13:15","changed":"1708096375","gmt_changed":"2024-02-16 15:12:55","alt":"Emily Marshall and Chris Matthews","file":{"fid":"256474","name":"Untitled-1.jpg","image_path":"\/sites\/default\/files\/2024\/02\/16\/Untitled-1.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/02\/16\/Untitled-1.jpg","mime":"image\/jpeg","size":1072629,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/02\/16\/Untitled-1.jpg?itok=KxATB8Ef"}}},"media_ids":["673118"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"135","name":"Research"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"167609","name":"semiconductor"},{"id":"101","name":"Award"},{"id":"182931","name":"International Conference on Nitride Semiconductors"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"672404":{"#nid":"672404","#data":{"type":"news","title":"Bold Move to Columbus Marks First  Semiconductor Manufacturer in Region","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003E\u003Cspan\u003ECOLUMBUS and ATLANTA, GA \u2014\u003C\/span\u003E\u003C\/strong\u003E\u003Cspan\u003E Innovative partnering proved successful as \u003Ca href=\u0022https:\/\/unitedcv.org\/c4c\/\u0022\u003ECHIPS4CHIPS\u003C\/a\u003E announced the locating of the first semiconductor manufacturer in the Chattahoochee Valley. \u003Ca href=\u0022https:\/\/www.micromize.com\/\u0022\u003EMicromize\u003C\/a\u003E, a pioneering semiconductor manufacturer specializing in energy-efficient electronics for wearables and mobile devices, has chosen Columbus as the location for its inaugural manufacturing facility.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe move is the result of strategic partnerships between\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003EMicromize\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E, CHIPS4CHIPS (Chattahoochee Hub for Innovation and Production of Semiconductors\/C4C), and several programs at Georgia Tech\u2019s \u003Ca href=\u0022https:\/\/innovate.gatech.edu\/\u0022\u003EEnterprise Innovation Institute\u003C\/a\u003E, including its \u003Ca href=\u0022https:\/\/atdc.org\/\u0022\u003EAdvanced Technology Development Center\u003C\/a\u003E (ATDC), its \u003Ca href=\u0022https:\/\/gamep.org\/\u0022\u003EGeorgia Manufacturing Extension Partnership\u003C\/a\u003E, and the \u003Ca href=\u0022https:\/\/cedr.gatech.edu\/\u0022\u003ECenter for Economic Development Research\u003C\/a\u003E. It also signifies a collaborative effort to harness the cutting-edge innovations in semiconductor packaging available at\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003ETech\u2019s\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022http:\/\/research.gatech.edu\/nano\u0022\u003E\u003Cspan\u003EInstitute for Electronics and Nanotechnology\u003C\/span\u003E\u003C\/a\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022Our decision to locate in Columbus was driven by several crucial factors, and\u0026nbsp;we are thrilled about the opportunities that this vibrant city presents for our growth and development,\u201d said Prashant Patil, Micromize founder and CEO. \u201cThe work of CHIPS4CHIPS in supporting the semiconductor industry is commendable, and we are excited to be part of this innovative ecosystem.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThis exciting development was announced Tuesday, Jan. 23, at the Marcus Nanotechnology Center on Georgia Tech\u2019s campus to a large group of state legislators and other state officials, a delegation of business and civic leaders from Columbus, and leadership from Georgia Tech and ATDC. The announcement is a true look at how statewide partnerships can lead to success for the Columbus region.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EMicromize, a spinoff of the Massachusetts Institute of Technology, selected Georgia as its new home, in part, to take advantage of the semiconductor packaging expertise at Georgia Tech. The company plans to establish its\u0026nbsp;headquarters and manufacturing facility in Columbus, further solidifying its presence in the state\u2019s vibrant technology \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003Eecosystem. Additionally, Micromize will center its cutting-edge research and development on Georgia Tech\u0027s campus.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022The collaboration with Micromize is a significant milestone for CHIPS4CHIPS and the entire region,\u201d said Ben Moser, president and CEO of United Way of the Chattahoochee Valley and chair of CHIPS4CHIPS. \u201c\u003Cspan\u003EThis announcement marks the first of what we believe will be many to come, and we are thankful that Micromize recognizes the potential of our region for this industry. Columbus is poised for remarkable development, and we look forward to the positive impact that Micromize will bring to our community.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe strategic relocation is expected to create significant economic opportunities in the region. Micromize will bring 20-25 jobs to Columbus through its headquarters and manufacturing facility, contributing to the local workforce, and fostering growth. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EMicromize will center its Research \u0026amp; Development Lab at Georgia Tech\u2019s \u003Ca href=\u0022https:\/\/sites.gatech.edu\/ien-prc\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E, which is regarded as the world\u2019s best for semiconductor packaging research. This partnership represents a synergistic collaboration of industry leaders, research institutions, and the entrepreneurial ecosystem. Micromize\u0027s move to Columbus not only underscores the city\u0027s growing prominence as a technology hub, but also highlights the collaborative efforts driving innovation and economic development in the state of Georgia.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn addition to C4C\u2019s nationally recognized workforce development efforts, the Fort Moore Army base, and its skilled workforce, the region\u2019s proximity to a port and airport will facilitate efficient shipping, and\u0026nbsp;Columbus played a pivotal role in supporting the company by providing essential infrastructure, he said.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cOur collaboration with Georgia Tech enriches our talent pool, adds exponentially to our research and development capabilities, and access to mentorship at ATDC enhances our commercialization potential,\u201d Patil said. \u201cWe are also proud to be part of the effort to revitalize semiconductor manufacturing in the United States, with Columbus serving as our starting point as we embark on this exciting journey of growth and innovation.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EGeorgia Tech, a leader in microchips and nanotechnology research, innovation, and fabrication, provides fertile ground for Micromize\u0027s relocation. The Institute\u2019s commitment to advancing semiconductor technology aligns with the national push at the federal level (via the CHIPS and Science Act) to bring more semiconductor production to the U.S., making it more competitive in research, development, and manufacturing.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cAs the state\u2019s technology startup incubator, we\u2019re excited to welcome Micromize into our portfolio and to support them into the next phase of growth and expansion,\u201d said ATDC Director John Avery.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cMicrochips, semiconductor packaging, and microelectronics are critical to our national economy and national security. Micromize\u2019s choosing Georgia as its home to grow reflects what is proving to be a successful model when business, government, and research institutions such as Georgia Tech collaborate.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EInnovative partnering proved successful as CHIPS4CHIPS announced the locating of the first semiconductor manufacturer in the Chattahoochee Valley.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"CHIPS4CHIPS strategy, Georgia Tech collaboration, prove successful"}],"uid":"28137","created_gmt":"2024-01-24 15:44:06","changed_gmt":"2024-02-08 01:22:30","author":"P\u00e9ralte Paul","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-24T00:00:00-05:00","iso_date":"2024-01-24T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672851":{"id":"672851","type":"image","title":"Prashant Patil","body":"\u003Cp\u003EPrashant Patil, founder and CEO of Micromize, explains to a coalition of business, civic, and military stakeholders from Columbus, Georgia and Georgia Tech leaders why he opted to relocate his company to Columbus, Georgia from Massachusetts. (PHOTO: Chris Ruggiero)\u003C\/p\u003E\r\n","created":"1706111079","gmt_created":"2024-01-24 15:44:39","changed":"1706111998","gmt_changed":"2024-01-24 15:59:58","alt":"Speaker at podium","file":{"fid":"256173","name":"AR507336.JPG","image_path":"\/sites\/default\/files\/2024\/01\/24\/AR507336.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/24\/AR507336.JPG","mime":"image\/jpeg","size":10293731,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/24\/AR507336.JPG?itok=RxVgWreY"}},"672854":{"id":"672854","type":"image","title":"CHIPS4CHIPS - Georgia Tech","body":"\u003Cp\u003EA coalition of business and civic leaders from Columbus, Georgia and several programs at Georgia Tech, including ATDC, announced Jan. 23, 2024, that semiconductor manufacturer, Micromize, is relocating to Georgia from Massachusetts. (PHOTO: Chris Ruggiero)\u003C\/p\u003E\r\n","created":"1706116275","gmt_created":"2024-01-24 17:11:15","changed":"1706116429","gmt_changed":"2024-01-24 17:13:49","alt":"Group shot","file":{"fid":"256178","name":"AR507346.JPG","image_path":"\/sites\/default\/files\/2024\/01\/24\/AR507346.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/24\/AR507346.JPG","mime":"image\/jpeg","size":11235793,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/24\/AR507346.JPG?itok=yuuw3ooh"}},"672855":{"id":"672855","type":"image","title":"General Buzzard","body":"\u003Cp\u003EDavid Bridges, vice president of Georgia Tech\u0027s Enterprise Innovation Institute, speaks with Maj. Gen Curtis A. Buzzard, commanding general of the United States Army Maneuver Center of Excellence and\u0026nbsp;Fort Moore in Columbus. Because of its skilled workforce, Fort Moore was one reason Micromize selected Georgia for its manufacturing facility. (PHOTO: Chris Ruggiero)\u003C\/p\u003E\r\n","created":"1706116910","gmt_created":"2024-01-24 17:21:50","changed":"1706117915","gmt_changed":"2024-01-24 17:38:35","alt":"Two people conversing","file":{"fid":"256179","name":"AR507261 (edited).JPG","image_path":"\/sites\/default\/files\/2024\/01\/24\/AR507261%20%28edited%29.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/24\/AR507261%20%28edited%29.JPG","mime":"image\/jpeg","size":2304620,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/24\/AR507261%20%28edited%29.JPG?itok=nD9KlgVh"}},"672865":{"id":"672865","type":"image","title":"Richard Smith","body":"\u003Cp\u003EGeorgia House Rep. Richard Smith, (R-Columbus), chairman of the Rules Committee, discusses how the collaboration that led to Micromize coming to Columbus could serve as a blueprint for more semiconductor companies developing in or moving to Georgia. (PHOTO: Chris Ruggiero)\u003C\/p\u003E\r\n","created":"1706195876","gmt_created":"2024-01-25 15:17:56","changed":"1706196295","gmt_changed":"2024-01-25 15:24:55","alt":"Speaker at front of audience","file":{"fid":"256191","name":"AR507342.JPG","image_path":"\/sites\/default\/files\/2024\/01\/25\/AR507342.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/25\/AR507342.JPG","mime":"image\/jpeg","size":9983143,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/25\/AR507342.JPG?itok=vOXEPwxr"}}},"media_ids":["672851","672854","672855","672865"],"groups":[{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"139","name":"Business"},{"id":"131","name":"Economic Development and Policy"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"193447","name":"Micromize"},{"id":"143481","name":"Institute for Electroncs and Nanotechnology"},{"id":"4238","name":"atdc"},{"id":"16331","name":"GaMEP"},{"id":"184294","name":"Center for Economic Development Research"},{"id":"40101","name":"Columbus GA"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EP\u00e9ralte C. Paul\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cbr \/\u003E\r\n\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E404.316.1210\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cbr \/\u003E\r\n\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022mailto:peralte@atdc.org\u0022\u003Eperalte@atdc.org\u003C\/a\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["peralte@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"672490":{"#nid":"672490","#data":{"type":"news","title":"Lee Awarded Grant for High-Capacity Video Transmission Antenna Project","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Institute of Technology School of Electrical and Computer Engineering\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E Ph.D. candidate Seung Yoon Lee has received an \u003Ca href=\u0022https:\/\/www.ieeeaps.org\/awards\/ap-s-student-awards\/ap-s-doctoral-and-pre-doctoral-research-grant-recipients\u0022\u003EInstitute of Electrical and Electronics Engineers (IEEE) Antenna and Propagation Society (AP-S) \u003C\/a\u003Egrant for the development of a highly efficient on-chip antenna array, in hopes of addressing growing global mobile video traffic. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe International Telecommunication Union (ITU) predicts global mobile video traffic will account for more than 75 percent of total mobile traffic by 2030 due to the rise in virtual reality, augmented reality, and high-fidelity mobile holograms.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EConventional low-efficient on-chip antenna arrays are unlikely to be able to efficiently transmit these next-generation data-intensive applications.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ELee\u2019s project aims to design and create a 60 GHz electronically scanned array for high-speed wireless systems to help handle the potential huge increases in throughput.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EHe has conducted the research thus far in the \u003Ca href=\u0022https:\/\/antennas.ece.gatech.edu\/\u0022\u003EmmWave Antennas and Arrays Laboratory\u003C\/a\u003E\u0026nbsp;under the supervision of ECE Assistant Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/nima-ghalichechian\u0022\u003ENima Ghalichechian\u003C\/a\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe grant, which awards $5,000 to 10 Ph.D. candidates globally each year, aims to encourage careers in advanced electromagnetics, with selection based on the creativity and quality of proposed projects, along with discussions on the student\u0027s technical interests and skills.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ELee received his B.S. in computer and communication engineering from Korea University, and his M.S. in electrical engineering from the Pohang University of Science and Technology (POSTECH).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPrior to his time at Georgia Tech, he worked at Samsung Research and SK Hynix. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EHe\u2019s published 4 peer-reviewed journal articles, 11 international conference papers, and is the inventor of 19 patents.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EHis research interests include mmWave on-chip antennas, phase-change material reconfigurable RF devices, and robotic antenna measurement techniques, which has won him a number of awards such as the 2023 CREATION Award from Georgia Tech and the 2018 Best Paper Student Award from the IEEE International Symposium on Antennas and Propagation.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. candidate is working to develop a highly efficient on-chip antenna array to address growing global mobile video traffic.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. candidate is working to develop a highly efficient on-chip antenna array to address growing global mobile video traffic."}],"uid":"36558","created_gmt":"2024-01-26 20:09:43","changed_gmt":"2024-01-29 17:09:22","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-26T00:00:00-05:00","iso_date":"2024-01-26T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672892":{"id":"672892","type":"image","title":"Seung Yoon Lee Lab.jpg","body":null,"created":"1706547931","gmt_created":"2024-01-29 17:05:31","changed":"1706547931","gmt_changed":"2024-01-29 17:05:31","alt":"Seung Yoon Lee in the Lab","file":{"fid":"256219","name":"Seung Yoon Lee Lab.jpg","image_path":"\/sites\/default\/files\/2024\/01\/29\/Seung%20Yoon%20Lee%20Lab.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/29\/Seung%20Yoon%20Lee%20Lab.jpg","mime":"image\/jpeg","size":7974167,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/29\/Seung%20Yoon%20Lee%20Lab.jpg?itok=rkorXgU2"}}},"media_ids":["672892"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"135","name":"Research"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"2616","name":"antenna"},{"id":"2634","name":"grant"},{"id":"197","name":"video"},{"id":"1146","name":"transmission"},{"id":"1526","name":"wireless"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"672473":{"#nid":"672473","#data":{"type":"news","title":"The Challenges of Regulating Artificial Intelligence - Cloned","body":[{"value":"\u003Cp\u003EIn 1950, Alan Turing asked, \u201cCan machines think?\u201d More than 70 years later, advancements in artificial intelligence are creating exciting possibilities and questions about its potential pitfalls.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EA recent executive order issued by President Joe Biden seeks to establish \u0022new standards for AI safety and security\u0022 while addressing consumer privacy concerns and promoting innovation. Georgia Tech experts have examined the key elements of the order and offer their thoughts on its scope and what comes next.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EA Precautionary Tale\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe order calls for the development of standards, tools, and tests to ensure the safe use of AI. From voice scams and phishing campaigns to larger-scale threats, the technology\u2019s potential dangers have been widely documented. But \u003Ca href=\u0022https:\/\/iac.gatech.edu\/people\/person\/margaret-e-kosal\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EMargaret Kosal\u003C\/a\u003E, associate professor in the Ivan Allen College of Liberal Arts, says that additional context is often needed to dispel hysteria.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022No one is going to be hooking up AI to launch nuclear weapons, but AI capabilities may enable targeting, or enable the command and control and the decision-making time to be compressed,\u201d she said. \u0026nbsp;\u003Cbr \/\u003E\r\n\u0026nbsp;\u003Cbr \/\u003E\r\nThe order will create an AI Safety and Security Board tasked with addressing critical threats. Companies developing foundation models that \u0022pose a serious risk to national security, national economic security, or national public health and safety\u201d will be required to notify the federal government when training the model and required to share the results of all red-team safety tests \u2014 a simulated cyberattack to test a system\u0027s defenses.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince the launch of ChatGPT in 2022, \u003Ca href=\u0022https:\/\/www.cnbc.com\/2023\/11\/28\/ai-like-chatgpt-is-creating-huge-increase-in-malicious-phishing-email.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ea CNBC report\u003C\/a\u003E details a 1,267% rise in phishing emails. \u003Ca href=\u0022https:\/\/faculty.cc.gatech.edu\/~srijan\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ESrijan Kumar\u003C\/a\u003E, assistant professor in the College of Computing, attributes the increase to the technology\u0027s availability and an inability to rein in \u0022bad actors.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe says these scams will only continue to get more sophisticated and personalized. They \u201ccan be created by knowing what you might be willing to fall prey to versus what I might fall prey to,\u201d said Kumar, whose systems have influenced misinformation detection on sites like X (formerly Twitter) and Wikipedia. \u201cAI is not going to autonomously do all of those bad things, but this order can ensure there are consequences for people who misuse it.\u201d\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EA Delicate Balance\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EBuilding an AI platform requires large amounts of data regardless of its intended application. Two primary goals of the executive order are protecting privacy and advancing equity.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo protect personal data, the order tasks Congress with evaluating how agencies collect and use commercially available information and address algorithmic discrimination.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAcknowledging that everyone should be allowed to have their voice represented in the outputs of AI data sets, \u003Ca href=\u0022https:\/\/www.scheller.gatech.edu\/directory\/faculty\/desai\/index.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EDeven Desai,\u003C\/a\u003E associate professor in the Scheller College of Business, noted, \u0022There are people who don\u0027t want to be part of data sets, which is their right, but this means their voices won\u0027t be reflected in the outputs.\u201d\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe order also includes sections to address intellectual property concerns among inventors and creators, though legal challenges will likely set new precedents in the years ahead.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen that time comes, Kosal says that \u003Ca href=\u0022https:\/\/www.nytimes.com\/2023\/12\/27\/business\/media\/new-york-times-open-ai-microsoft-lawsuit.html\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Edefining \u201ctheft\u201d in the context of AI becomes the true challenge\u003C\/a\u003E and that, ultimately, money will play a significant role. \u0022If you spit out a Harry Potter book and read it yourself, nobody will care. It\u0027s when you start selling it to make money, and you don\u0027t share proceeds with the original people, then it becomes an issue,\u0022 she said.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EWhat Does AI-Generated Mean?\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe order instructs the Department of Commerce to develop guidelines for content authentication and watermarking to label AI-generated content. Desai questions what it means for something to be truly created by AI.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAn important distinction lies between using AI to assist a writer in organizing their thoughts and using the technology to generate content. He likens the trend to the music industry in the 1980s.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022Synthesizers really changed people\u0027s ability to generate music and, for a while, people thought that was horrible. They can just program the music. They\u0027re not. I am still the human responsible for that music, or that article in this case, so what is the point of the label?\u0022 he asks.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs AI assistance becomes commonplace in content creation, trusting the source of information is increasingly important. Recently, articles published on Sports Illustrated\u0027s website \u003Ca href=\u0022https:\/\/futurism.com\/sports-illustrated-ai-generated-writers\u0022\u003Efeatured AI-generated content\u003C\/a\u003E provided by a third-party company that had used a machine to write the content and create fake bylines. Sports Illustrated, which may not have known of the problem, ran the material without disclosure to readers. CEO Ross Levinsohn was ousted shortly after the story broke.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cPerhaps if the third party had disclosed its use of AI software, SI would have been able to assess how much AI was used and then chosen not to run the material, or to run it with a disclaimer that AI helped write the material,\u201d Desai said. \u0022Of course, even if they label the content as AI-generated, a reader still won\u0027t know exactly how much of the content came from AI or a human.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EAI and the Workforce\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EAs AI systems and models become more sophisticated, workers may become more concerned about being replaced. To counteract these concerns, the order calls for a study to examine AI\u2019s potential impact on labor markets and investments in workforce training efforts.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKumar compares the rise of AI to similar technological innovations throughout history and sees it as an opportunity for workers and industries to adapt. \u0022It\u0027s less a matter of AI replacing workers and more of reskilling people to use the new technology. It\u0027s no different from when assembly lines in the auto industry were created.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EPromoting Innovation and Competition\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe power to harness the full potential of AI has initiated a race to the top. Desai believes that part of the executive order providing resources to smaller developers can help level the playing field.\u0026nbsp;\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0022There is a possibility here for markets to open up. Current players using models that weren\u0027t built with transparency in mind might struggle, but maybe that\u0027s OK.\u0022\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe issue of reliability and transparency comes into focus for Desai, especially as it relates to government usage of AI. The order calls on agencies to \u0022acquire specified AI products and services faster, more cheaply, and more effectively through more rapid and efficient contracting.\u0022\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen taxpayer dollars are at stake, government can\u2019t afford to trust a technology it doesn\u2019t fully understand \u2014 a topic Desai \u003Ca href=\u0022https:\/\/papers.ssrn.com\/sol3\/papers.cfm?abstract_id=2959472\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ehas explored elsewhere\u003C\/a\u003E. \u0022You can\u2019t just say, \u2018We don\u2019t know how it works, but we trust it.\u2019 That\u2019s not going to work. So that\u2019s where there may be a slowdown in the government\u2019s ability to use private sector software if they can\u2019t explain how the thing works and to show that it doesn\u2019t have discriminatory issues.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003EWhat\u0027s Next\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EPromoting and policing the safe use of AI cannot be done independently. Georgia Tech experts agree that participation on a global scale is necessary. To that end, the European Union will unveil its comprehensive EU AI Act, which includes a similar framework to the president\u0027s executive order.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDue to the evolving nature of AI, the executive order or the EU\u0027s actions will not be all-encompassing. Law often lags behind technology, but Kosal points out that it\u0027s crucial to think beyond what currently exists when crafting policy.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EExperts also agree that AI cannot be regulated or governed through a single document and that this order is likely the first in a series of policymaking moves. Kosal sees tremendous opportunity with the innovation surrounding AI but hopes the growing fear of its rise does not usher in another AI winter, in which interest and research funding fade.\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":[{"value":"As innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI."}],"field_summary":[{"value":"\u003Cp\u003EAs innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"As innovation surrounding artificial intelligence continues, Georgia Tech experts offer their thoughts on the scope of the recent executive order and the challenges ahead in regulating AI."}],"uid":"27513","created_gmt":"2024-01-25 20:13:51","changed_gmt":"2024-01-25 20:13:51","author":"Walter Rich","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-11T00:00:00-05:00","iso_date":"2024-01-11T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672744":{"id":"672744","type":"image","title":"Artificial Intelligence and Policy","body":null,"created":"1705003002","gmt_created":"2024-01-11 19:56:42","changed":"1705003002","gmt_changed":"2024-01-11 19:56:42","alt":"Artificial Intelligence and Policy","file":{"fid":"256040","name":"GettyImages-1191080384.jpg","image_path":"\/sites\/default\/files\/2024\/01\/11\/GettyImages-1191080384.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/11\/GettyImages-1191080384.jpg","mime":"image\/jpeg","size":15716234,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/11\/GettyImages-1191080384.jpg?itok=QW7a-19y"}}},"media_ids":["672744"],"related_links":[{"url":"https:\/\/news.gatech.edu\/ai-am-i","title":"AI: Am I...The Future of Artificial Intelligence at Georgia Tech"}],"groups":[{"id":"1214","name":"News Room"}],"categories":[{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"151","name":"Policy, Social Sciences, and Liberal Arts"},{"id":"135","name":"Research"}],"keywords":[{"id":"2556","name":"artificial intelligence"},{"id":"8144","name":"Georgia Tech Yellow Jackets"},{"id":"187812","name":"artificial intelligence (AI)"}],"core_research_areas":[{"id":"145171","name":"Cybersecurity"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:Steven.gagliano@gatech.edu\u0022\u003ESteven Gagliano\u003C\/a\u003E - Institute Communications\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Steven.gagliano@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"672299":{"#nid":"672299","#data":{"type":"news","title":"Wan Recognized for Energy-Saving Research on Autonomous Systems","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech Electrical and Computer Engineering\u003C\/a\u003E (ECE)\u0026nbsp;Ph.D. candidate\u0026nbsp;\u003Ca href=\u0022http:\/\/zishenwan.github.io\u0022\u003EZishen Wan\u003C\/a\u003E\u0026nbsp;received the Best Poster Award at the\u0026nbsp;\u003Ca href=\u0022https:\/\/ieeesystemscouncil.org\/event\/symposium\/2023-ibm-ieee-casseds-ai-compute-symposium\u0022\u003E2023 IEEE CAS\/EDS AI Compute Symposium\u003C\/a\u003E on November 28, 2023.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award-winning poster, titled \u201c\u003Cem\u003ETowards Bit Error Robust Energy-Efficient Autonomous Systems\u003C\/em\u003E\u201d, presents a cross-layer robust learning framework aimed at achieving aggressive energy-saving yet computational-resilient autonomous swarms.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe research tackles the challenges of the distributed resource-constrained nodes, complex cyber-physical autonomous systems and increased chip bit failures, by proposing innovative approaches including robust offline\/on-device learning, collaborative swarm optimizations, and dynamic thermal-payload adjustments.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EApplied across hardware chips, swarm systems, and various autonomous scenarios, the technique demonstrates consistent performance-efficiency-robustness improvements for multi-drone systems.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThis acclaimed research is a product of a collaborative effort between Georgia Tech, IBM Research, Harvard University, and \u003C\/span\u003E\u003C\/span\u003ELawrence Livermore National Laboratory\u0026nbsp;(\u003Cspan\u003E\u003Cspan\u003ELLNL). The work is supported in part by the Center for the Co-Design of Cognitive Systems (CoCoSys),\u0026nbsp;\u003Ca href=\u0022https:\/\/www.iarpa.gov\/research-programs\/microe4ai\u0022\u003Ethe IAPRA MicroE4AI program\u003C\/a\u003E, and the \u003Ca href=\u0022https:\/\/crnch.gatech.edu\u0022\u003ECenter for Research into Novel Compute Hierarchies (CRNCH) PhD Fellowship\u003C\/a\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EZishen is advised by ECE professors \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/tushar-krishna\u0022\u003ETushar Krishna\u003C\/a\u003E. His research interests center around computer architecture, VLSI, and embedded systems, with a focus on building hardware and systems for cognitive intelligence and autonomous machines, aiming to advance their performance, efficiency, resilience, and trustworthiness.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE Ph.D. candidate won the Best Poster award at the 2023 IBM IEEE AI Compute Symposium.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE Ph.D. candidate won the Best Poster award at the 2023 IBM IEEE AI Compute Symposium."}],"uid":"36558","created_gmt":"2024-01-19 19:06:19","changed_gmt":"2024-01-22 15:04:11","author":"zwiniecki3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-19T00:00:00-05:00","iso_date":"2024-01-19T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671865":{"id":"671865","type":"image","title":"Zishen_Wan_Headshot.JPG","body":"\u003Cp\u003EPh.D. candidate\u0026nbsp;Zishen\u0026nbsp;Wan\u0026nbsp;in the\u0026nbsp;Georgia Tech Electrical and Computer Engineering.\u003C\/p\u003E\r\n","created":"1695905237","gmt_created":"2023-09-28 12:47:17","changed":"1695905237","gmt_changed":"2023-09-28 12:47:17","alt":"Photo of Ph.D. candidate Zishen Wan in the Georgia Tech Electrical and Computer Engineering","file":{"fid":"255010","name":"Zishen_Wan_Headshot.JPG","image_path":"\/sites\/default\/files\/2023\/09\/28\/Zishen_Wan_Headshot.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/28\/Zishen_Wan_Headshot.JPG","mime":"image\/jpeg","size":1270745,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/28\/Zishen_Wan_Headshot.JPG?itok=sJG6D0My"}}},"media_ids":["671865"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"135","name":"Research"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"208","name":"computing"},{"id":"193436","name":"Energy-saving"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EZachary Winiecki\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["zwiniecki3@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671934":{"#nid":"671934","#data":{"type":"news","title":"Novel Deep Learning-Driven Communication System Research Honored","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EA team of researchers featuring Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/biing-hwang-juang\u0022\u003EBiing-Hwang Juang\u003C\/a\u003E has received the \u003Ca href=\u0022https:\/\/signalprocessingsociety.org\/community-involvement\/award-recipients\u0022\u003E2023 IEEE Signal Processing Society (SPS) Best Paper Award\u003C\/a\u003E for their work on deep learning enabled semantic communication systems.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EJuang is the Motorola Foundation Chair Professor in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;and a Georgia Research Alliance Eminent Scholar. Co-authors of the paper are Professor Geoffrey Ye Li, research associate Zhijin Qin, and Ph.D. candidate Huiqiang Xie, all associated with Li\u2019s \u003Ca href=\u0022https:\/\/www.imperial.ac.uk\/intelligent-transmission-and-processing-laboratory\/\u0022\u003EIntelligent Transmission and Processing Laboratory\u003C\/a\u003E at \u003Ca href=\u0022https:\/\/www.imperial.ac.uk\/\u0022\u003EImperial College London\u003C\/a\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ELeveraging recent strides in deep learning and natural language processing, the paper, \u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/stamp\/stamp.jsp?tp=\u0026amp;arnumber=9398576\u0022\u003E\u201cDeep Learning Enabled Semantic Communication Systems,\u201d\u003C\/a\u003E seeks to redefine communication systems at the semantic level. The research proposes DeepSC, a deep learning-based semantic communication system designed for text transmission. Built upon the Transformer architecture, DeepSC aims to enhance system capacity and minimize semantic errors by focusing on recovering sentence meaning, as opposed to the bit- or symbol-errors seen in traditional communication methods.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAdditionally, transfer learning is introduced, to ensure adaptability across diverse communication environments and expedite model training. A novel metric called sentence similarity is also initiated to accurately assess the performance of semantic communications.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn comparison to traditional communication systems that overlook semantic information exchange, DeepSC proves to be more resilient to channel variations and demonstrates superior performance, particularly in low signal-to-noise (SNR) scenarios, as evidenced by extensive simulation results.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award-winning paper was originally published in IEEE Transactions on Signal Processing,\u0026nbsp;Volume 69, in 2021. Eligibility for the IEEE SPS Best Paper Award is based on a six-year window and honors the authors of a paper of exceptional merit dealing with a subject related to the Society\u2019s technical scope, and appearing in one of the Society\u2019s solely owned transactions.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team will be honored at the \u003Ca href=\u0022https:\/\/2024.ieeeicassp.org\/\u0022\u003E2024 IEEE International Conference on Acoustics, Speech, and Signal Processing (ICASSP 2024)\u003C\/a\u003E in Seoul, Korea this April.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe research proposed by a team featuring Professor Biing-Hwang Juang introduces DeepSC, a deep learning-based semantic communication system designed for text transmission.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The research proposed by a team featuring Professor Biing-Hwang Juang introduces DeepSC, a deep learning-based semantic communication system designed for text transmission."}],"uid":"36172","created_gmt":"2024-01-08 17:28:55","changed_gmt":"2024-01-16 14:54:45","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2024-01-08T00:00:00-05:00","iso_date":"2024-01-08T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672687":{"id":"672687","type":"image","title":"fred juang copy_square.jpg","body":null,"created":"1704734949","gmt_created":"2024-01-08 17:29:09","changed":"1704734949","gmt_changed":"2024-01-08 17:29:09","alt":"Headshot of Professor Biing-Hwang Juang","file":{"fid":"255969","name":"fred juang copy_square.jpg","image_path":"\/sites\/default\/files\/2024\/01\/08\/fred%20juang%20copy_square.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2024\/01\/08\/fred%20juang%20copy_square.jpg","mime":"image\/jpeg","size":1029933,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2024\/01\/08\/fred%20juang%20copy_square.jpg?itok=sTaQr0NX"}}},"media_ids":["672687"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"193401","name":"Biing-Hwang Juang"},{"id":"193402","name":"DeepSC"},{"id":"177270","name":"IEEE Signal Processing Society"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192892","name":"Georgia Research Alliance Eminent Scholar"},{"id":"83271","name":"Geoffrey Ye Li"},{"id":"193403","name":"Zhijin Qin"},{"id":"193404","name":"Huiqiang Xie"},{"id":"9703","name":"Imperial College London"},{"id":"193405","name":"deep learning-based semantic communication system"},{"id":"193406","name":"Transformer architecture"},{"id":"193407","name":"IEEE Transactions on Signal Processing"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671524":{"#nid":"671524","#data":{"type":"news","title":"Georgia Tech and Samsung Look to Unleash the Future of Digital Storage","body":[{"value":"\u003Cp\u003EThe rise of artificial intelligent (AI)-driven marvels hinges on cutting-edge data storage solutions. Without efficient data storage, applications like self-driving cars, life-saving healthcare diagnostics, and responsive voice assistants would fall short of their true potential.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAt the forefront of this evolving data storage landscape, a collaboration between the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.gatech.edu\/\u0022\u003EGeorgia Institute of Technology\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/www.samsung.com\/us\/\u0022 rel=\u0022noreferrer\u0022\u003ESamsung\u003C\/a\u003E\u0026nbsp;seeks to substantially decrease the voltage in existing technology, unlocking the full potential of AI systems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cFinding innovative solutions in data storage is paramount, it\u2019s not just about saving photos or documents anymore. The storage needed is about enabling AI systems to transform how we interact with our devices, the world around us, and even each other,\u201d said\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/asif-islam-khan\u0022\u003EAsif Khan\u003C\/a\u003E, an assistant professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;(ECE) with a joint appointment in the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering\u003C\/a\u003E\u0026nbsp;(MSE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKhan\u0027s lab is spearheading the collaboration which brings together three ECE labs, including those of Professors\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/suman-datta\u0022\u003ESuman Datta\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003EShimeng Yu\u003C\/a\u003E. The lead author of the paper is Dipjyoti Das, a postdoctoral fellow under Khan\u0027s supervision. The second author, Hyeonwoo Park, conducts research under Datta. The team is joined by researchers from MSE, the\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/materials\u0022\u003EInstitute of Materials\u003C\/a\u003E, the\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute of Electronics and Nanotechnology\u003C\/a\u003E, and a dedicated team from Samsung.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cThis is a pivotal era of transformation and opportunity in high-memory compute,\u201d said co-author Suhwan Lim, an engineer at Samsung. \u201cStrategic intersectoral relationships like this between Samsung and Georgia Tech nurture innovative thinking and lead to exciting experiential results that push us all forward.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdding to the already substantial Georgia Tech presence in the field of computer memory storage, the team\u0027s findings will be featured at the upcoming\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ieee-iedm.org\/\u0022 rel=\u0022noreferrer\u0022\u003EInternational Electron Devices Meeting\u003C\/a\u003E\u0026nbsp;(IEDM) in San Francisco this month.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EThe Quest for Voltage Efficiency\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe research focuses on improving NAND flash technology found at the core of storage devices like solid-state hard drives, USB sticks, and SD cards. NAND boasts an impressive 1,000-layer 3D architecture, cramming 100 terabytes of data into a minuscule space.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHowever, the critical challenge is NAND\u2019s persistent high voltage requirements. Exceeding 20 volts poses challenges in computing due to increased energy consumption, heat generation, and the risk of damaging electronic components.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cNAND has been the backbone of data storage, so our research doesn\u0027t attempt to replace it; it\u0027s an upgrade. We\u0027re boosting NAND\u0027s power and pushing it into the digital storage future,\u201d said Das, who designed and executed experiments, as well as contributed to characterization.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EA Ferroelectric Future\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe paper\u2019s groundbreaking proposal aims to revolutionize NAND flash technology by replacing the traditional NAND gate stack \u2014 a multi-layered structure in a transistor essential for controlling the flow of electrical current in semiconductor devices \u2014 with a new ferroelectric structure and a tunneling barrier.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team\u0027s method, introducing aluminum oxide (Al2O3) in the middle of the ferroelectric stack, has dramatically improved data storage capability, reducing voltage requirements by an impressive 40-60%.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditionally, the study reveals that the Al2O3\u0026nbsp;layer functions as a tunnel barrier, impeding electron motion and establishing a dipole, creating an additional electric field that aligns with the polarization direction, boosting device memory performance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe experiential findings could transform various sectors, including AI, mobile devices, edge data processing, embedded systems, and overall computing efficiency.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cThis breakthrough charts a new course towards more efficient, reliable and dense data storage solution,\u201d said Datta, who is the Joseph M. Pettit Chair of Advanced Computing in ECE and a Georgia Research Alliance (GRA) Eminent Scholar. \u201cWe are grateful to Samsung for their continued support, as we work towards the next milestone.\u201d\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ELooking for Collective Solutions to Shared Challenges\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAccording to Das, the approach not only demonstrates the capability to achieve reduced voltage and enhanced memory but also aligns with scalability and broad industry adoption.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs the project ventures into commercial avenues, the input of Samsung\u0027s researchers will be crucial. Das and Park are actively uncovering the intricacies of disturbances that could impede the market acceptance of the new gate stack.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn this context, disturbances refer to any unintended disruptions or deviations from transistor behavior expectations. Das stresses the importance of understanding, controlling, and clearly defining disturbance specifications. Establishing a well-defined threshold for disturbances is pivotal for achieving widespread commercialization readiness in their research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cWorking alongside industry leaders like Samsung is essential for any endeavor aiming to make a transformative impact in everyday technology,\u201d added Khan. \u201cIt becomes particularly pertinent as we collectively look towards a future dominated by the power required to fuel advancements in AI.\u201d\u003Cbr \/\u003E\r\n\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003ECitation: Dipjyoti Das*, Hyeonwoo Park*, Zekai Wang, Chengyang Zhang, Prasanna Venkatesan Ravindran, Chinsung Park, Nashrah Afroze, Po-Kai Hsu, Mengkun Tian, Hang Chen, Winston Chern, Suhwan Lim, Kwangsoo Kim, Kijoon Kim, Wanki Kim, Daewon Ha; Shimeng Yu, Suman Datta, Asif Khan. \u201cExperimental Demonstration and Modeling of a Ferroelectric Gate Stack with a Tunnel Dielectric Insert for NAND Applications.\u201d Proceedings of the 2023 IEEE International Electron Devices Meeting (IEDM). Paper # 24.1\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe collaboration hopes to redefine digital storage, tackling the core of AI progress by reducing voltage in NAND flash technology through a new ferroelectric structure.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The collaboration hopes to redefine digital storage, tackling the core of AI progress by reducing voltage in NAND flash technology through a new ferroelectric structure."}],"uid":"36172","created_gmt":"2023-12-11 19:23:44","changed_gmt":"2023-12-11 21:10:20","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-12-11T00:00:00-05:00","iso_date":"2023-12-11T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672548":{"id":"672548","type":"image","title":"NAND Fero_graphic.png","body":null,"created":"1702322328","gmt_created":"2023-12-11 19:18:48","changed":"1702322328","gmt_changed":"2023-12-11 19:18:48","alt":"stock art of computer memory","file":{"fid":"255802","name":"NAND Fero_graphic.png","image_path":"\/sites\/default\/files\/2023\/12\/11\/NAND%20Fero_graphic.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/12\/11\/NAND%20Fero_graphic.png","mime":"image\/png","size":974642,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/12\/11\/NAND%20Fero_graphic.png?itok=Eq3y19F1"}}},"media_ids":["672548"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"167680","name":"Samsung"},{"id":"178244","name":"Asif Khan"},{"id":"191062","name":"Suman Datta"},{"id":"178857","name":"Shimeng Yu"},{"id":"193345","name":"Dipjyoti Das"},{"id":"193346","name":"Hyeonwoo Park"},{"id":"193347","name":"Material Science Engineering"},{"id":"193348","name":"Institute of Materials"},{"id":"41411","name":"Institute of Electronics and Nanotechnology"},{"id":"193349","name":"digital storage"},{"id":"193350","name":"computer memory"},{"id":"13685","name":"ferroelectric"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671302":{"#nid":"671302","#data":{"type":"news","title":"Semiconductor Company Falcomm Raises $4M in Seed Funding to Advance Ultra-Efficient Power Amplifiers, Hires Industry Leaders","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/www.squadra.vc\/\u0022\u003E\u003Cspan\u003E\u003Cspan\u003ESquadra Ventures\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E led the round with participation from Cambium Capital, Draper Cygnus, and the Georgia Tech Foundation.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFalcomm is built on breakthroughs made over six years in the lab of founder and CEO Edgar Garay to revolutionize the power amplifier, a semiconductor found in devices from satellites to IoT to cellphones, that conditions and blasts the 1s and 0s from software through an antenna. Falcomm\u2019s Dual-Drive PA combines ultra-efficient performance with an architecture that lends itself to production at scale.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cPower amplifiers are the workhorse of the modern electronic era, but improvement to this technology hasn\u2019t kept pace with the rise of the innovation economy,\u201d said Garay, who holds a doctorate in electrical engineering from Georgia Tech\u2019s \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E, where he conducted the research that led to the formation of his startup.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cFalcomm\u2019s ultra-efficient, silicon-proven technology will bring advances in power and efficiency to the semiconductor industry that help communications manufacturers to realize massive efficiency gains, while lowering costs. With urgent challenges in the environment and supply chain, we can\u2019t wait another 90 years for change.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EWith simultaneous transmission at each terminal of a transistor, the Dual-Drive PA delivers performance that is 1.8 times more efficient at 2 times higher power, with half of the silicon area requirements of traditional power amplifiers. For manufacturers, these gains will reduce thermal management and energy costs, while easing overall system requirements.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EA patented architectural design allows the product to be manufactured in high volume by semiconductor foundries in the United States. With fabless technology, the company is poised to grow a network of industry partners that catalyzes expansion in the $23 billion power amplifier market.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EBorn in Venezuela, Garay developed a passion for using science and engineering to solve problems while repairing machinery on a farm in his hometown. While pursuing doctoral studies at Georgia Tech, he recognized the opportunity to bring innovation to the power amplifier, which had not changed in decades despite the rapid advance of technology and its critical role in devices.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EGaray\u2019s research resulted in multiple patents, spurring him to spin out the technology and create Falcomm through assistance from Georgia Tech resources, including\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/venturelab.gatech.edu\/\u0022\u003E\u003Cspan\u003E\u003Cspan\u003EVentureLab\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u0026nbsp;\u003Cspan\u003E\u003Cspan\u003Eand\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/create-x.gatech.edu\/\u0022\u003E\u003Cspan\u003E\u003Cspan\u003ECREATE-X\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E. Falcomm is the first company to receive investment from the Georgia Tech Foundation.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cGeorgia Tech is proud to support our academic innovators to help them ensure their inventions have real-world impact,\u201d said Raghupathy Sivakumar, Georgia Tech\u2019s vice president of Commercialization and chief commercialization officer. \u201cThe Office of Commercialization is rapidly expanding our programs and initiatives to build out the largest and most robust entrepreneurial ecosystem at any public university. I am happy to say that Falcomm is the recipient of the first equity investment out of our new Research Impact Fund targeted specifically at \u003Ca href=\u0022https:\/\/news.gatech.edu\/news\/2021\/12\/17\/georgia-tech-students-microchip-startup-reduces-energy-waste-amplifies-power\u0022\u003Espinouts based on Georgia Tech\u003C\/a\u003E\u0026nbsp;intellectual property.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe Falcomm team was recently bolstered by the addition of pioneering industry leaders who have demonstrated a track record of innovation in telecommunications, wireless, and semiconductors:\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003E\u003Cspan\u003E\u003Cspan\u003EThomas Cameron, Ph.D., chief strategy officer,\u003C\/span\u003E\u003C\/span\u003E\u003C\/strong\u003E\u003Cstrong\u003E\u0026nbsp;\u003C\/strong\u003E\u003Cspan\u003E\u003Cspan\u003Eis a 35-year veteran of technology research and development in the wireless industry. During a 12-year stint at Analog Devices, Cameron served as chief technology officer of the Communications Business Unit and was a leading evangelist for the adoption of 5G connectivity. He held leadership and engineering roles in the RF industry at Bell Northern Research, Nortel, Sirenza Microdevices, and WJ Communications. Cameron has seven patents in wireless technology and has authored numerous papers and technical articles.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003E\u003Cspan\u003E\u003Cspan\u003ENed Cahoon, director of Foundry and Customer Relationships,\u003C\/span\u003E\u003C\/span\u003E\u003C\/strong\u003E\u003Cstrong\u003E\u0026nbsp;\u003C\/strong\u003E\u003Cspan\u003E\u003Cspan\u003Ebrings more than 20 years of RF business development experience across the mobile and wireless infrastructure industries. He helped to stand up IBM\u2019s $1 billion RF business before joining GlobalFoundries in 2016, where he served as a fellow in the office of the chief technology officer. A senior design and go-to-market leader, Cahoon brings experience building networks across foundries, academia, and technology companies.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFor Falcomm, the funding follows quickly on the heels of the company\u2019s selection to the TechCrunch Startup Battlefield 200 in 2023. The company is a graduate of the\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/www.pr-inside.com\/berkeley-skydeck-accelerator-presents-batch-12-startups-at-demo-day-r4848718.htm\u0022\u003E\u003Cspan\u003E\u003Cspan\u003EBerkeley SkyDeck Accelerator\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u0026nbsp;\u003Cspan\u003E\u003Cspan\u003Eand the\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/www.prnewswire.com\/news-releases\/qualcomm-sponsoring-evonexus-incubator-demo-day-june-26th-2023-301845503.html\u0022\u003E\u003Cspan\u003E\u003Cspan\u003EEvoNexus incubator\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EBringing innovation to the tiny power amplifier can have a massive impact on some of the nation\u2019s most pressing challenges. The energy efficiency gains resulting from an increase in power output come at a time of growing urgency around climate change. The ability to manufacture domestically comes at a time when nearshoring is a priority to address cost and supply chain challenges underscored by the global semiconductor shortage and resulting CHIPS Act.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cEdgar and his team are just as inspiring as they are hard-working. They have shown that it\u2019s possible to assemble the talent and operations to innovate on a foundational technology that hasn\u2019t seen meaningful advances in decades anywhere in the country,\u201d said Guy Filippelli, Squadra Ventures\u2019 managing partner. \u201cBy boosting efficiency and manufacturing domestically in the critical semiconductor industry, Falcomm\u2019s innovations will bolster American competitiveness.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe funding will be used to accelerate go-to-market activities with satellite companies and wireless infrastructure manufacturers, advance the company\u2019s patented technology, and expand the team. Falcomm is actively hiring for roles in operations, engineering, and design.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/apply.workable.com\/falcomm\/\u0022\u003E\u003Cspan\u003E\u003Cspan\u003EView job openings\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003E\u003Cspan\u003E\u003Cspan\u003EATLANTA\u003C\/span\u003E\u003C\/span\u003E\u003C\/strong\u003E\u003Cspan\u003E\u003Cspan\u003E and \u003Cstrong\u003EBALTIMORE\u003C\/strong\u003E \u003Cstrong\u003E\u2014\u003C\/strong\u003E\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/myfalcomm.com\/\u0022\u003E\u003Cspan\u003E\u003Cspan\u003EFalcomm\u003C\/span\u003E\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E, the semiconductor company providing ultra-efficient power amplifiers to the wireless communications market, announced that it has raised $4 million in seed funding and hired two industry leaders to accelerate the development of its next-generation Dual-Drive PA and expand its network of hardware manufacturers.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Seed round includes four investor partners"}],"uid":"28137","created_gmt":"2023-11-29 18:44:24","changed_gmt":"2023-12-05 17:39:43","author":"P\u00e9ralte Paul","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-29T00:00:00-05:00","iso_date":"2023-11-29T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672474":{"id":"672474","type":"image","title":"Edgar Garay.jpeg","body":"\u003Cp\u003EEdgar Garay is CEO and founder of Falcomm.\u003C\/p\u003E\r\n","created":"1701288041","gmt_created":"2023-11-29 20:00:41","changed":"1701288041","gmt_changed":"2023-11-29 20:00:41","alt":"Edgar Garay headshot","file":{"fid":"255713","name":"Edgar Garay.jpeg","image_path":"\/sites\/default\/files\/2023\/11\/29\/Edgar%20Garay_0.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/11\/29\/Edgar%20Garay_0.jpeg","mime":"image\/jpeg","size":1787708,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/11\/29\/Edgar%20Garay_0.jpeg?itok=uOokjybN"}}},"media_ids":["672474"],"groups":[{"id":"1214","name":"News Room"},{"id":"655285","name":"GT Commercialization"}],"categories":[{"id":"139","name":"Business"},{"id":"145","name":"Engineering"},{"id":"8862","name":"Student Research"}],"keywords":[{"id":"189594","name":"Falcomm"},{"id":"4193","name":"venturelab"},{"id":"137161","name":"CREATE-X"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EFor Falcomm:\u003C\/strong\u003E\u003Cbr \/\u003E\r\nStephen Babcock,\u0026nbsp;\u003Ca href=\u0022mailto:stephen@squadra.vc\u0022\u003Estephen@squadra.vc\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EFor Georgia Tech:\u003C\/strong\u003E\u003Cbr \/\u003E\r\nP\u00e9ralte C. Paul\u003Cbr \/\u003E\r\nperalte@gatech.edu\u003Cbr \/\u003E\r\n404.316.1210\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["peralte@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"671303":{"#nid":"671303","#data":{"type":"news","title":"Tentzeris Appointed Inaugural Ed and Pat Joy Chair in Antennas","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/emmanouil-m-tentzeris\u0022\u003E\u003Cspan\u003EManos (Emnanouil) M. Tentzeris\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u0026nbsp;has been\u0026nbsp;appointed the\u0026nbsp;inaugural Ed and Pat Joy Chair in Antennas in the\u0026nbsp;\u003C\/span\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003E\u003Cspan\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u0026nbsp;(ECE), effective\u0026nbsp;November 1, 2023.\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003ESince 2016, Tentzeris has held the Ken Byers Professorship in flexible electronics in ECE. He joined the faculty in 1998 and leads the \u003C\/span\u003E\u003Ca href=\u0022https:\/\/athena.gatech.edu\/\u0022\u003E\u003Cspan\u003EATHENA Research Group\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E.\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003EEd Joy, co-namesake of the endowment with his wife Pat, holds the title of professor emeritus in ECE. His tenure as a professor of electrical engineering in the School spanned from 1970 to 1998, with a specialization in near-field antenna measurements.\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003ETentzeris,a noteworthy first recipient of the title, boasts an extensive research portfolio covering many domains. His expertise spans 3D Printed RF electronics, antennas and modules, flexible and conformal electronics an phased antenna arrays up to sub-THz, origami and morphing electromagnetics, Highly Integrated\/Multilayer Packaging for RF and Wireless Applications using ceramic and organic flexible materials, \u201cgreen\u201d paper-based RFIDs and sensors, nanostructures for RF, wireless sensors, energy harvesting and wireless power transfer\/wireless power grids, reconfigurable intelligent metasurfaces, heterogeneous integration and SOP-integrated (UWB, multiband, conformal) antennas.\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003EHis body of work includes more than 850 papers in refereed Journals and Conference Proceedings, 5 books and 25 book chapters. Recognized for his significant contributions to wireless communications encompassing additively manufactured antenna arrays and RF modules as well as wireless power transfer, wireless sensors and microlocalization\/RFIDs, he has been awarded three\u0026nbsp;significant\u0026nbsp;research accolades in recent years:\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cul type=\u0022disc\u0022\u003E\r\n\t\u003Cli\u003E\u003Cspan\u003E2022 Georgia Tech Outstanding Doctoral Thesis Advisor Award\u003C\/span\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cspan\u003E2021 IEEE Antennas and Propagation Symposium (APS) Best Student Paper Award\u003C\/span\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cspan\u003E2021\u0026nbsp;\u003C\/span\u003E\u003Ca href=\u0022https:\/\/youtu.be\/sNuFU3H5GR0\u0022\u003E\u003Cspan\u003E\u00225G as a Wireless Grid\u0022 technology\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E was featured as one of\u0026nbsp;\u003C\/span\u003E\u003Ca href=\u0022https:\/\/www.weforum.org\/agenda\/2021\/11\/these-are-the-top-10-emerging-technologies-of-2021\/\u0022\u003E\u003Cspan\u003Ethe World Economic Forum\u2019s Top 10 Emerging Technologies of 2021.\u003C\/span\u003E\u003C\/a\u003E\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003EHis influence extends beyond the Georgia Tech, as Tentzeris has served as a Distinguished Lecturer for three IEEE societies: IEEE Microwave Theory and Technology Society (MTT), the IEEE Council on Radio Frequency Identification, and IEEE Electronic Packaging Society (EPS), where he currently lectures.\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003EIn recognition of his exceptional contributions to flexible hybrid electronics and multilayer RF Modules, Tentzeris was honored as an IEEE Fellow by the Microwave Theory and Techniques in 2010 as well as a Fellow of the Electromagnetics Academy.\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe ECE professor is recognized for his significant contributions to wireless communications encompassing additively manufactured antenna arrays and RF modules as well as wireless power transfer.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The ECE professor is recognized for his significant contributions to wireless communications encompassing additively manufactured antenna arrays and RF modules as well as wireless power transfer."}],"uid":"36172","created_gmt":"2023-11-29 20:04:45","changed_gmt":"2023-11-29 20:25:27","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-29T00:00:00-05:00","iso_date":"2023-11-29T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671170":{"id":"671170","type":"image","title":"cropped_manostentzeris131018ar308_web.jpg","body":"\u003Cp\u003EManos M. Tentzeris, Ken Byers Professor in Flexible Electronics at the Georgia Tech School of Electrical and Computer Engineering\u003C\/p\u003E\r\n","created":"1689343678","gmt_created":"2023-07-14 14:07:58","changed":"1689343678","gmt_changed":"2023-07-14 14:07:58","alt":"Photo of Professor Manos M. Tentzeris","file":{"fid":"254184","name":"cropped_manostentzeris131018ar308_web.jpg","image_path":"\/sites\/default\/files\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg","mime":"image\/jpeg","size":820288,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/07\/14\/cropped_manostentzeris131018ar308_web.jpg?itok=rSlYjzW7"}}},"media_ids":["671170"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"192847","name":"Manos M. Tentzeris"},{"id":"193316","name":"Ed and Pat Joy Chair in Antennas"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"189546","name":"ATHENA Research Group"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670977":{"#nid":"670977","#data":{"type":"news","title":"Cai Elected Optica Fellow for Pioneering Work in Plasmonics and Metamaterials","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/wenshan-cai\u0022\u003EWenshan Cai\u003C\/a\u003E has achieved a prestigious milestone by being elected to the \u003Ca href=\u0022https:\/\/www.optica.org\/\u0022\u003EOptica (formerly OSA), Advancing Optics and Photonics Worldwide\u003C\/a\u003E, 2024 Fellow Class. A professor in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;Cai earned the fellowship for his groundbreaking contributions in plasmonics and metamaterials, encompassing both original discoveries and knowledge dissemination.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ESince becoming a part of the Georgia Tech faculty in 2012, where he holds a joint appointment in Materials Science and Engineering, Cai has played a pivotal role in advancing research on nanophotonic materials and devices. Notably, his authored work, \u0022Optical Metamaterials: Fundamentals and Applications,\u0022 serves as a globally recognized textbook and reference.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ECai\u0027s accolades include the OSA\/SPIE Joseph W. Goodman Book Writing Award, the CooperVision Science \u0026amp; Technology Award, and the Office of Naval Research Young Investigator Award. He is also a Fellow of SPIE, the international society for optics and photonics.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EOptica Fellows, a select group representing no more than 10 percent of the total membership, are individuals who have demonstrated exceptional dedication to advancing optics and photonics. The election process is highly competitive, with candidates recommended by the Fellow Members Committee and subsequently approved by the Awards Council and Board of Directors.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAlongside 128 other distinguished individuals, Cai will be honored at Optica conferences and events throughout 2024. The comprehensive list of the 2024 Optica Fellows is accessible \u003Ca href=\u0022https:\/\/www.optica.org\/about\/newsroom\/news_releases\/2023\/october\/optica_announces_2024_fellows_class\/\u0022\u003Eonline.\u003C\/a\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor Wenshan Cai secures a spot in Optica\u0027s prestigious 2024 Fellow Class, recognizing his groundbreaking contributions that have advanced the field of optics and photonics.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Professor Wenshan Cai secures a spot in Optica\u0027s prestigious 2024 Fellow Class, recognizing his groundbreaking contributions that have advanced the field of optics and photonics."}],"uid":"36172","created_gmt":"2023-11-09 18:23:17","changed_gmt":"2023-11-20 01:06:07","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-11-09T00:00:00-05:00","iso_date":"2023-11-09T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"672352":{"id":"672352","type":"image","title":"Georgia Tech Professor Wenshan Cai\u00a0","body":"\u003Cp\u003EGeorgia Tech Professor Wenshan Cai\u0026nbsp;\u003C\/p\u003E\r\n","created":"1699644046","gmt_created":"2023-11-10 19:20:46","changed":"1699644046","gmt_changed":"2023-11-10 19:20:46","alt":"Georgia Tech Professor Wenshan Cai\u00a0","file":{"fid":"255578","name":"Cai_5x7_B.jpg","image_path":"\/sites\/default\/files\/2023\/11\/10\/Cai_5x7_B.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/11\/10\/Cai_5x7_B.jpg","mime":"image\/jpeg","size":1704887,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/11\/10\/Cai_5x7_B.jpg?itok=WLnio58G"}}},"media_ids":["672352"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"42911","name":"Education"},{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"91661","name":"Wenshan Cai"},{"id":"193251","name":"Optica"},{"id":"193252","name":"Optica Fellow"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"167535","name":"School of Materials Science and Engineering"},{"id":"2768","name":"optics"},{"id":"2290","name":"photonics"},{"id":"77481","name":"plasmonics"},{"id":"79971","name":"metamaterials"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670326":{"#nid":"670326","#data":{"type":"news","title":"Innovative PaddleSat Concept for Thin Satellite Construction Honored","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EA team of researchers from the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) has won the Best Paper Award at the \u003Ca href=\u0022https:\/\/2023.ieee-wisee.org\/\u0022\u003E2023 IEEE Wireless in Space and Extreme Environments\u003C\/a\u003E (WiSEE) international conference.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team is comprised of Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/gregory-david-durgin\u0022\u003EGreg Durgin\u003C\/a\u003E and graduate students Vaibhav Bhosale, Jonathan Dolan, Grishma Kalepu, and Deeksha Manjunath. Their award-winning paper, \u201cPaddleSats: Attitude Control and Station-Keeping for Ultra-Low Density SSP Satellites,\u201d was selected from a field of 37 international papers.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe research presents the authors\u2019 new PaddleSat concept in which satellites are constructed from uniformly thin surfaces, using deflections in their solar panels and subsequent changes in solar pressure-induced momentum to perform station-keeping operations. Such satellites have low launch costs and very long lifetimes in space, as there is no longer the need to carry station-keeping fuel.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPaddleSats also mitigate space debris concerns as the uniformly thin satellites will\u2014without intervention from their controller\u2014gradually descend from orbit (either in fragments or as a whole) due to the influence of solar pressure on the spacecraft. \u003Cspan\u003EThe PaddleSat concept is crucial for developing space solar power satellites for green energy or even low-cost communication satellites that do not contribute long-term orbital debris.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe four students who co-authored the paper began investigating the concept in 2022 as an \u201cECE 6390 Satellite Communications and Navigation Systems\u201d course project. They continued to refine their work after the course, which led to this original, award-winning concept paper.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe IEEE WiSEE international conference series has been a home for the top-tier research in wireless-related systems in space for the last 11 years.\u0026nbsp;The researchers were honored at this year\u2019s conference held in Aveiro, Portugal from September 6-8.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cem\u003E\u003Cspan\u003ETop photo caption: \u003C\/span\u003EStudent researchers Vaibhav Ghosale (middle) and Grishma Kalepu (right) being presented the WiSEE Best Paper Award from Juan Fraire, the conference\u2019s technical program committee chair.\u003C\/em\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EOriginating as a class project, the concept for low-cost, minimal waste communication satellites demonstrated its potential at the 2023 IEEE Wireless in Space and Extreme Environments conference.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Originating as a class project, the concept for low-cost, minimal waste communication satellites demonstrated its potential at the 2023 IEEE Wireless in Space and Extreme Environments conference."}],"uid":"36172","created_gmt":"2023-10-10 18:13:54","changed_gmt":"2023-10-10 18:18:06","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-10-10T00:00:00-04:00","iso_date":"2023-10-10T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671996":{"id":"671996","type":"image","title":"PaddleSat team.jpg","body":"\u003Cp\u003EStudent researchers Vaibhav Ghosale (middle) and Grishma Kalepu (right) being presented the WiSEE Best Paper Award from Juan Fraire, the conference\u2019s technical program committee chair.\u003C\/p\u003E\r\n","created":"1696961835","gmt_created":"2023-10-10 18:17:15","changed":"1696961835","gmt_changed":"2023-10-10 18:17:15","alt":"Student researchers being presented the WiSEE Best Paper Award.","file":{"fid":"255171","name":"PaddleSat team.jpg","image_path":"\/sites\/default\/files\/2023\/10\/10\/PaddleSat%20team.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/10\/10\/PaddleSat%20team.jpg","mime":"image\/jpeg","size":922856,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/10\/10\/PaddleSat%20team.jpg?itok=ZuRIxkvn"}}},"media_ids":["671996"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[],"keywords":[{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"193159","name":"IEEE Wireless in Space and Extreme Environments"},{"id":"177717","name":"Greg Durgin"},{"id":"193160","name":"Vaibhav Bhosale"},{"id":"193161","name":"Jonathan Dolan"},{"id":"193162","name":"Grishma Kalepu"},{"id":"193163","name":"Deeksha Manjunath"},{"id":"193164","name":"PaddleSats"},{"id":"193165","name":"Satellite Communications and Navigation Systems"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669325":{"#nid":"669325","#data":{"type":"news","title":"Reinforcement Learning Approach in Electronic Design Automation Earns Top Honors at DAC 2023","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EResearchers from the \u003Ca href=\u0022https:\/\/www.gtcad.gatech.edu\/\u0022\u003EGeorgia Tech Computer-Aided Design (GTCAD) Laboratory\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E have received this year\u2019s \u003Ca href=\u0022https:\/\/www.dac.com\/\u0022\u003EDesign Automation Conference\u003C\/a\u003E (DAC) \u003Ca href=\u0022https:\/\/www.dac.com\/About\/Conference-Archive\/60th-DAC-2023\/Best-Paper-Recipients-2023\u0022\u003EBest Paper Award For Research\u003C\/a\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award-winning paper was co-authored by Motorola Solutions Foundation Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/sung-kyu-lim\u0022\u003ESung Kyu Lim\u003C\/a\u003E and Yi-Chen Lu (ECE Ph.D. \u201923, currently at Apple), in collaboration with a team from \u003Ca href=\u0022https:\/\/www.synopsys.com\/\u0022\u003ESynopsys, Inc\u003C\/a\u003E comprised of Wei-Ting Chan, Deyuan Guo, Vishal Khandelwal, and Sudipto Kundu.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe research, titled \u201c\u003Ca href=\u0022https:\/\/gtcad.gatech.edu\/www\/papers\/yi-chen_DAC23_RL-CCD.pdf\u0022\u003ERL-CCD: Concurrent Clock and Data Optimization using Attention-Based Self-Supervised Reinforcement Learning\u003C\/a\u003E,\u201d received Best Paper recognition out of 1,157 submissions. It presents a Reinforcement Learning (RL) agent in Concurrent Clock and Data (CCD) optimization \u2014 a technique used in modern computer design tools to improve the performance and reliability of digital circuits. The introduction of an RL agent enables systems to intelligently enhance their ability to correctly rank violating endpoints according to machine learning-based optimization strategies. This contributes to an optimization flow that maximizes the overall efficiency and effectiveness of the system\u0027s performance.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team was presented the award at DAC 2023 \u2014 the flagship conference in electronic design automation (EDA) \u2014 in San Francisco this July.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ELast year, Lim and his research team were presented with the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/07\/lim-and-team-win-2022-transactions-computer-aided-design-best-paper-award\u0022\u003EDonald O. Pederson Best Paper Award\u003C\/a\u003E\u0026nbsp;for their research on Compact-2D physical design tools at DAC. The work was recognized as the best paper published in IEEE\u2019s Transactions on Computer-Aided Design of Integrated Circuits and Systems (IEEE TCAD), the flagship journal of the IEEE Council on Electronic Design Automation (CEDA).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003ETop photo caption:\u0026nbsp;\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team receiving the Best Paper Award For Research this July at the Design Automation Conference.\u0026nbsp;Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe cutting-edge research on intelligent Concurrent Clock and Data optimization from Professor Sung Kyu Lim\u2019s GTCAD lab has received the highest acclaim at leading electronic design automation (EDA) conference.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The cutting-edge research on intelligent Concurrent Clock and Data optimization from Professor Sung Kyu Lim\u2019s GTCAD lab has received the highest acclaim at leading electronic design automation (EDA) conference."}],"uid":"36172","created_gmt":"2023-09-01 00:08:50","changed_gmt":"2023-10-06 17:25:44","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-31T00:00:00-04:00","iso_date":"2023-08-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671563":{"id":"671563","type":"image","title":"Lim_DAC Award 2023.jpg","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team receiving the Design Automation Conference (DAC) Best Paper Award For Research in July. Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1693526978","gmt_created":"2023-09-01 00:09:38","changed":"1693526978","gmt_changed":"2023-09-01 00:09:38","alt":"The team receiving the Design Automation Conference (DAC) Best Paper Award For Research in July. Left to right: Sung Kyu Lim, Wei-Ting Chan, Yi-Chen Lu, and Deyuan Guo (not pictured: Vishal Khandelwal, and Sudipto Kundu).","file":{"fid":"254648","name":"Lim_DAC Award 2023.jpg","image_path":"\/sites\/default\/files\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg","mime":"image\/jpeg","size":3154668,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/31\/Lim_DAC%20Award%202023.jpg?itok=gVJbe6yE"}}},"media_ids":["671563"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"192998","name":"Georgia Tech Computer-Aided Design Laboratory"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"178486","name":"Design Automation Conference"},{"id":"171018","name":"Sung Kyu Lim"},{"id":"192999","name":"Yi-Chen Lu"},{"id":"186458","name":"Synopsys"},{"id":"179891","name":"reinforcement learning"},{"id":"193000","name":"Concurrent Clock and Data"},{"id":"190745","name":"Electronic Design Automation"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"670043":{"#nid":"670043","#data":{"type":"news","title":"Georgia Tech Researchers Provide Insight into Evolving Drug-Delivery Systems Technology","body":[{"value":"\u003Cp\u003EImagine having a tiny device inside your body that can continuously monitor your health and deliver the right treatment when needed. That\u0027s what closed-loop drug delivery systems (CLDDs) can provide, automatically monitoring, adjusting, and administering medication in response to specific signals within the body.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor example, CLDDs can be used to manage chronic medical conditions, such as diabetes, where maintaining precise control over mediation dosage is critical.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhile they hold immense promise for improving patient outcomes and treatment adherence, CLDDs have only recently entered clinical use due to the difficulty in integrating the sensing and actuating components of human-machine Interfaces (HMIs).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EResearchers at Georgia Tech\u2019s School of Chemical and Biomolecular Engineering have published an\u0026nbsp;\u003Ca href=\u0022https:\/\/www.cell.com\/device\/fulltext\/S2666-9986(23)00144-8\u0022\u003Earticle\u003C\/a\u003E\u0026nbsp;in\u0026nbsp;\u003Cem\u003EDevice\u003C\/em\u003E\u0026nbsp;that provides a comprehensive overview of advancements, strengths, and challenges associated with various CLDD approaches.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EExamples of devices already in use include insulin pumps, implantable pain pumps, and epilepsy neurostimulators.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the paper, titled \u201cCommunication Protocols Integrating Wearables, Ingestibles, and Implantables for Closed-Loop Therapies,\u201d the researchers explore both passive and active CLDDs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPassive devices (typically implantable or ingestible) can release drugs over extended periods without active, real-time monitoring, while active CLDDs incorporate real-time monitoring and feedback mechanisms to adjust drug delivery in response to changing circumstances.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cActive closed-loop, drug-delivery systems are poised to usher in a new generation of remote, personalized healthcare driven by human-machine interfaces,\u201d said study co-author\u0026nbsp;\u003Ca href=\u0022https:\/\/www.abramsonlab.com\/\u0022\u003EAlex Abramson\u003C\/a\u003E, an assistant professor in Georgia Tech\u2019s School of Chemical and Biomolecular Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cBut to accentuate the shift from passive to active CLDDs, the integration of advanced sensors and actuators is crucial,\u201d added Ramy Ghanim, a PhD student in Abramson\u2019s lab and co-author of the paper.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESensors in CLDDs continuously monitor specific health parameters in the body (e.g., blood glucose levels for diabetics), and that data is fed to actuators that determine if a specific treatment is needed (such as releasing insulin).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECommunication Systems\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the article, the researchers explore various methods for communication transmission in CLDDs, including hardwiring, radio frequency (RF) wireless communication such as Bluetooth, ultrasound, and in-body communication (harnessing the body itself for data transfer through methods like ionic, biochemical, and optical communication). Each method comes with unique advantages and challenges, according to the researchers.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EChallenges in developing advanced HMIs include battery size constraints, powering requirements, data transmission rates, and locational dependance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOne big challenge is making sure these devices work no matter where they are inside a patient. Like a cellphone working best near a Wi-Fi router, these devices need to be in the right place to communicate effectively. Sometimes, they move around inside the body, which can be a problem.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe paper explores potential solutions to various challenges, including energy harvesting techniques, wireless powering, and location tracking systems. Ensuring secure data transmission and protection against hacking is also crucial, the researchers noted.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EBenefits to Patients\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBenefits of CLDDs include simplicity by automating treatment, reducing side effects by delivering medication precisely in a timely manner, and cost-effectiveness by reducing hospitalizations and complications associated with patient non-compliance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EUp to half of all patients requiring frequent and redundant dosages are noncompliant, sometimes missing doses due to complex treatment regimens, according to the researchers.\u0026nbsp;Consequences include decreased quality of life, preventable disease progression, and an estimated annual cost of $528.4 billion in U.S. healthcare expenditure solely due to suboptimal medication therapy.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cClosed-loop drug delivery systems are poised to transform the landscape of chronic illness treatment by enhancing therapeutic release profiles and easing drug administration, thereby improving patients\u2019 quality of life, decreasing medical expenditures, and improving compliance,\u201d Abramson said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECITATION: Ramy Ghanim, Anika Kaushik, Jihoon Park, and Alex Abramson, \u201cCommunication Protocols Integrating Wearables, Ingestibles, and Implantables for Closed-Loop Therapies,\u201d Device,\u0026nbsp;\u003Ca href=\u0022https:\/\/www.cell.com\/device\/fulltext\/S2666-9986(23)00144-8\u0022\u003Ehttps:\/\/www.cell.com\/device\/fulltext\/S2666-9986(23)00144-8\u003C\/a\u003E, 2023 \u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EWhile closed-loop drug delivery systems hold immense promise for improving patient outcomes and treatment adherence, CLDDs have only recently entered clinical use due to the difficulty in integrating the sensing and actuating components of human-machine Interfaces (HMIs).\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Closed-loop drug delivery systems can be used to manage chronic medical conditions, such as diabetes, where maintaining precise control over mediation dosage is critical"}],"uid":"27271","created_gmt":"2023-09-29 17:28:37","changed_gmt":"2023-10-02 14:03:42","author":"Brad Dixon","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-29T00:00:00-04:00","iso_date":"2023-09-29T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671902":{"id":"671902","type":"image","title":"Closed-loop Drug Delivery Systems","body":null,"created":"1696007769","gmt_created":"2023-09-29 17:16:09","changed":"1696007915","gmt_changed":"2023-09-29 17:18:35","alt":"Closed-loop Drug Delivery Systems graphic","file":{"fid":"255052","name":"CLDDs.jpg","image_path":"\/sites\/default\/files\/2023\/09\/29\/CLDDs.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/29\/CLDDs.jpg","mime":"image\/jpeg","size":44689,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/29\/CLDDs.jpg?itok=uathdz8p"}},"671903":{"id":"671903","type":"image","title":"Alex Abramson","body":"\u003Cp\u003EAlex Abramson, assistant professor in the School of Chemical and Biomolecular Engineering\u003C\/p\u003E\r\n","created":"1696008000","gmt_created":"2023-09-29 17:20:00","changed":"1696008099","gmt_changed":"2023-09-29 17:21:39","alt":"Alex Abramson","file":{"fid":"255053","name":"Alex Abramsonweb.png","image_path":"\/sites\/default\/files\/2023\/09\/29\/Alex%20Abramsonweb.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/29\/Alex%20Abramsonweb.png","mime":"image\/png","size":204292,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/29\/Alex%20Abramsonweb.png?itok=HdUMBVzh"}},"671904":{"id":"671904","type":"image","title":"Ramy Ghanim","body":"\u003Cp\u003ERamy Ghanim, PhD student in the School of Chemical and Biomolecular Engineering\u003C\/p\u003E\r\n","created":"1696008225","gmt_created":"2023-09-29 17:23:45","changed":"1696008297","gmt_changed":"2023-09-29 17:24:57","alt":"Ramy Ghanim","file":{"fid":"255054","name":"Ramy GhanimWEB.jpg","image_path":"\/sites\/default\/files\/2023\/09\/29\/Ramy%20GhanimWEB.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/29\/Ramy%20GhanimWEB.jpg","mime":"image\/jpeg","size":113137,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/29\/Ramy%20GhanimWEB.jpg?itok=lvBl2sK-"}}},"media_ids":["671902","671903","671904"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"141","name":"Chemistry and Chemical Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"},{"id":"187915","name":"go-researchnews"},{"id":"560","name":"chemical engineering"},{"id":"9540","name":"Bioengineering and Bioscience"},{"id":"13603","name":"Drug Delivery Systems"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBrad Dixon,\u0026nbsp;\u003Ca href=\u0022mailto:braddixon@gatech.edu\u0022\u003Ebraddixon@gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["braddixon@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669837":{"#nid":"669837","#data":{"type":"news","title":"Georgia Tech Celebrates the Launch of Over 100 Startups at Demo Day","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EFor the 10th \u003Ca href=\u0022https:\/\/create-x.gatech.edu\/demoday\u0022\u003EDemo Day\u003C\/a\u003E, the Tech community came out in droves to support 75 Georgia Tech startups created by students, alumni, and faculty. In booths spread out in Exhibition Hall, they displayed their products, which ranged from AI and robotic training gear to fungi fashion, and more. Over four hours, \u003Cspan\u003E\u003Cspan\u003Emore than 1,500 people filed in and out of the hall. Founders pitched their innovations to business and community leaders, as well as students and the public, eager to witness groundbreaking innovations across various industries. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EKiandra Peart, co-founder of \u003Ca href=\u0022https:\/\/create-x.gatech.edu\/node\/3053\u0022\u003EReinvend\u003C\/a\u003E, said the amount of people surprised her.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cAfter the first VIP session was over, hundreds of people were just flooding through the door at all times,\u201d she said. \u201cWe had to give the pitch a million times to explain it to a lot of different people, but they seemed really, really engaged, and we were also able to get a few interactions.\u201d \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EReinvend is working through a potential deal with Tech Dining on using their vending machines, which would expand food options for students after dining halls close.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EDemo Day is the culmination of the 12-week summer accelerator, \u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/create-x.gatech.edu\/launch\/startup-launch\u0022\u003E\u003Cspan\u003EStartup Launch\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E, where founders learn about entrepreneurship and build out their businesses with the support of mentors. Along with guidance from experts in business, teams receive $5,000 in optional funding and $30,000 of in-kind services. This year, the program had over 100 startups and 250 founders, continuing the growth trend for \u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/create-x.gatech.edu\/\u0022\u003E\u003Cspan\u003ECREATE-X\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E. The program aims to eventually support the launch of 300 startups per year. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPeart said the experience taught the team how to better pitch to potential clients and formulate a call to action after a successful interaction. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ESince its inception in 2014, CREATE-X has had more than 5,000 participate in their programming, which is segmented in three areas: Learn, Make, and Launch. Besides providing resources, the program also helps founders through its rich entrepreneurial ecosystem. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cWe want to increase access to entrepreneurship. That\u2019s the heart of the program, and it\u2019s the goal to have everyone in the Tech community to have entrepreneurial confidence. The energy and passion of our founders to solve real-world problems \u2014 it\u2019s palpable at Demo Day. I\u2019d say it\u2019s the best place to see what we\u2019re about and understand what this program offers,\u201d said \u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003ERahul Saxena, director of CREATE-X, who also reminded founders that the connections they make here would last for years\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAt its core, CREATE-X is a community geared toward innovation. Participants were at the forefront of integrating OpenAI\u0027s GPT-3 when it was not yet widely adopted. They share their insights with each other, and the program has mentors coming back from even the very first cohort. Starting with eight teams, CREATE-X has now launched more than 400 startup teams, with founders representing 38 academic majors. Its total startup portfolio valuation is above $1.9 billion. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPeart compared CREATE-X to an energy drink.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cAfter going through the program, I was really able to refine my ideas, talk with other people, and now that the program is over, I feel energized,\u201d she said. \u201cI think that having an accelerator right at home allows students who may have never considered starting a company, or didn\u0027t have access to an accelerator, to actually utilize their resources from their school and their own community to get their companies started.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAlthough Demo Day just ended, CREATE-X is already gearing up for \u0026nbsp;the next cohort. Applications for Startup Launch opened Aug. 31, the same day as Demo Day. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cConsider interning for yourself next summer,\u201d said Saxena. \u201cWe know you have ideas about solutions to address global challenges. You\u2019re at Tech; you have the talent. Let us help you with the resources and support system.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EGeorgia Tech students, alumni, and faculty can \u003Ca href=\u0022https:\/\/create-x.gatech.edu\/launch\/startup-launch\u0022\u003Eapply to GT Startup Launc\u003C\/a\u003Eh now. The priority deadline is Nov. 6. To learn more about \u003Ca href=\u0022https:\/\/create-x.gatech.edu\/\u0022\u003ECREATE-X\u003C\/a\u003E, find \u003Ca href=\u0022https:\/\/gatech.campuslabs.com\/engage\/organization\/create-x\/events\u0022\u003ECREATE-X events\u003C\/a\u003E to build a startup team, or learn more about entrepreneurship, visit th CREATE-X website\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EFor four hours, Georgia Tech startup founders displayed their products, which ranged from AI and robotic training gear to fungi fashion, and more, at the 10th Demo Day.\u0026nbsp;\u003Cspan\u003E\u003Cspan\u003EDemo Day is the culmination of the 12-week summer accelerator, \u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/create-x.gatech.edu\/launch\/startup-launch\u0022\u003E\u003Cspan\u003EStartup Launch\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E, where founders learn about entrepreneurship and build out their businesses with the support of mentors. This year, the program had over 100 startups and 250 founders, continuing the growth trend for \u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/create-x.gatech.edu\/\u0022\u003E\u003Cspan\u003ECREATE-X\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E.\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Over 1,500 people came to support 75 Georgia Tech startups created by students, alumni, and faculty for Demo Day."}],"uid":"36436","created_gmt":"2023-09-21 20:18:48","changed_gmt":"2023-09-21 20:24:47","author":"bdurham31","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-21T00:00:00-04:00","iso_date":"2023-09-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671792":{"id":"671792","type":"image","title":"Demo Day 2023 Hall Image","body":null,"created":"1695327625","gmt_created":"2023-09-21 20:20:25","changed":"1695327625","gmt_changed":"2023-09-21 20:20:25","alt":"At booths, Georgia Tech founders showcase their new products to a crowded exhibition hall with people from the Georgia Tech community, as well as the public and business community.","file":{"fid":"254919","name":"DSC_0425-1.png","image_path":"\/sites\/default\/files\/2023\/09\/21\/DSC_0425-1.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/21\/DSC_0425-1.png","mime":"image\/png","size":30540068,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/21\/DSC_0425-1.png?itok=8btbv760"}}},"media_ids":["671792"],"groups":[{"id":"583966","name":"CREATE-X"},{"id":"655285","name":"GT Commercialization"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"137161","name":"CREATE-X"},{"id":"166994","name":"startups"},{"id":"166990","name":"showcase"},{"id":"3905","name":"exhibition"},{"id":"3472","name":"entrepreneurship"},{"id":"1037","name":"tech"},{"id":"1072","name":"Business"},{"id":"2161","name":"founders"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"},{"id":"39491","name":"Renewable Bioproducts"},{"id":"39521","name":"Robotics"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBreanna Durham\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMarketing Strategist\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["breanna.durham@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669679":{"#nid":"669679","#data":{"type":"news","title":"Hao Earns Intel Rising Star Faculty Award","body":[{"value":"\u003Cp\u003EIntel Corporation has named\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/callie-hao\u0022\u003ECong (Callie) Hao\u003C\/a\u003E, assistant professor in the\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E, as one of the 15 recipients of the prestigious\u0026nbsp;\u003Ca href=\u0022https:\/\/www.intel.com\/content\/www\/us\/en\/research\/news\/rising-star-award-2023.html\u0022\u003EIntel Rising Star Faculty Award\u003C\/a\u003E\u0026nbsp;for 2023.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Intel Rising Star Faculty Award (RSA) program annually recognizes early-career academic researchers who are at the forefront of technological research with the potential to reshape industries. The program provides both a monetary award and hopes to facilitate long-term collaborative relationships with senior technical leaders at Intel. Award recipients are also chosen for their innovative teaching methods and for their efforts to improve the fields of computer science and engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHao joined the ECE the faculty in 2022 and she currently holds the Sutterfield Family Early Career Professorship. She received her Ph.D. in electrical engineering from Waseda University, Japan, in 2017, and was a postdoc in UIUC from 2018 to 2021.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EShe supervises six Ph.D. students in the\u0026nbsp;\u003Ca href=\u0022https:\/\/sharclab.ece.gatech.edu\/\u0022 title=\u0022https:\/\/sharclab.ece.gatech.edu\/\u0022\u003ESoftware\/Hardware Co-design (Sharc) Lab\u003C\/a\u003E, exploring the joint area of efficient hardware design, machine learning algorithms, and agile design automation tools. The group\u0027s work involves high-performance graph neural network (GNN) accelerator design and automation, which are highly recognized and broadly used by high energy physicists, winning the\u0026nbsp;2023 International Conference on Field-Programmable Logic and Applications (FPL)\u0026nbsp;community award for impactful open-source contributions. Her group also focuses on building open-source design automation tools, especially high-level synthesis, significantly expediting hardware and architecture development; one of their works was awarded\u0026nbsp;IEEE International Symposium on Field-Programmable Custom Computing Machines (FCCM)\u0026nbsp;best paper runner-up.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EECE\u2019s Asif Khan was recognized with an\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2023\/03\/khan-recognized-2020-intel-rising-star-award\u0022\u003EIntel Rising Star Award in 2020\u003C\/a\u003E.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ECallie Hao has received a 2023 Intel Rising Star Faculty Award, recognizing her outstanding contributions to technological research and education in computer science and engineering.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Callie Hao has received a 2023 Intel Rising Star Faculty Award, recognizing her outstanding contributions to technological research and education in computer science and engineering."}],"uid":"36172","created_gmt":"2023-09-15 00:19:31","changed_gmt":"2023-09-15 11:12:26","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-09-14T00:00:00-04:00","iso_date":"2023-09-14T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671714":{"id":"671714","type":"image","title":"Callie_Hao_GaTech.jpg","body":null,"created":"1694776319","gmt_created":"2023-09-15 11:11:59","changed":"1694776319","gmt_changed":"2023-09-15 11:11:59","alt":"Assistant Professor Callie Hao","file":{"fid":"254820","name":"Callie_Hao_GaTech.jpg","image_path":"\/sites\/default\/files\/2023\/09\/15\/Callie_Hao_GaTech.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/09\/15\/Callie_Hao_GaTech.jpg","mime":"image\/jpeg","size":1209163,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/09\/15\/Callie_Hao_GaTech.jpg?itok=TdLAuGQt"}}},"media_ids":["671714"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[],"keywords":[{"id":"190972","name":"Callie Hao"},{"id":"94731","name":"Intel Corporation"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"193044","name":"Intel Rising Star Faculty Award"},{"id":"193045","name":"Software\/Hardware Co-design Lab"},{"id":"178072","name":"Deep Neural Networks"},{"id":"178486","name":"Design Automation Conference"},{"id":"178244","name":"Asif Khan"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669257":{"#nid":"669257","#data":{"type":"news","title":"Student Research on Thermoelectric Harvesters Recognized","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EXi Li has won third place in the Best Student Paper Contest at the \u003Ca href=\u0022https:\/\/www.mwscas2023.com\/\u0022\u003EIEEE International Midwest Symposium on Circuits and Systems\u003C\/a\u003E in Phoenix, Arizona on August 6-9. The award recognizes his outstanding contribution in the field of power and energy circuits and systems.\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nLi, a Ph.D. candidate in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E, \u0026nbsp;is a member of \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/gabriel-rincon-mora\u0022\u003EProfessor Gabriel A. Rinc\u00f3n-Mora\u2019s\u003C\/a\u003E research team at the Georgia Tech Analog, Power, and Energy IC Research Lab (GTAPE), whose mission is to develop, design, and build silicon-based microchips and microsystems that harness power from tiny batteries, fuel cells, coils, and ambient sources, like motion, light, heat, and radiation to supply and sustain mobile, portable, and self-sustaining devices for biomedical, consumer, industrial, and military applications.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EXi\u0027s winning paper, titled \u201cMaximum Power-Point Theory for Thermoelectric Harvesters,\u201d shows how linear losses in the energy-harvesting circuit that draws power from the thermoelectric source reduce the direct current voltage of the source and quadratic losses raise the series resistance. This phenomenon not only decreases the power delivered to the load but also shifts the maximum power point of the system. With the model developed by Xi, engineers can more easily and more effectively design thermoelectric harvesters so they output the highest power possible.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPh.D candidate \u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EXi Li\u2019s research has been honored at the this year\u2019s International Midwest Symposium on Circuits and Systems.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Ph.D candidate Xi Li\u2019s research has been honored at the this year\u2019s International Midwest Symposium on Circuits and Systems."}],"uid":"36172","created_gmt":"2023-08-30 15:37:27","changed_gmt":"2023-08-30 15:38:06","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-30T00:00:00-04:00","iso_date":"2023-08-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671536":{"id":"671536","type":"image","title":"Xi Li.jpg","body":null,"created":"1693409858","gmt_created":"2023-08-30 15:37:38","changed":"1693409858","gmt_changed":"2023-08-30 15:37:38","alt":"Xi Li, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering","file":{"fid":"254618","name":"Xi Li.jpg","image_path":"\/sites\/default\/files\/2023\/08\/30\/Xi%20Li.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/30\/Xi%20Li.jpg","mime":"image\/jpeg","size":1049638,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/30\/Xi%20Li.jpg?itok=Yvik8cuH"}}},"media_ids":["671536"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"144","name":"Energy"},{"id":"145","name":"Engineering"},{"id":"134","name":"Student and Faculty"},{"id":"135","name":"Research"}],"keywords":[{"id":"192989","name":"Xi Li"},{"id":"192990","name":"IEEE International Midwest Symposium on Circuits and Systems"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192991","name":"Gabriel A. Rinc\u00f3n-Mora"},{"id":"192992","name":"Georgia Tech Analog Power and Energy IC Research"},{"id":"192993","name":"Maximum Power-Point Theory for Thermoelectric Harvesters"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669174":{"#nid":"669174","#data":{"type":"news","title":"Swaminathan Receives Tummala Award ","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EMadhavan Swaminathan has been recognized with the 2024 Rao R. Tummala Electronics Packaging Technology Award.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/www.eecs.psu.edu\/departments\/directory-detail-g.aspx?q=mvs7249\u0026amp;_gl=1*1lqbsfm*_ga*MTUwMTM3MzAxOS4xNjkyODk1NjY3*_ga_P4WQEC6B2H*MTY5Mjk3MTYxMy4yLjEuMTY5Mjk3MzE5Ni41Ni4wLjA.\u0022\u003ESwaminathan\u003C\/a\u003E is professor emeritus in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School for Electrical and Computer Engineering\u003C\/a\u003E (ECE) and the current department head of electrical engineering in the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.eecs.psu.edu\/\u0022\u003EPenn State School of Electrical Engineering and Computer Science\u003C\/a\u003E\u0026nbsp;(EECS).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFor 28 years, Swaminathan dedicated his career to Georgia Tech, becoming the director of the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/ien-prc\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E (PRC) in 2019. The establishment of the PRC was led by \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/rao-r-tummala\u0022\u003ERao Tummala\u003C\/a\u003E, the namesake of the Electronics Packaging Technology Award, and also professor emeritus in ECE. Swaminathan played a pivotal role in the advancement of the PRC while at Georgia Tech.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award is one of \u003Ca href=\u0022https:\/\/corporate-awards.ieee.org\/recipients\/current-recipients\/#1687264835238-5d20e2c1-b74d\u0022\u003EIEEE\u2019s Technical Field Awards\u003C\/a\u003E (TFAs) which represents the highest award given by each IEEE Society, bestowed for\u0026nbsp;contributions or leadership in specific fields of interest of IEEE.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe distinguished award, sponsored by the \u003Ca href=\u0022https:\/\/eps.ieee.org\/\u0022\u003EIEEE Electronics Packaging Society\u003C\/a\u003E and Friends of Rao R. Tummala, acknowledges Swaminathan\u2019s, \u201cexceptional contributions to semiconductor packaging and system integration technologies, which have significantly improved electronic system performance, efficiency, and capabilities.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn 2023, Swaminathan joined the Penn State faculty as the William E. Leonhard Endowed Chair. He also serves as the director of the \u003Ca href=\u0022https:\/\/www.chimes.psu.edu\/\u0022\u003ECenter for Heterogeneous Integration of Micro Electronic Systems\u003C\/a\u003E (CHIMES), supported through Semiconductor Research Corporation (SRC)\u2019s Joint University Microelectronics Program 2.0 (JUMP 2.0).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ETummala was the Joseph M. Pettit Chair in Electronics Packaging in ECE from 1993 to 2019. As the founding director of PRC, he pioneered the Second Law of Electronics, propelling the industry forward with his visionary System-On-Package (SOP) concept. His contributions were further recognized with the distinguished title of Georgia Research Alliance Eminent Scholar from 1993 to 2019.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ETop photo:\u0026nbsp;Madhavan Swaminathan (left) and Rao R. Tummala (right).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor Emeritus Madhavan Swaminathan\u2019s contributions to semiconductor packaging have been recognized with an IEEE Technical Field Award named in honor of Professor Emeritus Rao R. Tummala.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Professor Emeritus Madhavan Swaminathan\u2019s contributions to semiconductor packaging have been recognized with an IEEE Technical Field Award named in honor of Professor Emeritus Rao R. Tummala."}],"uid":"36172","created_gmt":"2023-08-25 14:54:15","changed_gmt":"2023-08-29 12:37:16","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-25T00:00:00-04:00","iso_date":"2023-08-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671485":{"id":"671485","type":"image","title":"Saminathan and  Tummala.jpg","body":null,"created":"1692980231","gmt_created":"2023-08-25 16:17:11","changed":"1692980231","gmt_changed":"2023-08-25 16:17:11","alt":"A graphic with side-by-side headshots of both Madhavan Swaminathan and Rao R. Tummala.","file":{"fid":"254556","name":"Saminathan and  Tummala.jpg","image_path":"\/sites\/default\/files\/2023\/08\/25\/Saminathan%20and%20%20Tummala.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/25\/Saminathan%20and%20%20Tummala.jpg","mime":"image\/jpeg","size":3762902,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/25\/Saminathan%20and%20%20Tummala.jpg?itok=tLAIR-5q"}}},"media_ids":["671485"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"24251","name":"Madhavan Swaminathan"},{"id":"192981","name":"Rao R. Tummala Electronics Packaging Technology Award"},{"id":"7877","name":"Professor Emeritus"},{"id":"192982","name":"Georgia Tech School for Electrical and Computer Engineering"},{"id":"192983","name":"Penn State School of Electrical Engineering and Computer Science"},{"id":"12072","name":"3D Systems Packaging Research Center"},{"id":"12103","name":"Rao Tummala"},{"id":"192984","name":"IEEE Technical Field Award"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"669175":{"#nid":"669175","#data":{"type":"news","title":"Kwak\u2019s 3D Monolithic Integration Research Earns Best Student Paper Award","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EJungyoun Kwak has received the Best Student Paper Award at the 2023 \u003Ca href=\u0022https:\/\/www.mwscas2023.com\/\u0022\u003EIEEE International Midwest Symposium on Circuits and Systems\u003C\/a\u003E held in Tempe, Ariz., on August 6-9. The award recognizes his pioneering research in the field of \u201cBeyond CMOS Circuits and Architectures\u201d.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EKwak is a Ph.D. candidate in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E and is part of Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003EShimeng Yu\u2019s\u003C\/a\u003E \u003Ca href=\u0022https:\/\/shimeng.ece.gatech.edu\/\u0022\u003ELaboratory for Emerging Devices and Circuits\u003C\/a\u003E. The primary objective of the research group is to challenge the intrinsic limitations of conventional 2D scaling in integrated circuits. They aim to achieve this by vertically stacking circuit components using emerging devices in 3D monolithic integration.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award-winning paper, titled \u0022A Reconfigurable Monolithic 3D Switched-Capacitor DC-DC Converter with Back-End-Of-Line Oxide Channel Transistor,\u0022 introduces a cutting-edge design that offers power-efficient and high-density switched-capacitor DC-DC converters. The novel converters are strategically placed on top of systolic arrays, facilitating fine-grain voltage scaling at the array level. The innovative architecture also minimizes the idle time of processing units by independently controlling the voltage for each array, all without incurring significant area overhead.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAccording to Kwak, the work in monolithic 3D integration offers exciting prospects for the future of computing. By conducting comprehensive studies of devices, circuits, and systems within 3D frameworks, the research provides a credible roadmap for extending Moore\u0027s Law \u2014 an advancement that is critically relevant as exponential growth in computational requirements like artificial intelligence models persist.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe work is supported by the \u003Ca href=\u0022https:\/\/www.chimes.psu.edu\/\u0022\u003ECenter for Heterogeneous Integration of Micro Electronic Systems\u003C\/a\u003E (CHIMES), which operates under the \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/\u0022\u003ESemiconductor Research Corporation (SRC)\u2019s Joint University Microelectronics Program 2.0\u003C\/a\u003E(JUMP 2.0), in collaboration with the Defense Advanced Research Projects Agency (DARPA).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EJungyoun Kwak, a Ph.D. candidate in ECE, has received the Best Student Paper Award at the 2023 IEEE International Midwest Symposium on Circuits and Systems for his pioneering research in 3D monolithic integration and innovative circuit design.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Jungyoun Kwak, a Ph.D. candidate in ECE, has received a Best Student Paper Award for his pioneering research in 3D monolithic integration."}],"uid":"36172","created_gmt":"2023-08-25 15:56:09","changed_gmt":"2023-08-25 15:59:02","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-08-25T00:00:00-04:00","iso_date":"2023-08-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671484":{"id":"671484","type":"image","title":"photo_Jungyoun_Kwak_backgorund and crop.png","body":null,"created":"1692979047","gmt_created":"2023-08-25 15:57:27","changed":"1692979047","gmt_changed":"2023-08-25 15:57:27","alt":"A headshot of Ph.D. candidate Jungyoun Kwak.","file":{"fid":"254555","name":"photo_Jungyoun_Kwak_backgorund and crop.png","image_path":"\/sites\/default\/files\/2023\/08\/25\/photo_Jungyoun_Kwak_backgorund%20and%20crop.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/08\/25\/photo_Jungyoun_Kwak_backgorund%20and%20crop.png","mime":"image\/png","size":181334,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/08\/25\/photo_Jungyoun_Kwak_backgorund%20and%20crop.png?itok=zmgF5-JR"}}},"media_ids":["671484"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668506":{"#nid":"668506","#data":{"type":"news","title":"Novel Ultrasound Imaging Research Earns Trailblazer Award Funding","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAssistant Professor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shaolan-li\u0022\u003EShaolan Li\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer\u003C\/a\u003E (ECE) has been awarded the prestigious \u003Ca href=\u0022https:\/\/www.nibib.nih.gov\/research-funding\/trailblazer-r21-awards\u0022\u003ETrailblazer R21 Award\u003C\/a\u003E from the \u003Ca href=\u0022https:\/\/www.nibib.nih.gov\/\u0022\u003ENational Institute of Biomedical Imaging and Bioengineering\u003C\/a\u003E(NIBIB). The research will be performed in collaboration with Professor \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/degertekin\u0022\u003ELevent Degertekin\u003C\/a\u003E in the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E (ME).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ENIBIB is a branch of the National Institutes of Health (NIH) dedicated to advancing health through the promotion of cutting-edge research in biomedical imaging and bioengineering.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe award will provide support for the interdisciplinary team\u2019s work, \u003Ca href=\u0022https:\/\/reporter.nih.gov\/search\/l6291IzU7kOkmXYKl86Vcw\/project-details\/10727224\u0022\u003E\u201cSpace-Time Compressed Sampling Techniques for Integrated Ultrasound Imaging System-on-a-Chip,\u201d\u003C\/a\u003E focused on advancing compact, energy-efficient integration of ultrasound front-end electronics.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe Trailblazer R21 Award is specifically aimed at new and early-stage investigators, with the goal of facilitating groundbreaking research at the intersection of life sciences, engineering, and the physical sciences. Notably, applicants are required to propose novel high-risk high-return research approaches that have minimal or no preliminary data.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe three-year project aims to integrate compact and power-efficient electronics into portable and wearable ultrasound imaging systems, meeting the growing demand in the field. Li and Degertekin will explore a novel approach called compressed sensing (CS) at the integrated circuit level to overcome the current challenges posed by the requirements of high-performance imaging and the limitations of power, physical size, and interconnects.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe research purposes a novel CS framework that reduces the size of ultrasound data without sacrificing image quality. By combining compression techniques and advanced chip design, the team hopes to achieve faster and more efficient imaging.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EUltimately, the researchers plan to develop a prototype device that integrates different components on a single chip, potentially reducing the need for multiple cables during catheter-based ultrasound procedures. The performance of this prototype will be compared to traditional imaging systems to assess its effectiveness.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe project is expected to contribute valuable theories, models, circuit techniques, and insights into the design space and limitations of emerging portable and wearable ultrasound systems.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe National Institute of Biomedical Imaging and Bioengineering award will fund Shaolan Li\u2019s new research on energy-efficient integration of ultrasound front-end electronics in portable and wearable ultrasound imaging systems.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Led by Shaolan Li, and in collaboration with\u00a0Levent Degertekin, the award will provide support to research on\u00a0compact, energy-efficient integration of ultrasound front-end electronics.\u00a0"}],"uid":"36172","created_gmt":"2023-07-18 18:52:19","changed_gmt":"2023-08-03 23:56:43","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-07-18T00:00:00-04:00","iso_date":"2023-07-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671179":{"id":"671179","type":"image","title":"Li and Degertekin.jpg","body":"\u003Cp\u003EPhoto of Georgia Tech professors\u0026nbsp;Shaolan Li (ECE) and Levent Degertekin (ME).\u0026nbsp;\u003C\/p\u003E\r\n","created":"1689706347","gmt_created":"2023-07-18 18:52:27","changed":"1689706347","gmt_changed":"2023-07-18 18:52:27","alt":"Shaolan Li (ECE) and Levent Degertekin (ME)","file":{"fid":"254193","name":"Li and Degertekin.jpg","image_path":"\/sites\/default\/files\/2023\/07\/18\/Li%20and%20Degertekin.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/07\/18\/Li%20and%20Degertekin.jpg","mime":"image\/jpeg","size":8979706,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/07\/18\/Li%20and%20Degertekin.jpg?itok=GnJFsSMU"}}},"media_ids":["671179"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[],"keywords":[{"id":"182039","name":"Shaolan Li"},{"id":"192866","name":"School of Electrical and Computer"},{"id":"192867","name":"Trailblazer R21 Award"},{"id":"192868","name":"National Institute of Biomedical Imaging and Bioengineering"},{"id":"2270","name":"National Institutes of Health"},{"id":"17041","name":"Levent Degertekin"},{"id":"14545","name":"George W. Woodruff School of Mechanical Engineering"},{"id":"192869","name":"ultrasound front-end electronics"},{"id":"31241","name":"compressed sensing"},{"id":"192870","name":"novel high-risk high-return research"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668629":{"#nid":"668629","#data":{"type":"news","title":"Georgia Tech Alum Brings Modernized Vending to the Community","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ECorey Hewitt, co-founder of Gimmer Vending, was a part of the inaugural cohort of CREATE-X\u2019s GT Startup Launch (originally Startup Summer). Through the program, he found a community that he still taps into today.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EWhile at Tech, Hewitt studied electrical engineering. He met his co-founder, Evan Jarecki, through an internship with Gulf Stream Aerospace. They had complimentary skills and similar goals, so they decided to go into business together. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhat did you think about the way you and your co-founder worked?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EIt\u2019s surprised me how much of a superpower it was. That just turned out to be magical.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EHow did you and your co-founder decide on what startup to create?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThe way that vending machines order food, or the way that grocery stores invoice the people who make deliveries, happens with a super old-school technology called DEX. When we got started, you literally had to carry a guitar jack cord around to be able to plug into these DEX ports to communicate with the mainframe of the grocery store or the control board of the vending machine. The other end of that would be like a Zebra or Motorola PDA, and that\u0027s how you communicate with them. I think it\u2019s bizarre when people learn how old-school information happens in vending and in grocery stores.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhy did you join CREATE-X?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EKnowing that it would take both hardware and software kind of raised the bar of what we needed to get this idea off the ground. We knew that instead of just two guys on two laptops working in a garage coding their way to a solution, we were going to need a couple more people with different specialties. Doing those things usually involves cash. CREATE-X means to me an ecosystem and a support system for innovation.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EHow did your startup develop?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EThe idea definitely got more refined. There was still this process of experimentation and accelerated mini failures that gave us a lot more confidence. Even though we came into the program with an idea of what we wanted to solve, it became a lot more refined through this constant iteration, experimentation, and customer discovery throughout the program.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhat were your biggest challenges?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EMoney issues were some of the biggest challenges. How do you fund a lot of these initial projects with no budget? There\u2019s this romantic view of being a startup. It\u2019s not as romantic as the movies make it seem.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhat gave you confidence despite the challenges?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EOur customers wanted us to be successful because they wanted the solution. That felt so validating, not only that we can solve a problem, but people value it. We used one customer\u2019s investment in us to talk to other investors. That gave a lot more confidence in the ultimate solution that we decided to pursue.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EHow did the Georgia Tech community benefit you during the beginning stages of your startup journey?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EWe were getting all the right attention from different people. You\u0027ve got nothing when you make a startup. You don\u0027t have HR. You don\u0027t have legal. You don\u0027t have office space. You don\u0027t have a training manual. You hire the first employee, and you make a bunch of mistakes. All of these things are brand new. I was able to lean on the network at Georgia Tech and ask people through the program, \u201cWho can I talk to who has done this before?\u201d And they would say, \u201cTalk to this guy. He\u0027s either failed at it or he\u0027s succeeded at it. Either way, you\u0027ll learn something.\u201d I think that helped us sidestep a number of mistakes. I would have failed without the help of others. That was the biggest lesson. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhat advice would you give someone who wants to build a startup?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EI\u2019ve noticed that those who try tend to still leave a dent on the world. If you put yourself out there, what I\u2019ve seen is the Atlanta startup community is actually supportive. We have connections to people now.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EWhere are you now with your startup, and what are your plans?\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EInstead of being a founder, I want to work with a founder.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003E\u003Cspan\u003E\u003Cspan\u003EGimme Vending has been named product of the year, 40 Under 40, Tag Top 40, #1 B2B in Georgia, and received other recognition. After almost nine years as CEO, Hewitt will now try something new. He\u2019s leaving his startup this month and is excited about electrification and emerging tech in developing community support. He plans to work with founders in those areas. Hewitt also plans to be a CREATE-X mentor and a mentor in pitch competitions across the state.\u003C\/span\u003E\u003C\/span\u003E\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ESpeak to our next cohort of CREATE-X founders at Demo Day, Aug. 31, 3-5p.m., at the Georgia Tech Exhibition Hall. \u003Ca href=\u0022https:\/\/www.eventbrite.com\/e\/create-x-demo-day-tickets-654262164747?aff=CXNews\u0022\u003ERegister for Demo Day\u003C\/a\u003E today to reserve your spot at this free event!\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ECorey Hewitt, cofounder of Gimmer Vending, started with a problem. Being a part of\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E the inaugural cohort of CREATE-X\u2019s GT Startup Launch (originally Startup Summer), Hewitt\u0026nbsp;found a community that helped him solve that problem and be a part of the network he still taps into today.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Through CREATE-X, Corey Hewitt, cofounder of Gimmer Vending,  and his cofounder, Evan Jarecki, convinced investors to buy-into their product and launch something that revolutionized the vending industry. "}],"uid":"36436","created_gmt":"2023-07-28 14:40:51","changed_gmt":"2023-07-28 19:23:25","author":"bdurham31","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-07-28T00:00:00-04:00","iso_date":"2023-07-28T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671272":{"id":"671272","type":"image","title":"Corey Hewitt","body":"\u003Cp\u003ECorey Hewitt, cofounder of Gimme Vending, laughs as he mingles at an outdoor event.\u0026nbsp;\u003C\/p\u003E\r\n","created":"1690555052","gmt_created":"2023-07-28 14:37:32","changed":"1690555215","gmt_changed":"2023-07-28 14:40:15","alt":"Corey Hewitt, cofounder of Gimme Vending, laughs as he mingles at an outdoor event. ","file":{"fid":"254297","name":"Corey Hewitt.jpg","image_path":"\/sites\/default\/files\/2023\/07\/28\/Corey%20Hewitt.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/07\/28\/Corey%20Hewitt.jpg","mime":"image\/jpeg","size":380532,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/07\/28\/Corey%20Hewitt.jpg?itok=Ci_Z_nZi"}}},"media_ids":["671272"],"groups":[{"id":"583966","name":"CREATE-X"},{"id":"655285","name":"GT Commercialization"}],"categories":[{"id":"130","name":"Alumni"},{"id":"139","name":"Business"},{"id":"42901","name":"Community"}],"keywords":[{"id":"137161","name":"CREATE-X"},{"id":"190227","name":"alumni entrepreneurs"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBreanna Durham\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMarketing Strategist\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["breanna.durham@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668376":{"#nid":"668376","#data":{"type":"news","title":"STEM Gems: Empowering the Next Generation of Women","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn June, 50 metro Atlanta teenage girls from diverse backgrounds convened at Georgia Tech for the first in-person STEM Gems summer camp. STEM Gems was founded by Stephanie Espy, CEO and founder of MathSP, a STEM-focused academic and test prep coaching company based in Georgia. Espy received her bachelor\u0027s and master\u0027s degrees in chemical engineering from MIT and the University of California at Berkeley, respectively. The strikingly lower percentage of women in engineering compared to men inspired her to undertake a project in which she spent several years researching and compiling the stories of women in STEM fields. This project became \u003Cem\u003ESTEM Gems\u003C\/em\u003E, a book highlighting the stories of 44 inspiring women in STEM careers and their paths, obstacles, and accomplishments. Espy says it\u0027s a book she wishes she had when she was growing up. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ESTEM careers are still male dominated, with 19% of bachelor\u0027s degrees in engineering awarded to women, and 3% to minority women. STEM Gems is shining a light on successful women working in these fields and providing young girls with encouragement and practical advice as they navigate their own paths. Campers spent the week learning about a variety of careers in STEM, engaging in hands-on activities, touring labs at Georgia Tech, and interacting with leading female engineering professors. They even learned about the college admissions process and bonded through workshops and group discussions on topics such as risk-taking and the importance of a growth mindset. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022The thing I was most interested in this week was the lab tours,\u0022\u0026nbsp;said Darshika Domma, a STEM Gem and first-year student at Lambert High School. \u0022We saw what it\u0027s really like in the research labs, what it looks like, what they do there. I got to learn a lot more about how STEM is applied to real life.\u0022 \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ENithya Neelagiri, a sophomore at South Forsyth, heard about STEM Gems from her younger sister. \u0022I\u0027m already interested in chemical engineering and thought the camp would be a great way to gain some experience,\u0022 she said. One of her favorite activities was a probability game played with marbles. \u0022At that point, I had already really bonded with my teammates, so we had a lot of fun doing the math together.\u0022 Several other campers shared how fascinated they were with a lab tour that featured research being done on rat brains and the potential biomedical applications for humans. The girls\u0027 excitement at the end of the week is a testament to the camp\u0027s inspiring mission \u2014 and the bright futures ahead of them. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003E\u003Cspan\u003E\u003Cspan\u003EHighlights by the numbers: \u003C\/span\u003E\u003C\/span\u003E\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E50 energetic girls.\u003Cbr \/\u003E\r\n44 world-changing careers in STEM.\u003Cbr \/\u003E\r\n20 eye-opening lab tours.\u003Cbr \/\u003E\r\n12 hands-on activities.\u003Cbr \/\u003E\r\n7 exceptional women in STEM facilitators. 6 leading female engineering professors. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe last week of June, fifty teenage girls from around the Atlanta metro area convened daily at Georgia Tech\u0027s Marcus Center for the first in-person STEM Gems summer camp.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"A look inside STEM Gems, an all-girls summer camp"}],"uid":"36454","created_gmt":"2023-07-06 17:43:08","changed_gmt":"2023-07-13 16:38:23","author":"swilliamson40","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-07-06T00:00:00-04:00","iso_date":"2023-07-06T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"671130":{"id":"671130","type":"image","title":"STEM Gems at Georgia Tech","body":null,"created":"1689000053","gmt_created":"2023-07-10 14:40:53","changed":"1689000053","gmt_changed":"2023-07-10 14:40:53","alt":"STEM Gems at Georgia Tech","file":{"fid":"254141","name":"STEMgems.jpg","image_path":"\/sites\/default\/files\/2023\/07\/10\/STEMgems.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/07\/10\/STEMgems.jpg","mime":"image\/jpeg","size":1763340,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/07\/10\/STEMgems.jpg?itok=IKSff_qX"}}},"media_ids":["671130"],"groups":[{"id":"1278","name":"College of Sciences"},{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"}],"categories":[],"keywords":[{"id":"187423","name":"go-bio"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ESavannah Williamson\u003C\/p\u003E\r\n\r\n\u003Cp\u003Eswilliamson40@gatech.edu\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGroup photo: Malcolm Davie Photography\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"667807":{"#nid":"667807","#data":{"type":"news","title":"On The Edge: Georgia Tech Professors Awarded Curci Grants for Emerging Bio Research","body":[{"value":"\u003Cp\u003ETwo Georgia Tech Professors,\u0026nbsp;\u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/people\/lily-cheung\u0022\u003ELily Cheung\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/physics.gatech.edu\/user\/simon-sponberg\u0022\u003ESimon Sponberg\u003C\/a\u003E, have been awarded prestigious Curci Grants, which will fund cutting-edge research in their fields. The\u0026nbsp;\u003Ca href=\u0022https:\/\/curcifoundation.org\/\u0022\u003EShurl and Kay Curci Foundation\u003C\/a\u003E\u0026nbsp;supports science-based research striving for the advancement of a healthy and sustainable future for humans.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u201cThe Curci Foundation funds research that\u2019s just emerging, that\u2019s on the edge,\u201d Sponberg says. \u201cPart of the goal is to develop fundamental knowledge that will seed all sorts of future research.\u201d\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECheung\u2019s research has the potential to improve medical treatments \u2014 including many cancer treatments \u2014 and also to help create plants that are more resilient to climate change, which could help feed communities of the future.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESponberg\u2019s research into agile movement also has medical applications \u2014 potentially changing the way we approach physical therapy for degenerative diseases \u2014 as well as a number of other applications, including building better robots.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/cos.gatech.edu\/edge-georgia-tech-professors-awarded-curci-grants-emerging-bio-research-0\u0022\u003E\u003Cstrong\u003ERead the full story on the College of Sciences website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ECheung\u2019s research has the potential to improve medical treatments \u2014 including many cancer treatments \u2014 and also to help create plants that are more resilient to climate change, which could help feed communities of the future.\u0026nbsp;Sponberg\u2019s research into agile movement also has medical applications \u2014 potentially changing the way we approach physical therapy for degenerative diseases \u2014 as well as a number of other applications, including building better robots.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Awarded to Lily Cheung and Simon Sponberg, the grants will fund cutting-edge research in their fields."}],"uid":"35599","created_gmt":"2023-05-18 13:11:33","changed_gmt":"2023-06-20 15:01:54","author":"sperrin6","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-18T00:00:00-04:00","iso_date":"2023-05-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670832":{"id":"670832","type":"image","title":"Lily Cheung and Simon Sponberg","body":"\u003Cp\u003ELily Cheung and Simon Sponberg have been awarded Curci Grants to support their cutting-edge research.\u003C\/p\u003E\r\n","created":"1684415759","gmt_created":"2023-05-18 13:15:59","changed":"1684419384","gmt_changed":"2023-05-18 14:16:24","alt":"Two side-by-side portraits of Lily Cheung (Left) and Simon Sponberg (Right)","file":{"fid":"253769","name":"Cheung \u0026 Sponberg_ Non-Styleized .png","image_path":"\/sites\/default\/files\/2023\/05\/18\/Cheung%20%26%20Sponberg_%20Non-Styleized%20.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/18\/Cheung%20%26%20Sponberg_%20Non-Styleized%20.png","mime":"image\/png","size":2470695,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/18\/Cheung%20%26%20Sponberg_%20Non-Styleized%20.png?itok=HPiXaSIw"}}},"media_ids":["670832"],"groups":[{"id":"1278","name":"College of Sciences"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"141","name":"Chemistry and Chemical Engineering"},{"id":"146","name":"Life Sciences and Biology"},{"id":"150","name":"Physics and Physical Sciences"},{"id":"135","name":"Research"},{"id":"134","name":"Student and Faculty"}],"keywords":[{"id":"1503","name":"Biotechnology"},{"id":"61021","name":"\u003Cb\u003EThe School of Chemical \u0026 Biomolecular Engineering"},{"id":"4896","name":"College of Sciences"},{"id":"187915","name":"go-researchnews"},{"id":"192249","name":"cos-community"},{"id":"192253","name":"cos-neuro"},{"id":"192254","name":"cos-climate"},{"id":"192250","name":"cos-microbial"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["jess.hunt@cos.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"668038":{"#nid":"668038","#data":{"type":"news","title":"Georgia Tech and University of Kansas Student Team Wins IP Security Competition","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EPh.D. candidates Zachary Ellis and Anupam Golder won this year\u2019s Microelectronics Security Award (IP Security Track) at the IEEE International Symposium on Hardware Oriented Security and Trust (HOST).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EEllis and Golder are advised by \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E, p\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003Erofessor and Steve W. Chaddick School Chair\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E, in the \u003Ca href=\u0022mailto:https:\/\/ece.gatech.edu\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E. They participated in the competition alongside University of Kansas students Tanvir Hossain and Mahmudul Hasan and their Ph.D. advisor, Assistant Professor Tamzidul Hoque.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team\u2019s primary objective in the Microelectronics Security Competition was to showcase two distinct attack methods on a provided design from the organizers, followed by the implementation of countermeasures against these attacks. Their submission successfully demonstrated both attacks on the original design and incorporated three different countermeasures. Specifically, they implemented two countermeasures to combat the differential power analysis (DPA) attack and one countermeasure to address the differential fault analysis (DFA) attack.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team demonstrated their design in-person at HOST \u201923 which was held May 1-4 in San Jose, California. HOST\u0026nbsp;is the premier symposium that facilitates the rapid growth of hardware-based security research and development. Since 2008, it has served as the globally recognized event for researchers and practitioners to advance knowledge and technologies related to hardware security and assurance.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EPh.D. candidates from Georgia Tech and the University of Kansas won top prize in the Microelectronics Security Competition at the 2023 International Symposium on Hardware Oriented Security and Trust (HOST).\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Collaborative Excellence: Meet the Team in the Winning Effort"}],"uid":"36172","created_gmt":"2023-06-09 12:35:12","changed_gmt":"2023-06-09 12:35:28","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-09T00:00:00-04:00","iso_date":"2023-06-09T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670954":{"id":"670954","type":"image","title":"Mahmudul Hasan (KU), Zachary Ellis (GT), and Tanvir Hossain (KU). ","body":"\u003Cp\u003ELeft to right: Mahmudul Hasan (KU), Zachary Ellis (GT), and Tanvir Hossain (KU) after winning this year\u0027s\u0026nbsp;Microelectronics Security Award (IP Security Track) at the IEEE International Symposium on Hardware Oriented Security and Trust (HOST). Not pictured is team Georgia Tech team member Anupam Golder.\u0026nbsp;\u003C\/p\u003E\r\n","created":"1686313357","gmt_created":"2023-06-09 12:22:37","changed":"1686313539","gmt_changed":"2023-06-09 12:25:39","alt":"Photo of Mahmudul Hasan (KU), Zachary Ellis (GT), and Tanvir Hossain (KU) holding their award for winning this year\u0027s\u00a0Microelectronics Security Award (IP Security Track) at the IEEE International Symposium on Hardware Oriented Security and Trust (HOST). Not pictured is team Georgia Tech team member Anupam Golder.\u00a0","file":{"fid":"253928","name":"Photo of Mahmudul Hasan (KU), Zachary Ellis (GT), and Tanvir Hossain (KU). .png","image_path":"\/sites\/default\/files\/2023\/06\/09\/Photo%20of%20Mahmudul%20Hasan%20%28KU%29%2C%20Zachary%20Ellis%20%28GT%29%2C%20and%20Tanvir%20Hossain%20%28KU%29.%20.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/09\/Photo%20of%20Mahmudul%20Hasan%20%28KU%29%2C%20Zachary%20Ellis%20%28GT%29%2C%20and%20Tanvir%20Hossain%20%28KU%29.%20.png","mime":"image\/png","size":1668735,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/09\/Photo%20of%20Mahmudul%20Hasan%20%28KU%29%2C%20Zachary%20Ellis%20%28GT%29%2C%20and%20Tanvir%20Hossain%20%28KU%29.%20.png?itok=tQWNuNpJ"}}},"media_ids":["670954"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"42901","name":"Community"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"192735","name":"Zachary Ellis"},{"id":"192736","name":"Anupam Golder"},{"id":"192737","name":"Microelectronics Security Award"},{"id":"192738","name":"IP Security Track"},{"id":"174409","name":"IEEE International Symposium on Hardware Oriented Security and Trust"},{"id":"139771","name":"Arijit Raychowdhury"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192739","name":"Tanvir Hossain"},{"id":"192740","name":"Mahmudul Hasan"},{"id":"192741","name":"Tamzidul Hoque"},{"id":"192742","name":"HOST \u002723"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667999":{"#nid":"667999","#data":{"type":"news","title":"Fekri Appointed as John E. Pippin Chair in Wireless Communications","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/faramarz-fekri\u0022\u003EFaramarz\u0026nbsp;Fekri\u003C\/a\u003E has been named the John E. Pippin Chair in \u003Cspan\u003EWireless Communications\u003C\/span\u003E in the \u003Ca href=\u0022https:\/\/ece.gatech.edu\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE), effective June 1.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFekri holds a B.Sc. and M.Sc. from Sharif University of Technology and a Ph.D. from Georgia Tech. He became an assistant professor in ECE in 2000, showcasing a strong dedication to research and teaching. He is a prominent figure in wireless communication, information theory, machine learning, and inductive logic reasoning. Over his career, he has secured more than 15 research awards from the National Science Foundation (NSF), including the prestigious NSF career award.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EHis work has resulted in 250+ peer-reviewed articles and a book publication by Prentice Hall. Notably, he has received three significant research awards in recent years for his contributions to wireless communications, including communication-efficient distributed learning, machine learning in wireless networking systems, and wireless network traffic reduction via learning. In 2015, he was honored as an IEEE Fellow by the Information Theory Society for his notable contributions to coding theory. In 2020, he was appointed as an ECE-GTRI (Georgia Tech Research Institute) Fellow.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFekri\u0027s research aims to advance post-Shannon Era Communications, focusing on conveying information through interactive communication between senders and receivers. This concept aligns with semantic communication for AI and decision-making, which will play a vital role in future 6G wireless networks.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EHe envisions a transformative shift from \u0022connected things\u0022 to \u0022connected intelligence\u0022 in wireless networks, where AI empowers interconnectedness among humans, devices, and intelligence in a highly connected cyber-physical world. Fekri strives to gather experts in wireless communications, electromagnetics, devices and computing, robotics and control, and artificial intelligence to drive scientific breakthroughs and translate them into impactful advancements for 6G wireless networks.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFekri\u0027s dedication extends to mentoring and training exceptional students. He has guided 17 Ph.D. graduates, with five securing faculty positions in the US and seven joining renowned research labs at companies like Google, Facebook, Amazon, Qualcomm, CISCO, and Samsung. His commitment to teaching has earned him the Class of 1934 Course Survey Teaching Effectiveness Award twice. As a result, he was recognized early in his career at Georgia Tech as the ECE Outstanding Junior Faculty Member. Additionally, he actively mentors junior faculty members, advocating for diversity and the recruitment of women and underrepresented groups in the faculty recruitment committee.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFekri\u0027s research aligns with semantic communication for AI and decision-making, which will play a vital role in future 6G wireless networks.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"ECE Professor Faramarz Fekri to take on prominent wireless-systems role as John E. Pippin Chair, bringing expertise in wireless communication and mentorship."}],"uid":"36172","created_gmt":"2023-06-06 16:23:46","changed_gmt":"2023-06-06 16:25:45","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-06-06T00:00:00-04:00","iso_date":"2023-06-06T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670933":{"id":"670933","type":"image","title":"Professor Faramarz Fekri, the John E. Pippin Chair in Electromagnetics and Wireless Communications","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor Faramarz\u0026nbsp;Fekri, the John Pippin Chair in Wireless Communications\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1686067750","gmt_created":"2023-06-06 16:09:10","changed":"1686068426","gmt_changed":"2023-06-06 16:20:26","alt":"Photo of Professor Faramarz Fekri, the John E. Pippin Chair in Wireless Communications","file":{"fid":"253906","name":"Faramarz Fekri_John Pippen Chair_graphic.jpg","image_path":"\/sites\/default\/files\/2023\/06\/06\/Faramarz%20Fekri_John%20Pippen%20Chair_graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/06\/Faramarz%20Fekri_John%20Pippen%20Chair_graphic.jpg","mime":"image\/jpeg","size":3568817,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/06\/Faramarz%20Fekri_John%20Pippen%20Chair_graphic.jpg?itok=Y4bYiJzF"}}},"media_ids":["670933"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"42901","name":"Community"},{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"20181","name":"Faramarz Fekri"},{"id":"192724","name":"John Pippin Chair"},{"id":"192725","name":"Electromagnetics and Wireless Communications"},{"id":"192726","name":"School of Electrical and Computer Engineering at Georgia Tech"},{"id":"2435","name":"ECE"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667845":{"#nid":"667845","#data":{"type":"news","title":"NeuroSim Series Research Recognized with Prestigious Computer-Aided Design Award ","body":[{"value":"\u003Cp\u003EFor the second year in a row, research conducted at the \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E has won the \u003Ca href=\u0022https:\/\/ieee-ceda.org\/awards\/ieee-transactions-computer-aided-design-donald-o-pederson-best-paper-award\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EDonald O. Pederson Best Paper Award\u003C\/a\u003E. The prestigious award recognizes the best paper published in \u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/xpl\/RecentIssue.jsp?punumber=43\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EIEEE\u2019s Transactions on Computer-Aided Design of Integrated Circuits and Systems\u003C\/a\u003E (IEEE TCAD), the flagship journal of the \u003Ca href=\u0022https:\/\/ieee-ceda.org\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EIEEE Council on Electronic Design Automation\u003C\/a\u003E (CEDA).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe research, led by recent Ph.D. Graduate Xiaochen Peng and ECE Professor\u202f\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EShimeng Yu\u003C\/a\u003E, proposes an end-to-end benchmark framework to evaluate state-of-the-art compute-in-memory (CIM) accelerators. The work provides the design automation community a\u202f\u003Ca href=\u0022https:\/\/github.com\/neurosim\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Efamily of open-sourced NeuroSim series\u003C\/a\u003E with tools to allow users to explore different hardware specifications and find the best design options for their research on CIM accelerators.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe paper\u2019s co-authors include Shanshi Huang,\u202fHongwu Jiang, and\u202fAnni Lu, who are all current or former Ph.D. students in Yu\u2019s \u003Ca href=\u0022https:\/\/shimeng.ece.gatech.edu\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003ELaboratory for Emerging Devices and Circuits\u003C\/a\u003E research group.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe NeuroSim series has been recognized for its comprehensive capabilities and has attracted many users, including industry researchers from major companies such as Intel, TSMC, IBM, Samsung, and SK Hynix, as well as researchers from universities and academia worldwide. The project is primarily supported by the National Science Foundation and the Semiconductor Research Corporation.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe award will be presented at the Design Automation Conference (DAC), taking place from July 9-13 in San Francisco.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEarlier this year, Peng, who currently works at TSMC Corporate Research (North America) as a principal engineer, received the 2023 Outstanding Dissertation Award from the\u202f\u003Ca href=\u0022https:\/\/www.edaa.com\/\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EEuropean Design and Automation Association\u003C\/a\u003E\u202f(EDAA) for her NeuroSim series work.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn 2022, ECE Professor Sung Kyu Lim and his research team \u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/2022\/07\/lim-and-team-win-2022-transactions-computer-aided-design-best-paper-award\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003Ewon the Donald O. Pederson Best Paper Award\u003C\/a\u003E for their paper on a physical design tool named Compact-2D that automatically builds high-density and commercial-quality monolithic three-dimensional integrated circuits\u202f(3D ICs).\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe research, led by recent Ph.D. Graduate Xiaochen Peng and ECE Professor\u202f\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022 rel=\u0022noreferrer noopener\u0022 target=\u0022_blank\u0022\u003EShimeng Yu\u003C\/a\u003E, proposes an end-to-end benchmark framework to evaluate state-of-the-art compute-in-memory (CIM) accelerators.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The flagship computer-aided design journal (IEEE TCAD) has honored a NeuroSim series developed by Xiaochen Peng and Shimeng Yu, continuing ECE research\u0027s winning streak."}],"uid":"36172","created_gmt":"2023-05-23 15:12:58","changed_gmt":"2023-06-01 14:54:41","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-23T00:00:00-04:00","iso_date":"2023-05-23T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670910":{"id":"670910","type":"image","title":"Xiaochen Peng and Shimeng Yu.jpg","body":"\u003Cp\u003EPeng and Yu in the research lab before the 2023 Spring Georgia Tech Commencement where Peng received her Ph.D. Peng is holding the EDAA\u2019s Outstanding Dissertation Award for her NeuroSim series work.\u003C\/p\u003E\r\n","created":"1685631256","gmt_created":"2023-06-01 14:54:16","changed":"1685631256","gmt_changed":"2023-06-01 14:54:16","alt":"Peng and Yu in the research lab before the 2023 Spring Georgia Tech Commencement where Peng received her Ph.D. Peng is holding the EDAA\u2019s Outstanding Dissertation Award for her NeuroSim series work.","file":{"fid":"253876","name":"Xiaochen Peng and Shimeng Yu.jpg","image_path":"\/sites\/default\/files\/2023\/06\/01\/Xiaochen%20Peng%20and%20Shimeng%20Yu.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/06\/01\/Xiaochen%20Peng%20and%20Shimeng%20Yu.jpg","mime":"image\/jpeg","size":5799065,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/06\/01\/Xiaochen%20Peng%20and%20Shimeng%20Yu.jpg?itok=LnjqXwqY"}}},"media_ids":["670910"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"130","name":"Alumni"},{"id":"134","name":"Student and Faculty"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192662","name":"Donald O. Pederson Best Paper Award"},{"id":"192663","name":"IEEE\u0027s Transactions on Computer-Aided Design of Integrated Circuits and Systems"},{"id":"192664","name":"IEEE Council on Electronic Design Automation"},{"id":"192468","name":"Xiaochen Peng"},{"id":"178857","name":"Shimeng Yu"},{"id":"192665","name":"NeuroSim series"},{"id":"178486","name":"Design Automation Conference"},{"id":"192666","name":"Shanshi Huang"},{"id":"192667","name":"\u202fHongwu Jiang"},{"id":"192668","name":"Anni Lu"},{"id":"182048","name":"Laboratory for Emerging Devices and Circuits"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003EDan Watson\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667662":{"#nid":"667662","#data":{"type":"news","title":"Back-to-Back Drone Racing Titles Further RotorJackets Goal of Expansion","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EApril was a month of national championships at Georgia Tech as Buzz was crowned the nation\u0027s best mascot, and the RotorJackets took home their second straight Collegiate Drone Racing championship. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ETech\u0027s team, comprised of four racers, narrowly emerged from the field of 15 schools and 52 individual pilots to take home the title following two days of competition at the Fayette Fliers Field in Tyrone, Georgia. While scores from the qualifying round and the previous races in the knockout round are compiled into a sum, it was RotorJackets\u0027 vice president Tanner Beard who put his team in the lead in the final race of the competition. Beard also finished in second place in the individual competition, but it\u0027s the team\u2019s accomplishment that he\u0027s proudest of. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EBeard and outgoing team president Luke Lawver started flying first-person view (FPV) drones together in 2018 before officially founding RotorJackets in the fall of 2020. As Beard, a mechanical engineering student, and Lawver, an aerospace graduate student, get set to leave Tech, the pair couldn\u0027t have imagined the success the group has achieved in a short time. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022I\u0027m just very proud of how far it\u0027s come. We started out practicing on fields with PVC pipes, and our gates and materials were falling apart. We didn\u0027t really have anything, but we were able to build everything up, and we\u0027ve practiced every single weekend for events like this,\u0022 Beard said. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe team learned the layout of the championship track just two weeks before the event, but practicing from first light to sundown was nothing new for the RotorJackets. The hard work and preparation continued up until the last minute as the team was forced to replace a drone the night before the competition. But the two senior members of the team were impressed by first-year computer engineering student Ian Boraks \u2013\u2013 the incoming president \u2013\u2013 and Dylan Wyckoff, in his first-ever drone race. Wyckoff is a third-year computer science major and will take over as the club\u2019s treasurer. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EBoth relished the opportunity to fly alongside their experienced teammates and are now focused on continuing their legacy in pursuit of a three-peat. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EOther than winning titles, the club also wants to expand the drone-flying community on campus. When the fall semester begins, monthly events will be held on Tech Green, where all students can learn how to fly. No experience is necessary, and all equipment will be provided. Not all club members are racers, and the benefits of learning the skill go well beyond the group. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022The cool thing about FPV as a hobby is that, especially as an engineering major or someone in any STEM field, it teaches you a ton of practical skills that are incredibly useful in your day-to-day job,\u0022 Lawver said. \u0022We build all of our drones basically from scratch, so you can learn about electrical hardware design, mechanical hardware design, and software engineering and dive into whatever areas you want. Or, you can just treat it as a black box, and you\u0027ll have fun with it.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EUsing the skills they\u0027ve acquired, the RotorJackets have expanded their footprint at Tech, using drones to enhance coverage of events like the iconic \u003Ca href=\u0022https:\/\/www.youtube.com\/watch?v=E0ia52wJz0E\u0022\u003EMini-500\u003C\/a\u003E as well the Pi Mile, and they\u0027ve assisted Athletics in creating digital content.\u0026nbsp; \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EWhile not necessary to join the club and learn the ropes, obtaining your Remote Pilot Certificate from the FAA is recommended if you\u0027re interested in the more advanced stages of drone piloting, and the plan is to offer this certification through the club in the coming semesters. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EFor information on how to join the RotorJackets and the latest updates on upcoming events, join their \u003C\/span\u003E\u003C\/span\u003E\u003Ca href=\u0022https:\/\/discord.gg\/9eQYtbJChu\u0022\u003E\u003Cspan\u003EDiscord\u003C\/span\u003E\u003C\/a\u003E\u003Cspan\u003E\u003Cspan\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ERotorJackets, Georgia Tech\u2019s drone racing team, captured their second straight national title, but their mission extends beyond winning championships. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"RotorJackets, Georgia Tech\u2019s drone racing team, captured their second straight national title, but their mission extends beyond winning championships. "}],"uid":"36418","created_gmt":"2023-05-05 20:37:40","changed_gmt":"2023-05-05 21:07:41","author":"sgagliano3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-05-05T00:00:00-04:00","iso_date":"2023-05-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670771":{"id":"670771","type":"image","title":"RotorJackets celebrate their victory at the Collegiate Drone Racing Association National Championship. ","body":"\u003Cp\u003EPhoto courtesy of RotorJackets\u003C\/p\u003E\r\n","created":"1683319924","gmt_created":"2023-05-05 20:52:04","changed":"1683320852","gmt_changed":"2023-05-05 21:07:32","alt":"RotorJackets celebrate their victory at the Collegiate Drone Racing Association National Championship. ","file":{"fid":"253696","name":"GT.png","image_path":"\/sites\/default\/files\/2023\/05\/05\/GT.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/05\/05\/GT.png","mime":"image\/png","size":125300,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/05\/05\/GT.png?itok=YuFTo8iL"}},"670772":{"id":"670772","type":"video","title":"The race that clinched the RotorJackets\u0027 win at the 2023\u00a0Drone Racing Association Championship.","body":"\u003Cp\u003EThe race that clinched the RotorJackets\u0027 win at the 2023 Drone Racing Association Championship.\u003C\/p\u003E\r\n","created":"1683320657","gmt_created":"2023-05-05 21:04:17","changed":"1683320657","gmt_changed":"2023-05-05 21:04:17","video":{"youtube_id":"1XA5vOiItl4","video_url":"https:\/\/www.youtube.com\/watch?v=1XA5vOiItl4"}}},"media_ids":["670771","670772"],"groups":[{"id":"1182","name":"General"}],"categories":[{"id":"136","name":"Aerospace"},{"id":"134","name":"Student and Faculty"},{"id":"145","name":"Engineering"},{"id":"152","name":"Robotics"},{"id":"129","name":"Institute and Campus"}],"keywords":[],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ESteven Gagliano - Communications Officer\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EInstitute Communications\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Steven.gagliano@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667520":{"#nid":"667520","#data":{"type":"news","title":"Electrical Engineering and Computer Engineering Graduate Programs in Top 5 of National Rankings","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe \u003Ca href=\u0022https:\/\/ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) graduate programs are both in the top five in the recently published 2023-24 edition of the \u003Cem\u003EU.S. News \u0026amp; World Report\u003C\/em\u003E national rankings.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EECE\u2019s computer engineering graduate program \u003Ca href=\u0022https:\/\/www.usnews.com\/best-graduate-schools\/top-engineering-schools\/computer-engineering-rankings\u0022\u003Eadvanced one spot to fifth place\u003C\/a\u003E (tied with University of Illinois Urbana-Champaign) and the electrical engineering graduate program \u003Ca href=\u0022https:\/\/www.usnews.com\/best-graduate-schools\/top-engineering-schools\/electrical-engineering-rankings\u0022\u003Eremained in fourth\u003C\/a\u003E (tied with California Institute of Technology, University of Illinois Urbana-Champaign, and University of Michigan-Ann Arbor).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe new rankings mean that all four of ECE\u2019s undergraduate and graduate programs are back in the top five according to \u003Cem\u003EU.S. News \u0026amp; World Report\u003C\/em\u003E rankings. In terms of rankings among public universities, both graduate programs placed second. All ECE\u2019s undergraduate and graduate programs now rank either No. 1 or No. 2 among public universities. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cThe rankings affirm the value of ECE\u0027s excellence-at scale-approach in providing a high-quality education to a broad and diverse range of students, preparing them for the demands of a rapidly changing world and workplace,\u201d said\u0026nbsp;Arijit\u0026nbsp;Raychowdhury, the Steve W. Chaddick School Chair for ECE. \u201cThe hard work and dedication of our entire community is reflected in the School\u2019s continued recognition.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/\u0022\u003EGeorgia Tech\u2019s College of Engineering\u003C\/a\u003E graduate program have also entered the top five, climbing two spots to No. 5 in this year\u2019s rankings.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe new rankings put the College of Engineering in third among public universities. It also complements last fall\u2019s undergraduate list, where the College is ranked No. 5 overall.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cbr \/\u003E\r\n\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EAbout the\u0026nbsp;U.S. News \u0026amp; World Report\u0026nbsp;Rankings\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cbr \/\u003E\r\n\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EU.S. News\u0026nbsp;releases graduate school rankings each spring.\u0026nbsp;Their evaluation of engineering as a whole is based on a variety of factors, including research expenditures, peer assessments, and doctoral degrees awarded. Rankings of specific engineering disciplines are based solely on peer assessments by department heads.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn the 2023-24 edition of the \u003Cem\u003EU.S. News \u0026amp; World Report\u003C\/em\u003E national rankings, ECE\u2019s computer engineering graduate program advanced one spot to fifth place and the electrical engineering graduate program remained in fourth.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"GT ECE\u0027s graduate programs are both back in the top five in the 2023-24 U.S. News \u0026 World Report rankings. "}],"uid":"36172","created_gmt":"2023-04-25 17:43:09","changed_gmt":"2023-04-25 18:26:07","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-04-25T00:00:00-04:00","iso_date":"2023-04-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670626":{"id":"670626","type":"image","title":"ECE 2024 U.S. News \u0026 World Report Graduate Rankings","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe Georgia Tech School of Electrical and Computer Engineering (ECE) graduate programs are both in the top five in the recently published 2023-24 edition of the \u003Cem\u003EU.S. News \u0026amp; World Report\u003C\/em\u003E national rankings.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1682444020","gmt_created":"2023-04-25 17:33:40","changed":"1682444087","gmt_changed":"2023-04-25 17:34:47","alt":"Photo graphic of the Ramblin\u0027 Wreck outside of the Van Leer Building showing the new\u00a0U.S. News \u0026 World Reportnational rankings\u00a0for the ECE graduate programs.\u00a0The computer engineering graduate program advanced one spot to fifth place and the electrical engineering graduate program remained in fourth.","file":{"fid":"253524","name":"US News Grad Rankings_2024_B_72_1.jpg","image_path":"\/sites\/default\/files\/2023\/04\/25\/US%20News%20Grad%20Rankings_2024_B_72_1.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/04\/25\/US%20News%20Grad%20Rankings_2024_B_72_1.jpg","mime":"image\/jpeg","size":1147474,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/04\/25\/US%20News%20Grad%20Rankings_2024_B_72_1.jpg?itok=85zCpe85"}}},"media_ids":["670626"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"144","name":"Energy"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"}],"keywords":[{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"1259","name":"electrical engineering"},{"id":"5527","name":"computer engineering"},{"id":"192562","name":"U.S. News \u0026 World Report Rankings"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667151":{"#nid":"667151","#data":{"type":"news","title":"ECE Professor Omer Inan to be Featured Speaker at TEDxAtlanta 2023: WE RISE","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor \u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/omer-t-inan\u0022\u003EOmer Inan\u003C\/a\u003E is set to take the stage at the upcoming \u003Ca href=\u0022https:\/\/www.tedxatlanta.com\u0022\u003ETEDxAtlanta 2023: We Rise\u003C\/a\u003E event on May 19.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAs the Linda J. and Mark C. Smith Chair in bioscience and bioengineering in Tech\u2019s \u003Ca href=\u0022https:\/\/ece.gatech.edu\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE), Inan designs clinically relevant medical devices and systems and translates them from the lab to patient care applications. In his talk, Inan will be discussing his groundbreaking research on wearable healthcare technologies and the potential they hold for revolutionizing the field.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EInan is a member of the prestigious Medical and Biological Engineering (AIMBE) College of Fellows (elected in 2022) for his \u201coutstanding contributions to the non-invasive assessment of the mechanical aspects of cardiovascular health and performance using wearable devices.\u201d Additional achievements include an Academy Award for Technical Achievement from The Academy of Motion Picture Arts and Sciences (The Oscars, 2021), the Georgia Power Professor of Excellence for the College of Engineering (2019), and the National Science Foundation Faculty Early Career Development Program award (NSF CAREER, 2018).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ETEDxAtlanta 2023: WE RISE brings together an impressive group of participants from diverse backgrounds, experiences, and perspectives. The speakers include entrepreneurs, activists, educators, artists, scientists, and many other changemakers who have risen above challenges to make a positive impact on the world.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThe event\u0027s participants will share their stories and insights on how they have overcome adversity, embraced innovation, and challenged the status quo to make a difference in their communities and beyond. Through their talks, they will inspire and empower attendees to rise above their own challenges and take action towards creating a better future for all.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ET\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\ufeffEDxAtlanta 2023: WE RISE will take place on Friday, May 19 from 9 a.m. \u2013 6:30 p.m. at the Rialto Center for the Arts\u0026nbsp;(80 Forsyth Street Northwest Atlanta, GA 30303). Learn more and purchase tickets at \u003Ca href=\u0022https:\/\/www.tedxatlanta.com\/\u0022\u003Etedxatlanta.com\u003C\/a\u003E.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ET\ufeffEDxAtlanta 2023: WE RISE will take place on Friday, May 19 from 9 a.m. \u2013 6:30 p.m. at the Rialto Center for the Arts\u0026nbsp;(80 Forsyth Street Northwest Atlanta, GA 30303).\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Inan will be discussing his groundbreaking research on wearable healthcare technologies."}],"uid":"36172","created_gmt":"2023-04-06 20:27:17","changed_gmt":"2023-04-25 13:27:46","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-04-06T00:00:00-04:00","iso_date":"2023-04-06T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670472":{"id":"670472","type":"image","title":"Omer Inan TEDxAtlanta 2023: We Rise","body":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EProfessor Omer Inan is set to take the stage at the upcoming TEDxAtlanta 2023: We Rise event on May 19.\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","created":"1680812596","gmt_created":"2023-04-06 20:23:16","changed":"1680812643","gmt_changed":"2023-04-06 20:24:03","alt":"Professor Omer Inan is set to take the stage at the upcoming TEDxAtlanta 2023: We Rise event on May 19.","file":{"fid":"253334","name":"Omer Inan.png","image_path":"\/sites\/default\/files\/2023\/04\/06\/Omer%20Inan.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/04\/06\/Omer%20Inan.png","mime":"image\/png","size":780617,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/04\/06\/Omer%20Inan.png?itok=wISfso_e"}}},"media_ids":["670472"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"},{"id":"145","name":"Engineering"},{"id":"135","name":"Research"}],"keywords":[{"id":"125271","name":"Omer Inan"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"192497","name":"TEDxAtlanta"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"667298":{"#nid":"667298","#data":{"type":"news","title":"Research Teams Awarded $15M to Design Materials Inspired by Deep Sea Fish and to Explore Attention Control","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ETwo teams from Georgia Tech have been awarded a combined $15 million from the U.S. Department of Defense (DoD) for basic research projects as part of the Multidisciplinary University Research Initiative (MURI) program. MURI seeks to fund research teams with creative and diverse solutions to complex problems and is a major part of the DoD\u2019s research portfolio.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/erturk\u0022\u003EAlper Erturk\u003C\/a\u003E (Lead PI), Carl Ring Family Chair and professor in the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EGeorge W. Woodruff School of Mechanical Engineering\u003C\/a\u003E, and \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/people\/yuhang-hu\u0022\u003EYuhang Hu\u003C\/a\u003E, associate professor and Woodruff Faculty Fellow in the Woodruff School and the \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/\u0022\u003ESchool of Chemical and Biomolecular Engineering\u003C\/a\u003E, were awarded $7.5 million for their project, Bio\u003Cspan lang=\u0022ZH-CN\u0022\u003E\u2010\u003C\/span\u003EInspired Material Architectures for Deep Sea (BIMADS). \u003Ca href=\u0022https:\/\/psychology.gatech.edu\/randall-w-engle\u0022\u003ERandall Engle\u003C\/a\u003E, professor in the \u003Ca href=\u0022https:\/\/psychology.gatech.edu\/\u0022\u003ESchool of Psychology\u003C\/a\u003E, was awarded the same amount for his project titled Understanding and Building Overall Cognitive Capability Through Attention Control.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EErturk and Hu\u2019s interdisciplinary project will explore the fundamental science behind the biological characteristics that allow deep sea fish to adapt and survive in high pressure ocean environments. They will then translate those findings to engineer bioinspired materials needed to realize the Navy\u2019s advanced capabilities in deep sea environments.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cIn the deep ocean, marine organisms have evolved to thrive in high pressure environments, and adapt to pressure changes while remaining functional,\u201d Erturk said. \u201cOur goal for this project is to discover, test, and translate biological mechanisms into synthetic materials and structures that can dynamically adapt to high pressures in the ocean.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ESpecifically, the researchers will test and explore the origins of the biological mechanisms (both molecular and macroscopic) that underlie the ability for deep sea snailfish to adapt to high pressures, pressure changes, and pressure differentials across material interfaces. Using findings from the biological studies, the researchers will design synthetic materials and structures that will then be evaluated in high pressure chambers. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cKnowledge gained from these studies will provide insight toward the design of structures spanning from atmospheric dive suits to robotic fish for the deep ocean,\u201d Hu said. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EBIMADS brings together experts in marine biology, bioengineering, biomimetic materials, chemistry, mechanochemistry and multiphysics chemomechanical modeling, hydrogel synthesis, biohybrid material fabrication, and the design, mechanics, and dynamics of architected structures. In addition to Erturk and Hu, the team also includes Anna Balazs and Lance Davidson from the University of Pittsburgh, John Costello from Providence College, Shashank Priya from the University of Minnesota, and Andrew Sarles from the University of Tennessee. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cstrong\u003EAttention Control in Naval Training\u003C\/strong\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EEngle\u2019s project will explore the brain\u2019s mechanisms of attention control and investigate methods to potentially improve it or reduce its decline.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cWe want to better understand the role that controlling attention and individual differences in that ability has in real-world, complex tasks such as flying a plane, driving a car, or even studying for a physics test,\u201d Engle said. \u201cWe expect this work will help the Navy identify job trainees who are best able to attend to complex tasks, and also help to mitigate the effects of fatigue and mind wandering common to those tasks.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EAccording to Engle, the Navy trains about a thousand air traffic control professionals each year and spends over $100,000 per candidate. But nearly a quarter of candidates fail training, leading to significant financial waste. \u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EEngle\u2019s work with air traffic control trainees showed that current evaluations used to select candidates for training only predicts a small percentage of success. Engle found that, by using his measures of ability to control attention in evaluations, the Navy could more than double predictive success in candidate training. In addition, researchers found that Engle\u2019s measures appeared to have less adverse impact and bias against women and minority candidates.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003EEngle\u2019s collaborative research team includes researchers from MIT, the University of Chicago, Purdue University, and Michigan State University. Each team member is studying a different aspect of attention control.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003ETwo teams from Georgia Tech have been awarded a combined $15 million from the U.S. Department of Defense (DoD) for basic research projects as part of the Multidisciplinary University Research Initiative (MURI) program. MURI seeks to fund research teams with creative and diverse solutions to complex problems and is a major part of the DoD\u2019s research portfolio.\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The MURI program seeks to fund research teams with creative and diverse solutions to complex problems and is a major part of the DoD\u2019s research portfolio."}],"uid":"36123","created_gmt":"2023-04-12 20:44:26","changed_gmt":"2023-04-12 20:47:03","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-04-12T00:00:00-04:00","iso_date":"2023-04-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670514":{"id":"670514","type":"image","title":"Randall Engle, Alper Erturk, and Yuhang Hu","body":"\u003Cp\u003ERandall Engle, professor in the School of Psychology;\u0026nbsp;Alper Erturk, Carl Ring Family Chair and professor in the George W. Woodruff School of Mechanical Engineering; and Yuhang Hu, associate professor in the Woodruff School and the School of Chemical and Biomolecular Engineering\u003C\/p\u003E\r\n","created":"1681331848","gmt_created":"2023-04-12 20:37:28","changed":"1681332062","gmt_changed":"2023-04-12 20:41:02","alt":"Randall Engle, Alper Erturk, and Yuhang Hu","file":{"fid":"253386","name":"Urgent_Quick_Photo_Stitch.jpg","image_path":"\/sites\/default\/files\/2023\/04\/12\/Urgent_Quick_Photo_Stitch.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/04\/12\/Urgent_Quick_Photo_Stitch.jpg","mime":"image\/jpeg","size":171950,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/04\/12\/Urgent_Quick_Photo_Stitch.jpg?itok=Op3dcIQn"}}},"media_ids":["670514"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39521","name":"Robotics"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:catherine.barzler@gatech.edu\u0022\u003ECatherine Barzler,\u003C\/a\u003E Senior Research Writer\/Editor\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["catherine.barzler@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666768":{"#nid":"666768","#data":{"type":"news","title":"Two Tech Women Pave Their Own Way in Automotive Industry ","body":[{"value":"\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EWomen make up just 24% of the automotive industry, but Georgia Tech graduates Jenn Voelker and Julia Vorpahl haven\u0027t let statistics stop them from paving their own way in a male-dominated field. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EBoth Voelker and Vorpahl work for Karma Automotive, a luxury electric vehicle manufacturer based in California. Beginning with their time at Tech, they\u0027ve never let gender bias stop them from pursuing their passion. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022It\u0027s math,\u0022 Vorpahl, a\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E \u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003Evisualization and digital\u0026nbsp;design modeler at Karma, said. \u0022You either get the question right, or you get the question wrong. I think that attitude really helps when you get into a professional environment. It teaches you to have tougher skin where if you are the best for that job, you will get the job. That\u0027s what Georgia Tech instilled.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EVorpahl grew up in the industry watching her family operate what is now the oldest independently owned Mercedes-Benz dealer in metro Atlanta after her grandfather, an engine designer for the German automaker, came to America and opened the shop in 1967. She arrived at Georgia Tech unsure if she\u0027d follow in her family\u0027s footsteps, but ultimately, she landed an internship at Daimler, the nation\u0027s largest commercial vehicle manufacturer. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EWhile other interns came in with a background in automotive design, Vorpahl\u2019s willingness to learn and tireless work ethic landed her a full-time job as the only woman in the company\u0027s design studio. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EDuring her three years at Daimler before accepting her position at Karma in 2022, she\u0027d occasionally make the drive from Portland, Oregon, back to Georgia. Along the way, she crossed paths with truckers, who often expressed surprise that Vorpahl was among those behind the scenes designing their rigs. She often heard questions like \u201cWhy do you work there?\u201d or \u201cHow did you end up there?\u201d \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAnd her response was simple. \u0022Women like cars, too.\u201d\u0026nbsp; \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EThat rang true through Voelker\u0027s childhood as well. When the senior director of program management for Karma arrived in Atlanta for her first year at Georgia Tech, she knew she\u0027d found a place that could help her turn an aptitude for math and science, and a fervor for cars, into a career. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022Best move I ever made,\u0022 Voelker said on her decision to enroll at Tech, although it wasn\u0027t just the Institute\u0027s stellar reputation that lured her from her home state of New Hampshire. \u0022I visited campus in February. There was 6 feet of snow on the ground and then I came to Atlanta, and the flowers were blooming.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EAfter changing her major from mechanical engineering to industrial design, Voelker got her foot in the door through an internship with Masterack, a commercial cargo vehicle equipment manufacturer based in Atlanta. She attended Tech at a time when women made up around 27% of the undergraduate population, so when she entered the workforce, she wasn\u0027t fazed. \u0022It never bothered me. I have always felt like I fit right in, especially when it\u0027s \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003Ethe right school, the right class, or the right company where everybody appreciates learning from each other and working together towards a common goal\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E,\u0022 she said. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn fact, her experience on North Avenue taught her to \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003Ealways keep learning and never give up\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E, a piece of advice she now passes along to other women entering the industry. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003EDon\u2019t be afraid to g\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003Eive your opinion in meetings, speak up and use all of the knowledge that you\u0027ve learned over the years toward whatever project you\u0027re working on,\u0022 said Voelker, who worked her way up the ladder at Masterack for 18 years before seeking a new challenge at Karma. \u201cThat\u0027s one thing that I haven\u0027t backed down on. If I have a strong opinion about something, I have no fear of saying it.\u201d\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EVorpahl and Voelker each commended Karma for their dedication to promoting hard-working women and a culture that fosters diversity \u2014 a principle that Vorpahl especially values after completing two study abroad programs at the University of Singapore and the University of Strathclyde. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u201cOne of the biggest advantages was seeing how people from different countries approach design and how different schools approach design. You don\u2019t want a bunch of people who all think exactly the same way. Otherwise, we\u2019d all be driving around in the exact same vehicle,\u201d she said. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003ELeading Karma\u2019s commercial vehicle product line, Voelker noted that she has continued to see more women \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003Ein leadership positions and at industry conferences\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E, and she hopes that momentum carries over to the next generation. Highlighting the importance of igniting both young girls\u2019 and boys\u0027 interest in STEM, Voelker recently spoke to a local second grade class to share her experiences. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022I\u0027ve been really fortunate to have had some great mentors over my career, so I love to pay it forward to the younger generation,\u0022 she said. \u0022They were so excited, and I hope that stays with them and excites them to learn more about engineering.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EIn addition to providing an example to young women of how to succeed in a competitive industry, Vorpahl also hopes to share the technical aspects of what she\u0027s learned in the field with her alma mater and offer future graduates a roadmap to a career in automotive design. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u0022The students would thrive in this industry because it is so nitpicky, and Tech minds would just love it,\u0022 she said. \u0022There\u0027s not really a direct path from the Georgia Tech studios into car studios, so I\u0027m hoping that I can show them that path.\u0022\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003E\u003Cspan\u003EVoelker and Vorpahl are bonded by their employer and their alma mater, but it\u2019s their shared passion for seeing their hard work hit the pavement that continues to drive them. \u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u0026nbsp;\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/span\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech graduates Jenn Voelker and Julia Vorpahl are in the driver\u2019s seat working for Karma Automotive in California.\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech graduates Jenn Voelker and Julia Vorpahl are in the driver\u2019s seat working for Karma Automotive in California. "}],"uid":"36418","created_gmt":"2023-03-23 14:22:30","changed_gmt":"2023-04-05 15:59:17","author":"sgagliano3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-03-23T00:00:00-04:00","iso_date":"2023-03-23T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670244":{"id":"670244","type":"image","title":"JuliaJenn Karma 3.jpg","body":"\u003Cp\u003EJenn Voelker and Julia Vorpahl at the Karma Automotive headquarters in Irvine, California. Photo submitted.\u003C\/p\u003E\r\n","created":"1679583092","gmt_created":"2023-03-23 14:51:32","changed":"1679664859","gmt_changed":"2023-03-24 13:34:19","alt":"Jenn Voelker and Julia Vorpahl at the Karma Automotive headquarters in Irvine, California","file":{"fid":"253074","name":"JuliaJenn Karma 3.jpg","image_path":"\/sites\/default\/files\/2023\/03\/23\/JuliaJenn%20Karma%203_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/03\/23\/JuliaJenn%20Karma%203_0.jpg","mime":"image\/jpeg","size":7975913,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/03\/23\/JuliaJenn%20Karma%203_0.jpg?itok=y_jALKrB"}},"670247":{"id":"670247","type":"image","title":"Jenn WTS.JPG","body":"\u003Cp\u003EJenn Voelker showcasing Karma\u0027s commercial product line at an auto show.\u0026nbsp;\u003C\/p\u003E\r\n","created":"1679583474","gmt_created":"2023-03-23 14:57:54","changed":"1679583474","gmt_changed":"2023-03-23 14:57:54","alt":"Jenn Voelker showcasing Karma\u0027s commerical product line at an auto show. ","file":{"fid":"253076","name":"Jenn WTS.JPG","image_path":"\/sites\/default\/files\/2023\/03\/23\/Jenn%20WTS.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/03\/23\/Jenn%20WTS.JPG","mime":"image\/jpeg","size":2250281,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/03\/23\/Jenn%20WTS.JPG?itok=7ir28Sla"}},"670248":{"id":"670248","type":"image","title":"Vorpahl_Julia_HoF_SpecialEdition_Badge.png","body":"\u003Cp\u003EJulia Vorpahl working on a project in the Karma design studio.\u0026nbsp;\u003C\/p\u003E\r\n","created":"1679583792","gmt_created":"2023-03-23 15:03:12","changed":"1679583792","gmt_changed":"2023-03-23 15:03:12","alt":"Julia Vorpahl working on a project in the Karma design studio. ","file":{"fid":"253077","name":"Vorpahl_Julia_HoF_SpecialEdition_Badge.png","image_path":"\/sites\/default\/files\/2023\/03\/23\/Vorpahl_Julia_HoF_SpecialEdition_Badge.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/03\/23\/Vorpahl_Julia_HoF_SpecialEdition_Badge.png","mime":"image\/png","size":6505208,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/03\/23\/Vorpahl_Julia_HoF_SpecialEdition_Badge.png?itok=u_J40cEm"}}},"media_ids":["670244","670247","670248"],"related_links":[{"url":"https:\/\/news.gatech.edu\/features\/2023\/03\/driving-change","title":"Driving Change: Georgia Tech Experts Lead in Electrification of America\u2019s Roads"}],"groups":[{"id":"1214","name":"News Room"}],"categories":[{"id":"130","name":"Alumni"},{"id":"42901","name":"Community"},{"id":"139","name":"Business"},{"id":"142","name":"City Planning, Transportation, and Urban Growth"}],"keywords":[{"id":"109","name":"Georgia Tech"},{"id":"192382","name":"Karma Automotive"},{"id":"8900","name":"women\u0027s history month"},{"id":"12819","name":"electric vehicles"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"},{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:Steven.gagliano@gatech.edu\u0022\u003ESteven Gagliano\u003C\/a\u003E - Communications Officer\u003C\/p\u003E\r\n\r\n\u003Cp\u003EInstitute Communications\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Steven.gagliano@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666901":{"#nid":"666901","#data":{"type":"news","title":"Recent ECE Graduate, Peng, Recognized for Dissertation on Compute-in-Memory Evaluation","body":[{"value":"\u003Cp\u003EXiaochen Peng has received the 2023 Outstanding Dissertation Award from the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.edaa.com\u0022\u003EEuropean Design and Automation Association\u003C\/a\u003E\u0026nbsp;(EDAA). Peng is a recent Ph.D. graduate from the\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;(ECE) and currently works at TSMC Corporate Research (North America) as principal engineer. She was advised by ECE Professor\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/directory\/shimeng-yu\u0022\u003EShimeng Yu\u0026nbsp;\u003C\/a\u003Ewhile at Tech.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPeng\u2019s award-winning dissertation proposes an end-to-end benchmark framework to evaluate state-of-the-art compute-in-memory (CIM) accelerators by considering the hardware performance with the impacts from device options, circuit topologies, architecture hierarchy and data flow, as well as the software accuracy with non-ideal hardware properties. Her work provided the design automation community a\u0026nbsp;\u003Ca href=\u0022https:\/\/github.com\/neurosim\u0022\u003Efamily of open-sourced NeuroSim series\u003C\/a\u003E. These tools allow users to explore different hardware specifications and find the best design options for their research on CIM accelerators. The NeuroSim series has been recognized for its comprehensive capabilities and has attracted many users, including industry researchers from major companies such as Intel, TSMC, IBM, Samsung, and SK Hynix, as well as researchers from universities and academia worldwide.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEDAA is an open nonprofit association, aimed at educational, scientific, and technical purposes for the benefit of the international electronics design and design automation community.\u0026nbsp;In recognition of the importance of university research to the advancement of design automation and test, and to encourage young researchers to work in the field, EDAA annually honors four young researchers with an Outstanding Dissertation Award.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPeng will be honored with the award at this year\u2019s\u0026nbsp;\u003Ca href=\u0022https:\/\/www.date-conference.com\u0022\u003EDesign, Automation, and Test in Europe Conference\u003C\/a\u003E\u0026nbsp;on April 18, 2023 in Antwerp, Belgium.\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EXiaochen Peng has received the 2023 Outstanding Dissertation Award from the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.edaa.com\u0022\u003EEuropean Design and Automation Association\u003C\/a\u003E\u0026nbsp;(EDAA).\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The award-winning dissertation proposes an end-to-end benchmark framework to evaluate state-of-the-art compute-in-memory (CIM) accelerators."}],"uid":"36172","created_gmt":"2023-03-30 14:26:47","changed_gmt":"2023-03-30 14:31:47","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-03-30T00:00:00-04:00","iso_date":"2023-03-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670354":{"id":"670354","type":"image","title":"Recent ECE Graduate Xiaochen Peng.","body":"\u003Cp\u003ERecent ECE Graduate Xiaochen Peng.\u003C\/p\u003E\r\n","created":"1680186617","gmt_created":"2023-03-30 14:30:17","changed":"1680186617","gmt_changed":"2023-03-30 14:30:17","alt":"Recent ECE Graduate Xiaochen Peng.","file":{"fid":"253182","name":"Xiaochen Peng.jpg","image_path":"\/sites\/default\/files\/2023\/03\/30\/Xiaochen%20Peng.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/03\/30\/Xiaochen%20Peng.jpg","mime":"image\/jpeg","size":79218,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/03\/30\/Xiaochen%20Peng.jpg?itok=eQVbS4TN"}}},"media_ids":["670354"],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"130","name":"Alumni"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"},{"id":"135","name":"Research"}],"keywords":[{"id":"192468","name":"Xiaochen Peng"},{"id":"178857","name":"Shimeng Yu"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"192469","name":"compute-in-memory accelerators"},{"id":"192470","name":"NeuroSim"},{"id":"192471","name":"European Design and Automation Association"},{"id":"192472","name":"Outstanding Dissertation Award"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EDan Watson\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666702":{"#nid":"666702","#data":{"type":"news","title":"Driving Change: Georgia Tech Experts Lead in Electrification of America\u2019s Roads","body":[{"value":"\u003Cp\u003EIdling at a crossroads no longer, the automotive industry is embracing electrification like never before. With more electric vehicles purchased in 2022 than any year prior, consumers are beginning to follow their lead. Yet, while opportunity abounds, new challenges will require an innovative approach to ensure a sustainable and accessible electric future for all.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWith historic investments from major players in the EV space, including\u0026nbsp;Rivian, Kia, and Hyundai, the state of Georgia is uniquely positioned to serve as a leader in this effort. As the state\u0027s leading research institute, Georgia Tech is on the cutting edge of the movement.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe transportation sector is the largest greenhouse gas emitter in the U.S. at nearly 30%, with\u0026nbsp;passenger vehicles accounting for around 80% of the sector\u0027s total output1\u0026nbsp;as of 2019. Electric vehicles are widely regarded as a budding solution to reduce emissions, but even as both demand and production continue to increase, EVs currently account for around 1% of the cars on America\u0027s roadways.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFrom the supply chain to the infrastructure needed to support alternative-fuel vehicles alongside consumer hesitancy, achieving the goals set by both the public and private sectors \u2014 including the Biden Administration\u0027s target of EVs making up at least 50% of new car sales by 2030 \u2014 will not be easy. Through research and development, policy, and collaboration, Tech experts are working toward finding solutions that will serve as catalysts during this transitionary period for the environment and the way Americans drive.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/news.gatech.edu\/features\/2023\/03\/driving-change\u0022\u003ECheck out the full story.\u0026nbsp;\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":"","format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EElectric vehicles are becoming increasingly popular, and with economic and environmental impacts colliding, Georgia Tech experts are leading the way in the development of next-generation solutions. \u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Electric vehicles are becoming increasingly popular, and with economic and environmental impacts colliding, Georgia Tech experts are leading the way in the development of next-generation solutions.  "}],"uid":"36418","created_gmt":"2023-03-21 13:55:33","changed_gmt":"2023-03-27 16:45:27","author":"sgagliano3","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-03-21T00:00:00-04:00","iso_date":"2023-03-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"670207":{"id":"670207","type":"image","title":"Driving Change: Georgia Tech experts are leading the way in EV innovation ","body":"\u003Cp\u003ETop: Rich Simmons, Marilyn Brown, Gleb Yushin\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBottom: Valerie Thomas, Hailong Chen, Tim Lieuwen\u003C\/p\u003E\r\n","created":"1679407608","gmt_created":"2023-03-21 14:06:48","changed":"1679408518","gmt_changed":"2023-03-21 14:21:58","alt":"Driving Change: Georgia Tech experts are leading the way in EV innovation ","file":{"fid":"253035","name":"DRIVINGCHANGE-tn_0.jpg","image_path":"\/sites\/default\/files\/2023\/03\/21\/DRIVINGCHANGE-tn_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/2023\/03\/21\/DRIVINGCHANGE-tn_0.jpg","mime":"image\/jpeg","size":105099,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/2023\/03\/21\/DRIVINGCHANGE-tn_0.jpg?itok=MEsl7m_T"}}},"media_ids":["670207"],"related_links":[{"url":"https:\/\/news.gatech.edu\/features\/2023\/03\/driving-change","title":"Full Feature"}],"groups":[{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"130","name":"Alumni"},{"id":"131","name":"Economic Development and Policy"},{"id":"139","name":"Business"},{"id":"142","name":"City Planning, Transportation, and Urban Growth"},{"id":"145","name":"Engineering"},{"id":"154","name":"Environment"},{"id":"135","name":"Research"}],"keywords":[{"id":"186870","name":"go-imat"},{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"},{"id":"186858","name":"go-sei"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"},{"id":"39511","name":"Public Service, Leadership, and Policy"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"},{"id":"71871","name":"Campus and Community"},{"id":"71911","name":"Earth and Environment"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ESteven Gagliano - Communications Officer\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EInstitute Communications\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Steven.gagliano@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666016":{"#nid":"666016","#data":{"type":"news","title":"New Quantum State Discovered in Trimer-Honeycomb Material","body":[{"value":"\u003Cp\u003EA group of physicists, including two Georgia Tech researchers, have discovered a new quantum state. The study, \u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41586-022-05262-3\u0022\u003Epublished in the journal \u003Cem\u003ENature\u003C\/em\u003E\u003C\/a\u003E, uncovered novel looping currents flowing along the edges of octahedral cells in a crystal of \u003Cem\u003EMn\u003C\/em\u003E\u003Cem\u003E3\u003C\/em\u003E\u003Cem\u003ESi\u003C\/em\u003E\u003Cem\u003E2\u003C\/em\u003E\u003Cem\u003ETe\u003C\/em\u003E\u003Cem\u003E6\u003C\/em\u003E\u003Cem\u003E, \u003C\/em\u003Ewhich allowed for a billion percent increase in the material\u0026rsquo;s electric conductivity. The findings could lead to a new paradigm for quantum devices and superconductors.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team consisted of Georgia Tech theoretical physicists Sami Hakani and Itamar Kimchi, along with experimental physicists Feng Ye (Oak Ridge National Lab), Lance DeLong (University of Kentucky), and, from the University of Colorado at Boulder: Gang Cao, Yifei Ni, Yu Zhang, and Hengdi Zhao. The group was drawn to the research after their \u003Ca href=\u0022https:\/\/journals.aps.org\/prb\/abstract\/10.1103\/PhysRevB.103.L161105\u0022\u003Eprevious study investigated the same material.\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Because this material did not fit any preexisting models, we had to develop new ideas to understand it,\u0026rdquo; said Georgia Tech graduate student Hakani, who played a key role in developing the theory. \u0026ldquo;These new ideas will help us study related materials that could be used for next-generation magnetic field devices.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EAn Exception to the Rule\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe physicists first became interested in the \u003Cem\u003EMn\u003C\/em\u003E\u003Cem\u003E3\u003C\/em\u003E\u003Cem\u003ESi\u003C\/em\u003E\u003Cem\u003E2\u003C\/em\u003E\u003Cem\u003ETe\u003C\/em\u003E\u003Cem\u003E6\u003C\/em\u003E\u003Cem\u003E \u003C\/em\u003Ematerial due to its unique electrical properties \u0026mdash; in particular, a property called \u003Cem\u003Ecolossal magnetoresistance\u003C\/em\u003E,\u003Cem\u003E \u003C\/em\u003Ean extreme enhancement in a material\u0026rsquo;s electrical conductivity when a magnetic field is applied.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn most materials, applying a magnetic field does not change that material\u0026rsquo;s conductivity. However, in another class of materials, applying a magnetic field does change conductivity; this is called \u003Cem\u003Emagnetoresistance\u003C\/em\u003E,\u003Cem\u003E \u003C\/em\u003Eand it can scale to \u0026ldquo;giant\u0026rdquo; and \u0026ldquo;colossal\u0026rdquo; changes in conductivity. In instances of \u003Cem\u003Ecolossal magnetoresistance\u003C\/em\u003E,\u003Cem\u003E \u003C\/em\u003Ea material can change from behaving like an insulator (like Styrofoam) to being as conductive as a metal wire.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis change is not altogether unusual. Materials displaying \u003Cem\u003Egiant magnetoresistance\u003C\/em\u003E are not uncommon and are often used in computers; however, in all of these known materials, the material does not change its behavior in a way that significantly depends on the direction of the applied magnetic field. This new trimer-honeycomb material does.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The phenomenon defies all existing theoretical models and experimental precedents,\u0026rdquo; said Kimchi, theoretical physicist and assistant professor in the School of Physics at Georgia Tech. And that\u0026rsquo;s where he and Hakani come in.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EUncovering Looping Currents\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;As theoretical physicists, we develop new kinds of mathematical models,\u0026rdquo; said Kimchi. \u0026ldquo;When it\u0026rsquo;s qualitatively difficult to understand how anything can make sense in experimental data \u0026mdash; when there\u0026rsquo;s something qualitatively shocking \u0026mdash; we try to come up with that basic picture.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EUsing the information uncovered by the experimental physicists, Hakani and Kimchi set out to understand why the extreme change in conductivity only happens when the magnetic field is applied perpendicularly to the honeycomb-like surface of the material.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Our idea smelled promising, but, unfortunately, we quickly realized that currents between the magnetic manganese ions would be forbidden by symmetry, which was discouraging,\u0026rdquo; said Kimchi. \u0026ldquo;However, Sami then did the symmetry analysis for the octahedrally arranged tellurium ions, and, for them, currents were symmetry-allowed and could work out!\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EViewed from above, the material looks like a series of two-dimensional honeycombs. From the side, however, the material is composed of \u0026ldquo;sheets,\u0026rdquo; like a layer cake. Within each \u0026ldquo;sheet\u0026rdquo; of honeycomb, electrons can move in circular paths around each octahedral cell. These looping, circular-moving currents within the material are responsible for the material\u0026rsquo;s unique behavior.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOn its own, without a magnetic field present, electrons move both counterclockwise and clockwise around the honeycomb \u0026ldquo;cells,\u0026rdquo; like cars going in both directions around a roundabout. Just like in uncontrolled traffic, \u0026ldquo;traffic jams\u0026rdquo; make it difficult for electrons to move quickly throughout the material. Without a way to streamline traffic, the material acts more like an insulator.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHowever, if a magnetic field is applied perpendicular to the honeycomb-like surface, a \u0026ldquo;flow of traffic\u0026rdquo; is established, and electrons navigate the loops more quickly. The material then acts as a conductor, showing a seven-magnitude increase in conductivity \u0026mdash; equivalent to an increase of a billion percent.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EA New Paradigm\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe transformation from insulator to conductor can also be driven by applying electrical currents in the material, but in that case, it doesn\u0026rsquo;t happen instantaneously. It can take seconds or even minutes for the material to switch from insulator to conductor.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team believes that this tunability and slower type of switching, coupled with the material\u0026rsquo;s sensitivity to currents, could lead to new applications and discoveries in current-controlled quantum devices, a field of devices that range from sensors to computers to secure communication.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe next step? Working to better understand the newly discovered quantum state, and finding other materials where the quantum state might exist.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Looking forward, we hope to understand not only what makes this material special, but also which microscopic ingredients are needed for related materials to become useful quantum technologies in our future,\u0026rdquo; said Hakani.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":[{"value":"The transformation allows for a billion percent increase in the material\u2019s conductivity and could lead to a new paradigm for quantum devices."}],"field_summary":[{"value":"\u003Cp\u003EA group of physicists, including two Georgia Tech researchers, have discovered a new quantum state in trimer-honeycomb material. The transformation allows for a billion percent increase in the material\u0026rsquo;s conductivity and could lead to a new paradigm for quantum devices. The discovery builds on a previous study that first investigated the material, also known as Mn3Si2Te6, for its unusual and unique qualities.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The transformation allows for a billion percent increase in the material\u2019s conductivity and could lead to a new paradigm for quantum devices."}],"uid":"34528","created_gmt":"2023-02-21 20:00:16","changed_gmt":"2023-03-09 16:04:04","author":"jhunt7","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-23T00:00:00-05:00","iso_date":"2023-02-23T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"666018":{"id":"666018","type":"image","title":"Loop Currents, Electrons, and Honeycombs","body":null,"created":"1677010062","gmt_created":"2023-02-21 20:07:42","changed":"1677010062","gmt_changed":"2023-02-21 20:07:42","alt":"","file":{"fid":"251858","name":"2022 11 Itamar Kimchi - paper - chiral quantum currents - credit - University of Colorado Boulder.jpg","image_path":"\/sites\/default\/files\/images\/2022%2011%20Itamar%20Kimchi%20-%20paper%20-%20chiral%20quantum%20currents%20-%20credit%20-%20University%20of%20Colorado%20Boulder.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/2022%2011%20Itamar%20Kimchi%20-%20paper%20-%20chiral%20quantum%20currents%20-%20credit%20-%20University%20of%20Colorado%20Boulder.jpg","mime":"image\/jpeg","size":587566,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/2022%2011%20Itamar%20Kimchi%20-%20paper%20-%20chiral%20quantum%20currents%20-%20credit%20-%20University%20of%20Colorado%20Boulder.jpg?itok=GdhOYmpp"}},"666017":{"id":"666017","type":"image","title":"School of Physics researchers Sami Hakani (left) and Itamar Kimchi.","body":null,"created":"1677009865","gmt_created":"2023-02-21 20:04:25","changed":"1677009865","gmt_changed":"2023-02-21 20:04:25","alt":"","file":{"fid":"251857","name":"2023 Itamar and Sami 1.jpg","image_path":"\/sites\/default\/files\/images\/2023%20Itamar%20and%20Sami%201.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/2023%20Itamar%20and%20Sami%201.jpg","mime":"image\/jpeg","size":631891,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/2023%20Itamar%20and%20Sami%201.jpg?itok=wygfPxvH"}}},"media_ids":["666018","666017"],"groups":[{"id":"1278","name":"College of Sciences"},{"id":"1188","name":"Research Horizons"},{"id":"126011","name":"School of Physics"}],"categories":[],"keywords":[{"id":"192251","name":"cos-quantum"},{"id":"166937","name":"School of Physics"},{"id":"1744","name":"quantum"},{"id":"25101","name":"quantum physics"},{"id":"168235","name":"quantum materials"},{"id":"192196","name":"loop currents"},{"id":"192197","name":"trimer honeycomb"},{"id":"191498","name":"Itamar Kimchi"},{"id":"191499","name":"Sami Hakani"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBy: Selena Langner\u003Cbr \/\u003E\r\nWriter, College of Sciences at Georgia Tech\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMedia Contact: \u003Ca href=\u0022mailto:jess@cos.gatech.edu\u0022\u003EJess Hunt-Ralston\u003C\/a\u003E\u003Cbr \/\u003E\r\nDirector of Communications, College of Sciences at Georgia Tech\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["jess@cos.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"666374":{"#nid":"666374","#data":{"type":"news","title":"Chen Recognized as Outstanding Student in Integrated Circuit Design","body":[{"value":"\u003Cp\u003EQiwei Chen has been selected to receive the 2023 Outstanding Student Designer Award by\u0026nbsp;Analog Devices, Inc. (ADI).\u0026nbsp;Chen is pursuing his master\u0026rsquo;s degree in the\u0026nbsp;Georgia Tech School of Electrical and Computer Engineering (ECE), where he is advised by Motorola Solutions Foundation Professor\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/gabriel-rincon-mora\u0022\u003EGabriel Rinc\u0026oacute;n-Mora\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince 1997, the prestigious ADI Outstanding Student Designer Award has recognized excellence in system-level integrated circuit architectures or in analog, mixed-signal, or digital integrated circuit design. The award is presented annually at the International Solid-State Circuits Conference (ISSCC), the flagship conference of the Institute of Electrical and Electronics Engineers\u0026nbsp;(IEEE) Solid-State Circuits Society, which was held this year in San Francisco from February 19-23.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EChen is a member of the Georgia Tech Analog, Power, and Energy Integrated Circuits research team. His current research focuses on high voltage conversion switched-inductor power supplies and the theorization of their maximum achievable conversion ratio.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the summer of 2022 Chen interned at ADI, an American multinational semiconductor company headquartered in Wilmington, Mass., working on the topological design and evaluation of a linear-boost hybrid converter. He will join ADI full-time as an analog design engineer after graduating from Tech this spring.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The award has recognizes excellence in system-level integrated circuit architectures or in analog, mixed-signal, or digital integrated circuit design. "}],"uid":"36172","created_gmt":"2023-03-02 19:54:12","changed_gmt":"2023-03-02 21:07:53","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-03-02T00:00:00-05:00","iso_date":"2023-03-02T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"666373":{"id":"666373","type":"image","title":"Qiwei Chen is pursuing his master\u2019s degree in the Georgia Tech School of Electrical and Computer Engineering","body":null,"created":"1677786698","gmt_created":"2023-03-02 19:51:38","changed":"1677786698","gmt_changed":"2023-03-02 19:51:38","alt":"Qiwei Chen is pursuing his master\u2019s degree in the Georgia Tech School of Electrical and Computer Engineering.","file":{"fid":"251964","name":"DSC02185_50-crop-1-01.jpeg","image_path":"\/sites\/default\/files\/images\/DSC02185_50-crop-1-01.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/DSC02185_50-crop-1-01.jpeg","mime":"image\/jpeg","size":1456633,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/DSC02185_50-crop-1-01.jpeg?itok=ngsgLQrB"}}},"media_ids":["666373"],"related_links":[{"url":"https:\/\/www.isscc.org","title":"International Solid-State Circuits Conference (ISSCC)"},{"url":"https:\/\/www.analog.com\/en\/index.html","title":"Analog Devices, Inc."}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[],"keywords":[{"id":"192260","name":"Qiwei Chen"},{"id":"192261","name":"Outstanding Student Designer Award"},{"id":"186831","name":"Analog Devices"},{"id":"6096","name":"Inc."},{"id":"192262","name":"ADI"},{"id":"192263","name":"Georgia Tech School of Electrical and Computer Engineering (ECE)"},{"id":"406","name":"Gabriel Rincon-Mora"},{"id":"183937","name":"International Solid-State Circuits Conference"},{"id":"192264","name":"ISSCC"},{"id":"192265","name":"Solid-State Circuits Society"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663561":{"#nid":"663561","#data":{"type":"news","title":"Going Back to Basics Yields a Printable, Transparent Plastic That\u2019s Highly Conductive","body":[{"value":"\u003Cp\u003EIt was a simple idea \u0026mdash; maybe even too simple to work.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EResearch scientist James Ponder and a team of Georgia Tech chemists and engineers thought they could design a transparent polymer film that would conduct electricity as effectively as other commonly used materials, while also being flexible and easy to use at an industrial scale.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey\u0026rsquo;d do it by simply removing the nonconductive material from their conductive element. Sounds logical, right?\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe resulting process could yield new kinds of flexible, transparent electronic devices \u0026mdash;\u0026nbsp;things like wearable biosensors, organic photovoltaic cells, and virtual or augmented reality displays and glasses.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We had this initial idea that we have a conductive element that we\u0026#39;re covering with a nonconductive material, so what if we just get rid of that,\u0026rdquo; said Ponder, who earned a Ph.D. in chemistry at Georgia Tech and returned as a research scientist in mechanical engineering. \u0026ldquo;It\u0026#39;s a simple idea, and there were so many points where it could have failed for different reasons. But it does work, and it works better than we expected.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2022\/12\/going-back-basics-yields-printable-transparent-plastic-thats-highly-conductive\u0022\u003E\u003Cstrong\u003ERead more about the team\u0026#39;s flexible, highly conductive polymer on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EChemists and engineers collaborate on process that washes away nonconductive side chains from a robust polymer backbone to create a powerful conductive plastic.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Chemists and engineers collaborate on process that washes away nonconductive side chains from a robust polymer backbone to create a powerful conductive plastic."}],"uid":"27446","created_gmt":"2022-12-01 14:52:51","changed_gmt":"2023-03-02 19:45:08","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-01T00:00:00-05:00","iso_date":"2022-12-01T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663560":{"id":"663560","type":"image","title":"Conductive transparent polymer","body":null,"created":"1669906068","gmt_created":"2022-12-01 14:47:48","changed":"1669906068","gmt_changed":"2022-12-01 14:47:48","alt":"A strip of transparent conductive polymer held in a square black holder with an oval window in the middle. (Photo Courtesy: James Ponder)","file":{"fid":"251171","name":"PEDOT(OH)-doped-by-James-Ponder-t.jpg","image_path":"\/sites\/default\/files\/images\/PEDOT%28OH%29-doped-by-James-Ponder-t.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/PEDOT%28OH%29-doped-by-James-Ponder-t.jpg","mime":"image\/jpeg","size":357065,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/PEDOT%28OH%29-doped-by-James-Ponder-t.jpg?itok=Vdti-MQ0"}}},"media_ids":["663560"],"groups":[{"id":"1237","name":"College of Engineering"},{"id":"1278","name":"College of Sciences"},{"id":"1188","name":"Research Horizons"},{"id":"85951","name":"School of Chemistry and Biochemistry"},{"id":"1238","name":"School of Materials Science and Engineering"},{"id":"108731","name":"School of Mechanical Engineering"},{"id":"1214","name":"News Room"},{"id":"1316","name":"Green Buzz"}],"categories":[],"keywords":[{"id":"192251","name":"cos-quantum"},{"id":"175838","name":"conducting polymer"},{"id":"7297","name":"conductive"},{"id":"191699","name":"transparent conductors"},{"id":"191700","name":"PEDOT"},{"id":"191701","name":"James Ponder"},{"id":"4993","name":"john reynolds"},{"id":"167894","name":"shannon yee"},{"id":"166928","name":"School of Chemistry and Biochemistry"},{"id":"190256","name":"G.W. Woodruff School of Mechanical Engineering"},{"id":"167535","name":"School of Materials Science and Engineering"},{"id":"187915","name":"go-researchnews"},{"id":"186870","name":"go-imat"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003Cbr \/\u003E\r\nCollege of Engineering\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663752":{"#nid":"663752","#data":{"type":"news","title":"Faculty Honored as National Academy of Inventors Fellows","body":[{"value":"\u003Cp\u003EThree faculty from Georgia Tech have been chosen as 2022 \u003Ca href=\u0022https:\/\/academyofinventors.org\/fellows\/\u0022\u003ENational Academy of Inventors (NAI) Fellows\u003C\/a\u003E, the highest professional distinction for academic inventors.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe new class of fellows includes \u003Ca href=\u0022https:\/\/chemistry.gatech.edu\/people\/adegboyega-yomi-oyelere\u0022\u003E\u003Cstrong\u003EAdegboyega \u0026quot;Yomi\u0026quot; Oyelere\u003C\/strong\u003E\u003C\/a\u003E of the College of Sciences, along with \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/madhavan-swaminathan\u0022\u003E\u003Cstrong\u003EMadhavan Swaminathan\u003C\/strong\u003E\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/zhong-lin-wang\u0022\u003E\u003Cstrong\u003EZhong Lin Wang\u003C\/strong\u003E\u003C\/a\u003E of the College of Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey are among approximately \u003Ca href=\u0022https:\/\/academyofinventors.org\/wp-content\/uploads\/2022\/11\/11.14.22-Fellows-List-2022.pdf\u0022\u003E150 honorees\u003C\/a\u003E from research universities and governmental and non-profit institutions around the world. They were chosen by the NAI for demonstrating \u0026ldquo;a highly prolific spirit of innovation in creating or facilitating outstanding inventions that have made a tangible impact on the quality of life, economic development, and welfare of society.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EOyelere\u003C\/strong\u003E is a professor in the \u003Ca href=\u0022https:\/\/chemistry.gatech.edu\/\u0022\u003ESchool of Chemistry \u0026amp; Biochemistry\u003C\/a\u003E. His research spans bioorganic chemistry, biochemistry, and drug design with interrelated work across RNA-small molecule interaction, targeted histone deacetylase (HDAC) inhibition, and design and synthesis of novel bioconjugates for molecular delivery applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOyelere\u0026#39;s lab has worked to \u003Ca href=\u0022https:\/\/rh.gatech.edu\/news\/342081\/treating-cancer-researchers-develop-and-improve-techniques-attacking-cancer\u0022\u003Edevelop a therapeutic strategy for cancer treatment\u003C\/a\u003E to inhibit enzymes called histone deacetylases, which play an important role in the regulation of gene expression. He has also worked on the design of histone deacetylase inhibitors that can be taken up by the hormones expressed on the surface of hormone-positive breast cancer cells to stop the cells from dividing. In 2018, he received Georgia Tech\u0026rsquo;s \u003Ca href=\u0022https:\/\/cos.gatech.edu\/news\/adegboyega-yomi-oyelere-2018-outstanding-undergraduate-mentor-senior-faculty-award\u0022\u003EOutstanding Undergraduate Mentor Senior Faculty Award\u003C\/a\u003E.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ESwaminathan\u003C\/strong\u003E is the John Pippin Chair in Microsystems Packaging \u0026amp; Electromagnetics in the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E and has a joint appointment in the \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003ESchool of Materials Science and Engineering (MSE)\u003C\/a\u003E. He directs the \u003Ca href=\u0022https:\/\/sites.gatech.edu\/ien-prc\/\u0022\u003E3D Systems Packaging Research Center\u003C\/a\u003E at Georgia Tech. He is an internationally recognized researcher in electronics packaging, an area that is expected to fuel the semiconductor industry over the next decade.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESwaminathan holds 31 patents and is the founder and co-founder of two start-up companies (E-System Design and Jacket Micro Devices).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWang \u003C\/strong\u003Eis the Regents\u0026rsquo; Professor and Hightower Chair Emeritus in MSE. His discovery and breakthroughs in developing nanogenerators established the principle and technological roadmap for harvesting mechanical energy from environment and biological systems for powering mobile sensors.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWang\u0026rsquo;s work also p\u0026shy;ioneered the field of self-powered sensors, and he coined piezotronics and piezo-phototronics\u003Cstrong\u003E \u003C\/strong\u003Efor the third-generation semiconductors\u003Cem\u003E. \u003C\/em\u003EWang holds 70 U.S. and foreign patents.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech now has 16 NAI Fellows. The new cohort will be inducted at the NAI Fellows Induction Ceremony in July.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThree faculty from Georgia Tech have been chosen as 2022 National Academy of Inventors (NAI) Fellows, the highest professional distinction for academic inventors:\u0026nbsp; Adegboyega \u0026quot;Yomi\u0026quot; Oyelere of the College of Sciences, along with Madhavan Swaminathan and Zhong Lin Wang of the College of Engineering.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Three faculty from Georgia Tech have been chosen as 2022 National Academy of Inventors (NAI) Fellows, the highest professional distinction for academic inventors. "}],"uid":"34528","created_gmt":"2022-12-08 21:03:01","changed_gmt":"2023-03-02 19:42:14","author":"jhunt7","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-08T00:00:00-05:00","iso_date":"2022-12-08T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663756":{"id":"663756","type":"image","title":"From left: Adegboyega \u0022Yomi\u0022 Oyelere, Madhavan Swaminathan, Zhong Lin Wang.","body":null,"created":"1670533797","gmt_created":"2022-12-08 21:09:57","changed":"1670534136","gmt_changed":"2022-12-08 21:15:36","alt":"","file":{"fid":"251243","name":"cropped NAI.jpg","image_path":"\/sites\/default\/files\/images\/cropped%20NAI.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/cropped%20NAI.jpg","mime":"image\/jpeg","size":477391,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/cropped%20NAI.jpg?itok=_O7KX5xl"}}},"media_ids":["663756"],"related_links":[{"url":"https:\/\/coe.gatech.edu\/news\/2022\/12\/duo-honored-national-academy-inventors-fellows","title":"CoE Newsroom: Swaminathan, Wang Honored as National Academy of Inventors Fellows"}],"groups":[{"id":"1278","name":"College of Sciences"},{"id":"1188","name":"Research Horizons"},{"id":"85951","name":"School of Chemistry and Biochemistry"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"}],"keywords":[{"id":"192249","name":"cos-community"},{"id":"166928","name":"School of Chemistry and Biochemistry"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"167535","name":"School of Materials Science and Engineering"},{"id":"186870","name":"go-imat"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"},{"id":"39541","name":"Systems"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:maderer@gatech.edu\u0022\u003EJason Maderer\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022mailto:jess@cos.gatech.edu\u0022\u003EJess Hunt-Ralston\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["jess@cos.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664032":{"#nid":"664032","#data":{"type":"news","title":"At the Edge of Graphene-Based Electronics","body":[{"value":"\u003Cp\u003EA pressing quest in the field of nanoelectronics is the search for a material that could replace silicon. Graphene has seemed promising for decades. But its potential faltered along the way, due to damaging processing methods and the lack of a new electronics paradigm to embrace it. With silicon nearly maxed out in its ability to accommodate faster computing, the next big nanoelectronics platform is needed now more than ever.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/physics.gatech.edu\/user\/walter-de-heer\u0022\u003EWalter de Heer\u003C\/a\u003E, Regents\u0026rsquo; Professor in the \u003Ca href=\u0022https:\/\/physics.gatech.edu\/\u0022\u003ESchool of Physics\u003C\/a\u003E at the Georgia Institute of Technology, has taken a critical step forward in making the case for a successor to silicon. De Heer and his collaborators developed a new nanoelectronics platform based on graphene \u0026mdash; a single sheet of carbon atoms. The technology is compatible with conventional microelectronics manufacturing, a necessity for any viable alternative to silicon. In the course of their research, \u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41467-022-34369-4\u0022\u003Epublished in \u003Cem\u003ENature Communications\u003C\/em\u003E\u003C\/a\u003E, the team may have also discovered a new quasiparticle. Their discovery could lead to manufacturing smaller, faster, more efficient, and more sustainable computer chips, and has potential implications for quantum and high-performance computing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Graphene\u0026rsquo;s power lies in its flat, two-dimensional structure that is held together by the strongest chemical bonds known,\u0026rdquo; de Heer said. \u0026ldquo;It was clear from the beginning that graphene can be miniaturized to a far greater extent than silicon \u0026mdash; enabling much smaller devices, while operating at higher speeds and producing much less heat. This means that, in principle, more devices can be packed on a single chip of graphene than with silicon.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn 2001, de Heer proposed an alternative form of electronics based on epitaxial graphene, or epigraphene \u0026mdash; a layer of graphene that was found to spontaneously form on top of silicon carbide crystal, a semiconductor used in high power electronics. At the time, the researchers found that electric currents flow without resistance along epigraphene\u0026rsquo;s edges, and that graphene devices could be seamlessly interconnected without metal wires. This combination allows for a form of electronics that relies on the unique light-like properties of graphene electrons.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Quantum interference has been observed in carbon nanotubes at low temperatures, and we expect to see similar effects in epigraphene ribbons and networks,\u0026rdquo; de Heer said. \u0026ldquo;This important feature of graphene is not possible with silicon.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EBuilding the Platform \u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo create the new nanoelectronics platform, the researchers created a modified form of epigraphene on a silicon carbide crystal substrate. In collaboration with researchers at the Tianjin International Center for Nanoparticles and Nanosystems at the University of Tianjin, China, they produced unique silicon carbide chips from electronics-grade silicon carbide crystals. The graphene itself was grown at de Heer\u0026rsquo;s laboratory at Georgia Tech using patented furnaces.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers used electron beam lithography, a method commonly used in microelectronics, to carve the graphene nanostructures and weld their edges to the silicon carbide chips. This process mechanically stabilizes and seals the graphene\u0026rsquo;s edges, which would otherwise react with oxygen and other gases that might interfere with the motion of the charges along the edge.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFinally, to measure the electronic properties of their graphene platform, the team used a cryogenic apparatus that allows them to record its properties from a near-zero temperature to room temperature.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EObserving the Edge State\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe electric charges the team observed in the graphene edge state were similar to photons in an optical fiber that can travel over large distances without scattering. They found that the charges traveled for tens of thousands of nanometers along the edge before scattering. Graphene electrons in previous technologies could only travel about 10 nanometers before bumping into small imperfections and scattering in different directions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;What\u0026#39;s special about the electric charges in the edges is that they stay on the edge and keep on going at the same speed, even if the edges are not perfectly straight,\u0026quot; said Claire Berger, physics professor at Georgia Tech and director of research at the French National Center for Scientific Research in Grenoble, France.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn metals, electric currents are carried by\u0026nbsp;negatively charged electrons. But contrary to the researchers\u0026rsquo; expectations, their measurements suggested that the edge currents were not carried by electrons or by holes (a term for positive quasiparticles indicating the absence of an electron). Rather, the currents were carried by a highly unusual quasiparticle that has no charge and no energy, and yet moves without resistance. The components of the hybrid quasiparticle were observed to travel on opposite sides of the graphene\u0026rsquo;s edges, despite being a single object.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe unique properties indicate that the quasiparticle might be one that physicists have been hoping to exploit for decades \u0026mdash; the elusive Majorana fermion predicted by Italian theoretical physicist Ettore Majorana in 1937.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Developing electronics using this new quasiparticle in seamlessly interconnected graphene networks is game changing,\u0026rdquo;\u0026nbsp;de Heer said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIt will likely be another five to 10 years before we have the first graphene-based electronics, according to de Heer. But thanks to the team\u0026rsquo;s new epitaxial graphene platform, technology is closer than ever to crowning graphene as a successor to silicon.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECitation\u003C\/strong\u003E: Prudkovskiy, V.S., Hu, Y., Zhang, K.\u0026nbsp;\u003Cem\u003Eet al.\u003C\/em\u003E\u0026nbsp;An epitaxial graphene platform for zero-energy edge state nanoelectronics.\u0026nbsp;\u003Cem\u003ENat Commun\u003C\/em\u003E\u0026nbsp;\u003Cstrong\u003E13\u003C\/strong\u003E, 7814 (2022).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EDOI\u003C\/strong\u003E: 10.1038\/s41467-022-34369-4\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWriter\u003C\/strong\u003E: Catherine Barzler\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EPhotography\u003C\/strong\u003E: Jess Hunt-Ralston\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe\u0026nbsp;Georgia Institute of Technology,\u0026nbsp;or\u0026nbsp;Georgia Tech,\u0026nbsp;is one of the top public research universities in the U.S., developing leaders who advance technology and improve the human condition. The Institute offers\u202fbusiness, computing, design, engineering, liberal arts,\u202fand\u202fsciences\u202fdegrees. Its more than 46,000 students, representing 50 states and more than 150 countries, study at the main campus in Atlanta, at campuses in France and China, and through distance and online learning. As a leading technological university, Georgia Tech is an engine of economic development for Georgia, the Southeast, and the nation, conducting more than $1 billion in research annually for government, industry, and society.\u0026nbsp;\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ERegents\u0026rsquo; Professor Walter de Heer has taken a critical step in the case for a successor to silicon, working with collaborators to develop a new nanoelectronics platform based on graphene \u0026mdash; a single sheet of carbon atoms. The technology is compatible with conventional microelectronics manufacturing, and the new research, published in \u003Cem\u003ENature Communications\u003C\/em\u003E, shows the team may have also discovered a new quasiparticle.\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The researchers developed a new nanoelectronics platform based on graphene - a single sheet of carbon atoms."}],"uid":"36123","created_gmt":"2022-12-21 17:37:13","changed_gmt":"2023-03-02 19:37:40","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-21T00:00:00-05:00","iso_date":"2022-12-21T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"664027":{"id":"664027","type":"image","title":"Graphene chip on fingertip","body":null,"created":"1671641241","gmt_created":"2022-12-21 16:47:21","changed":"1671641848","gmt_changed":"2022-12-21 16:57:28","alt":"A tiny graphene device\u00a0on a silicon carbide substrate chip. The device rests on a person\u0027s fingertip. Credit: Jess Hunt-Ralston, Georgia Tech\u00a0","file":{"fid":"251365","name":"Claire holds chip eedit.jpg","image_path":"\/sites\/default\/files\/images\/Claire%20holds%20chip%20eedit.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Claire%20holds%20chip%20eedit.jpg","mime":"image\/jpeg","size":785389,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Claire%20holds%20chip%20eedit.jpg?itok=TVWtbAn0"}},"664029":{"id":"664029","type":"image","title":"Graphene Walt de Heer and Claire Berger","body":null,"created":"1671642222","gmt_created":"2022-12-21 17:03:42","changed":"1671642222","gmt_changed":"2022-12-21 17:03:42","alt":"Walter de Heer and Claire Berger, physics professors, holding an atomic model of graphene (black atoms)\u00a0on crystalline silicon carbide (yellow atoms) in the Epitaxial Graphene Lab at Georgia Tech. Credit: Jess Hunt-Ralston, Georgia Tech","file":{"fid":"251366","name":"edit Walt and Claire with model of how chip material is made.jpg","image_path":"\/sites\/default\/files\/images\/edit%20Walt%20and%20Claire%20with%20model%20of%20how%20chip%20material%20is%20made.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/edit%20Walt%20and%20Claire%20with%20model%20of%20how%20chip%20material%20is%20made.jpg","mime":"image\/jpeg","size":1125991,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/edit%20Walt%20and%20Claire%20with%20model%20of%20how%20chip%20material%20is%20made.jpg?itok=Iblp8r3V"}},"664030":{"id":"664030","type":"image","title":"Graphene induction furnace","body":null,"created":"1671642528","gmt_created":"2022-12-21 17:08:48","changed":"1671642528","gmt_changed":"2022-12-21 17:08:48","alt":"De Heer\u0027s\u00a0patented induction furnace\u00a0used to produce\u00a0graphene on silicon carbide. Credit: Jess Hunt-Ralston, Georgia Tech","file":{"fid":"251367","name":"EEDITThe team superheats pic - wider crop.jpg","image_path":"\/sites\/default\/files\/images\/EEDITThe%20team%20superheats%20pic%20-%20wider%20crop.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/EEDITThe%20team%20superheats%20pic%20-%20wider%20crop.jpg","mime":"image\/jpeg","size":721937,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/EEDITThe%20team%20superheats%20pic%20-%20wider%20crop.jpg?itok=wB3_9PbE"}},"664031":{"id":"664031","type":"image","title":"Graphene artwork ","body":null,"created":"1671644035","gmt_created":"2022-12-21 17:33:55","changed":"1671644035","gmt_changed":"2022-12-21 17:33:55","alt":"Art which depicts\u00a0the graphene network (black atoms) on top of silicon carbide (yellow and white atoms). The gold pads represent electrostatic gates, and the blue and red\u00a0balls represent\u00a0electrons and holes, respectively. Credit: Noel Dudeck, Georgia Tech","file":{"fid":"251368","name":"graphene graphic.png","image_path":"\/sites\/default\/files\/images\/graphene%20graphic.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/graphene%20graphic.png","mime":"image\/png","size":816616,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/graphene%20graphic.png?itok=j6fN6upm"}}},"media_ids":["664027","664029","664030","664031"],"groups":[{"id":"1188","name":"Research Horizons"},{"id":"1278","name":"College of Sciences"},{"id":"126011","name":"School of Physics"}],"categories":[],"keywords":[{"id":"192251","name":"cos-quantum"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ECatherine Barzler, Senior Research Writer\/Editor\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPhotos and Media: \u003Ca href=\u0022mailto:jess@cos.gatech.edu\u0022\u003EJess Hunt-Ralston\u003C\/a\u003E, College of Sciences\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["catherine.barzler@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665652":{"#nid":"665652","#data":{"type":"news","title":"Research Reveals Thermal Instability of Solar Cells but Offers a Bright Path Forward","body":[{"value":"\u003Cp\u003EA new type of solar technology has seemed promising in recent years. Halide perovskite solar cells are both high performing and low cost for producing electrical energy \u0026ndash; two necessary ingredients for any successful solar technology of the future. But new solar cell materials should also match the stability of silicon-based solar cells, which boast more than 25 years of reliability.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn newly published research, a team led by \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/people\/juan-pablo-correa-baena\u0022\u003EJuan-Pablo Correa-Baena\u003C\/a\u003E, assistant professor in the \u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003ESchool of Materials Sciences and Engineering\u003C\/a\u003E at Georgia Tech, shows that halide perovskite solar cells are less stable than previously thought. Their work reveals the thermal instability that happens within the cells\u0026rsquo; interface layers, but also offers a path forward towards reliability and efficiency for halide perovskite solar technology. Their research, \u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/adma.202204726?saml_referrer\u0022\u003Epublished as the cover story for the journal \u003Cem\u003EAdvanced Materials\u003C\/em\u003E\u003C\/a\u003E in December 2022, has immediate implications for both academics and industry professionals working with perovskites in photovoltaics, a field concerned with electric currents generated by sunlight.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELead halide perovskite solar cells promise superior conversion of sunlight into electrical power. Currently, the most common strategy for coaxing high conversion efficiency out of these cells is to treat their surfaces with large positively charged ions known as cations.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThese cations are too big to fit into the perovskite atomic-scale lattice, and, upon landing on the perovskite crystal, change the material\u0026rsquo;s structure at the interface where they are deposited. The resulting atomic-scale defects limit the efficacy of current extraction from the solar cell. Despite awareness of these structural changes, research on whether the cations are stable after deposition is limited, leaving a gap in understanding of a process that could impact the long-term viability of halide perovskite solar cells.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Our concern was that during long periods of solar cell operation the reconstruction of the interfaces would continue,\u0026rdquo; said Correa-Baena. \u0026ldquo;So, we sought to understand and demonstrate how this process happens over time.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo carry out the experiment, the team created a sample solar device using typical perovskite films. The device features eight independent solar cells, which enables the researchers to experiment and generate data based on each cell\u0026rsquo;s performance. They investigated how the cells would perform, both with and without the cation surface treatment, and studied the cation-modified interfaces of each cell before and after prolonged thermal stress using synchrotron-based X-ray characterization techniques.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFirst, the researchers exposed the pre-treated samples to 100 degrees Celsius for 40 minutes, and then measured their changes in chemical composition using X-ray photoelectron spectroscopy. They also used another type of X-ray technology to investigate precisely what type of crystal structures form on the film\u0026rsquo;s surface. Combining the information from the two tools, the researchers could visualize how the cations diffuse into the lattice and how the interface structure changes when exposed to heat.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ENext, to understand how the cation-induced structural changes impact solar cell performance, the researchers employed excitation correlation spectroscopy in collaboration with Carlos Silva, professor of physics and chemistry at Georgia Tech. \u0026nbsp;The technique exposes the solar cell samples to very fast pulses of light and detects the intensity of light emitted from the film after each pulse to understand how energy from light is lost. The measurements allow the researchers to understand what kinds of surface defects are detrimental to performance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFinally, the team correlated the changes in structure and optoelectronic properties with the differences in the solar cells\u0026rsquo; efficiencies. They also studied the changes induced by high temperatures in two of the most used cations and observed the differences in dynamics at their interfaces.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Our work revealed that there is concerning instability introduced by treatment with certain cations,\u0026rdquo; said Carlo Perini, a research scientist in Correa-Baena\u0026rsquo;s lab and the first author of the paper. \u0026ldquo;But the good news is that, with proper engineering of the interface layer, we will see enhanced stability of this technology in the future.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers learned that the surfaces of metal halide perovskite films treated with organic cations keep evolving in structure and composition under thermal stress. They saw that the resulting atomic-scale changes at the interface can cause a meaningful loss in power conversion efficiency in solar cells. In addition, they found that the speed of these changes depends on the type of cations used, suggesting that stable interfaces might be within reach with adequate engineering of the molecules.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We hope this work will compel researchers to test these interfaces at high temperatures and seek solutions to the problem of instability,\u0026rdquo; Correa-Baena said. \u0026ldquo;This work should point scientists in the right direction, to an area where they can focus in order to build more efficient and stable solar technologies.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECITATION: Perini, C. A. R.,\u0026nbsp;Rojas-Gatjens, E.,\u0026nbsp;Ravello, M.,\u0026nbsp;Castro-Mendez, A.,\u0026nbsp;Hidalgo, J.,\u0026nbsp;An, Y.,\u0026nbsp;Kim, S.,\u0026nbsp;Lai, B.,\u0026nbsp;Li, R.,\u0026nbsp;Silva-Acu\u0026ntilde;a, C.,\u0026nbsp;Correa-Baena, J.-P.,\u0026nbsp;Interface Reconstruction from Ruddlesden\u0026ndash;Popper Structures Impacts Stability in Lead Halide Perovskite Solar Cells.\u0026nbsp;\u003Cem\u003EAdv. Mater.\u003C\/em\u003E\u0026nbsp;2022,\u0026nbsp;34, 2204726.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDOI: https:\/\/doi.org\/10.1002\/adma.202204726\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ETheir work reveals what goes wrong within the cells\u0026rsquo; interface layers.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Their work reveals what goes wrong within the cells\u2019 interface layers."}],"uid":"36123","created_gmt":"2023-02-09 16:02:51","changed_gmt":"2023-02-14 02:55:37","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-09T00:00:00-05:00","iso_date":"2023-02-09T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665650":{"id":"665650","type":"image","title":"JP Perovskite","body":null,"created":"1675957824","gmt_created":"2023-02-09 15:50:24","changed":"1675957938","gmt_changed":"2023-02-09 15:52:18","alt":"A colorful graphic illustration on the cover of Advanced Materials","file":{"fid":"251741","name":"Screen Shot 2023-02-09 at 10.51.24 AM.png","image_path":"\/sites\/default\/files\/images\/Screen%20Shot%202023-02-09%20at%2010.51.24%20AM.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Screen%20Shot%202023-02-09%20at%2010.51.24%20AM.png","mime":"image\/png","size":5059344,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Screen%20Shot%202023-02-09%20at%2010.51.24%20AM.png?itok=elYQKQ-k"}}},"media_ids":["665650"],"groups":[{"id":"1188","name":"Research Horizons"},{"id":"1316","name":"Green Buzz"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"479","name":"Green Buzz"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71911","name":"Earth and Environment"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ECatherine Barzler, Senior Research Writer\/Editor\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["catherine.barzler@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665671":{"#nid":"665671","#data":{"type":"news","title":" Mark Prausnitz Elected to National Academy of Engineering","body":[{"value":"\u003Cp\u003EProfessor and entrepreneur \u003Ca href=\u0022https:\/\/www.chbe.gatech.edu\/people\/mark-r-prausnitz\u0022\u003EMark Prausnitz\u003C\/a\u003E has been \u003Ca href=\u0022https:\/\/www.nae.edu\/289843\/NAENewClass2023\u0022\u003Eelected to the National Academy of Engineering (NAE)\u003C\/a\u003E, joining a membership that includes the nation\u0026rsquo;s most distinguished engineers. He is Georgia Tech\u0026rsquo;s 46th NAE member.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPrausnitz is the J. Erskine Love Jr. Chair of the \u003Ca href=\u0022https:\/\/chbe.gatech.edu\/\u0022\u003ESchool of Chemical and Biomolecular Engineering\u003C\/a\u003E (ChBE) and director of Georgia Tech\u0026rsquo;s Center for Drug Design, Development and Delivery. He\u0026rsquo;s also the only Georgia Tech faculty member recognized as both a Regents\u0026rsquo; Professor and Regents\u0026rsquo; Entrepreneur, the highest academic titles awarded by the University System of Georgia Board of Regents. He joins 105 new NAE members in the 2023 class along with 18 new international members.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2023\/02\/mark-prausnitz-elected-national-academy-engineering\u0022\u003E\u003Cstrong\u003ERead the full story on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe honor is one of the highest professional distinctions for engineers\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"The honor is one of the highest professional distinctions for engineers"}],"uid":"27446","created_gmt":"2023-02-09 19:18:48","changed_gmt":"2023-02-13 20:07:32","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-07T00:00:00-05:00","iso_date":"2023-02-07T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665669":{"id":"665669","type":"image","title":"Mark Prausnitz - NAE","body":null,"created":"1675970095","gmt_created":"2023-02-09 19:14:55","changed":"1675970095","gmt_changed":"2023-02-09 19:14:55","alt":"Headshot of Mark Prausnitz with the National Academy of Engineering logo","file":{"fid":"251748","name":"prausnitz-nae-homepage.jpg","image_path":"\/sites\/default\/files\/images\/prausnitz-nae-homepage.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/prausnitz-nae-homepage.jpg","mime":"image\/jpeg","size":626753,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/prausnitz-nae-homepage.jpg?itok=qWST6SHs"}}},"media_ids":["665669"],"groups":[{"id":"1237","name":"College of Engineering"},{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"},{"id":"1188","name":"Research Horizons"},{"id":"1240","name":"School of Chemical and Biomolecular Engineering"}],"categories":[],"keywords":[{"id":"495","name":"Mark Prausnitz"},{"id":"167445","name":"School of Chemical and Biomolecular Engineering"},{"id":"187915","name":"go-researchnews"},{"id":"187423","name":"go-bio"},{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:maderer@gatech.edu\u0022\u003EJason Maderer\u003C\/a\u003E\u003Cbr \/\u003E\r\nCollege of Engineering\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["maderer@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665589":{"#nid":"665589","#data":{"type":"news","title":"Gallery of Odd and New Technology Holds Future of Computing","body":[{"value":"\u003Cp\u003EEver since the 1970s, the number of transistors on computer microchips typically doubled about every two years. What was once a predictable trend, called Moore\u0026rsquo;s Law, is now increasingly untenable with current technologies, which would inhibit further development of today\u0026rsquo;s computers and smart devices.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech\u0026rsquo;s Center for Research into Novel Computing Hierarchies (CRNCH) is taking this dilemma head-on, in part, through a computer version of Frankenstein\u0026rsquo;s lab. Dubbed the Rogues Gallery, CRNCH showcased this collection of unique hardware at the 2023 CRNCH Summit to illustrate how it is ushering the next generation of computing.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFounded in 2018, the Rogues Gallery is a collection of unique computer hardware acquired from vendors, research labs, and startups. While these components could unlock the future of computing, they are either so new or rare that few individuals know how to effectively program them, and the full capabilities remain unknown.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo better understand these components, the Rogues Gallery allows students, faculty, and industry collaborators to access its hardware collection to experiment within a managed data center. The Rogues Gallery also operates as CRNCH\u0026rsquo;s testbed that researchers across the globe can use through remote access.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo share this interesting and helpful resource, CNRCH leadership organized the 2023 summit to bring together computing stakeholders and raise awareness of novel architectures, like the Rogues Gallery. The summit also presents an opportunity to share the Rogues Gallery\u0026rsquo;s current state and future direction.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The Rogues Gallery has seen substantial uptake within Georgia Tech and with researchers from across the U.S. and around the world,\u0026rdquo; said Jeff Young, a research scientist at Georgia Tech and director of the Rogues Gallery. \u0026ldquo;We just finished our first big deployment of hardware through an NSF program, and we\u0026#39;re planning on future acquisitions, training, and community engagement to help drive growth and evolution.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOne example of the hardware deployment Young refers to is a crown jewel within the Rogues Gallery: the Lucata Pathfinder system. Georgia Tech became the host of the nation\u0026rsquo;s largest, publicly available Lucata Pathfinder system when it arrived in July 2021.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe system is a prototype computing platform designed to run deep analytics on large graphs. Here, Rogues Gallery researchers are working to explore the limits of the Lucata Pathfinder using large data sets with applications related to community detection, graph-based genome assembly, and graph neural networks.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAccording to Lucata, Pathfinder uses migrating thread technology to deliver 16 times the performance at one-tenth the power of comparable systems. The system can accelerate analytics on graph databases of over 1 trillion nodes with no data pruning required.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAlong with the Lucata Pathfinder, another highlight from CRNCH Summit 2023 was a poster presentation session where some students showcased research from field programable gate arrays (FPGAs) provided through the Rogues Gallery. FPGAs are essentially microchips designed to be configured by the consumer.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBy developing software on FPGAs, students apply lessons learned in the classroom while also helping find solutions to post-Moore computing. In fact, students shared their FPGA research at CRNCH Summit 2023 during a poster session.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince 2021, over 200 Georgia Tech students have used a remotely accessible, 64-node FPGA cluster housed in the Rogues Gallery for processor design and artificial intelligence applications. Due to the low cost and high customizability of FPGAs, this technology is a promising starting point for the next generation of computer engineers.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The most exciting thing about the Rogues Gallery is its flexibility to respond to requests from faculty at Georgia Tech and researchers,\u0026rdquo; Young said. \u0026ldquo;When we started the testbed, we never anticipated deploying a full remote FPGA cluster for classes, but the COVID-19 pandemic meant that we had to evolve the way we taught specific classes.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOptimizing Rogues Gallery hardware for remote access is one of the keys to making it a source for meaningful computer research across the globe, not just Georgia Tech. Today, the Rogues Gallery supports over 100 users spanning the U.S. and Europe.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs the need for new post-Moore resources, research, and education grows around the world, the Rogues Gallery aims to keep pace using its variety of unique and well-supported hardware, software, tools, and training.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We see the Rogues Gallery as a democratizing agent for exploring novel architectures,\u0026rdquo; Young said. \u0026ldquo;We are providing an avenue for new related codesign developments in software, tools, and applications that will help us to create the \u0026lsquo;next\u0026rsquo; computing paradigms that will be important in the next 10-20 years.\u0026rdquo;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"CRNCH showcased this collection of unique hardware, called the Rogues Gallery, at the 2023 CRNCH Summit to illustrate how it is ushering the next generation of computing. "}],"uid":"36319","created_gmt":"2023-02-08 13:15:15","changed_gmt":"2023-02-08 13:15:15","author":"Bryant Wine","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-03T00:00:00-05:00","iso_date":"2023-02-03T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665588":{"id":"665588","type":"image","title":"Lucata Pathfinder","body":null,"created":"1675861858","gmt_created":"2023-02-08 13:10:58","changed":"1675861858","gmt_changed":"2023-02-08 13:10:58","alt":"","file":{"fid":"251714","name":"Lucata Pathfinder.jpg","image_path":"\/sites\/default\/files\/images\/Lucata%20Pathfinder.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Lucata%20Pathfinder.jpg","mime":"image\/jpeg","size":272677,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Lucata%20Pathfinder.jpg?itok=WFElareL"}}},"media_ids":["665588"],"groups":[{"id":"50877","name":"School of Computational Science and Engineering"}],"categories":[{"id":"42921","name":"Exhibitions"},{"id":"133","name":"Special Events and Guest Speakers"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"}],"keywords":[{"id":"166983","name":"School of Computational Science and Engineering"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39541","name":"Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EBryant Wine, Communications Officer\u003Cbr \/\u003E\r\nbryant.wine@cc.gatech.edu\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"665420":{"#nid":"665420","#data":{"type":"news","title":"Inan Appointed 2023 Distinguished Lecturer by the Engineering in Medicine \u0026 Biology Society","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/omer-t-inan\u0022\u003EOmer Inan\u003C\/a\u003E\u0026nbsp;has been named a 2023 Distinguished\u0026nbsp;Lecturer\u0026nbsp;of the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.embs.org\/\u0022\u003EIEEE Engineering in Medicine \u0026amp; Biology Society\u003C\/a\u003E\u0026nbsp;(EMBS). Inan is Professor and the Linda J. and Mark C. Smith Chair in Bioscience and Bioengineering at the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E\u0026nbsp;(ECE), and holds an adjunct faculty appointment in the\u0026nbsp;\u003Ca href=\u0022https:\/\/bme.gatech.edu\/\u0022\u003EWallace H. Coulter Department of Biomedical Engineering\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThrough the EMBS Distinguished Lecturers Program, top-quality speakers can connect directly with\u0026nbsp;EMBS Chapters, Student Branch Chapters and Student Clubs Programs.\u0026nbsp;Each year, the program\u0026rsquo;s committee chooses leading experts from around the world\u0026nbsp;as Distinguished Lecturers to keep members informed about the latest\u0026nbsp;trends and developments in biomedical engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EInan is the director of the Inan Research Lab, where he and his research team work on non-invasive physiological sensing and modulation for four different application areas: unobtrusive cardiovascular monitoring, wearable biomechanics, non-invasive neuromodulation of stress, and pediatric bioengineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe is a member of the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.google.com\/search?client=safari\u0026amp;rls=en\u0026amp;q=Parker+H.+Petit+Institute+for+Bioengineering+and+Bioscience\u0026amp;ie=UTF-8\u0026amp;oe=UTF-8\u0022\u003EParker H. Petit Institute for Bioengineering and Bioscience\u003C\/a\u003E\u0026nbsp;and a program faculty member for Tech\u0026rsquo;\u0026nbsp;\u003Ca href=\u0022https:\/\/bioengineering.gatech.edu\/\u0022\u003EInterdisciplinary Bioengineering Graduate Program\u003C\/a\u003E. Some of Inan\u0026rsquo;s most recent honors include an Academy Award for Technical Achievement from The Academy of Motion Picture Arts and Sciences (The Oscars), the Georgia Tech Outstanding Doctoral Thesis Advisor Award, and the Office of Naval Research Young Investigator Award. Inan is an elected fellow of the American Institute for Medical and Biological Engineering (AIMBE).\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Inan is the director of the Inan Research Lab, where he and his research team work on non-invasive physiological sensing and modulation. "}],"uid":"36172","created_gmt":"2023-02-02 19:58:14","changed_gmt":"2023-02-03 15:29:56","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-02-02T00:00:00-05:00","iso_date":"2023-02-02T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"648814":{"id":"648814","type":"image","title":"Omer Inan","body":null,"created":"1626380119","gmt_created":"2021-07-15 20:15:19","changed":"1626380119","gmt_changed":"2021-07-15 20:15:19","alt":"photograph of Omer Inan","file":{"fid":"246292","name":"Omer Inan-cropped.jpg","image_path":"\/sites\/default\/files\/images\/Omer%20Inan-cropped.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Omer%20Inan-cropped.jpg","mime":"image\/jpeg","size":913001,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Omer%20Inan-cropped.jpg?itok=i8junRXu"}}},"media_ids":["648814"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/omer-t-inan","title":"Omer Inan"},{"url":"https:\/\/www.embs.org","title":"IEEE Engineering in Medicine \u0026 Biology Society (EMBS)"},{"url":"https:\/\/bme.gatech.edu\/bme\/","title":"Wallace H. Coulter Department of Biomedical Engineering"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"138","name":"Biotechnology, Health, Bioengineering, Genetics"}],"keywords":[{"id":"125271","name":"Omer Inan"},{"id":"192053","name":"IEEE Engineering in Medicine \u0026 Biology Society (EMBS)"},{"id":"192054","name":"Linda J. and Mark C. Smith Chair in Bioscience and Bioengineering"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"3264","name":"Wallace H. Coulter Department of Biomedical Engineering"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665175":{"#nid":"665175","#data":{"type":"news","title":"Lim, Milor, Qureshi Elevated to IEEE Fellows","body":[{"value":"\u003Cp\u003EThree Georgia Tech faculty members have been elevated to fellow status in the\u0026nbsp;Institute of Electrical and Electronics Engineers\u0026nbsp;(IEEE), the world\u0026rsquo;s largest technical professional organization for the advancement of technology. They are \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim\u0022\u003ESung Kyu Lim\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/linda-s-milor\u0022\u003ELinda Milor\u003C\/a\u003E, professors in the School of Electrical and Computer Engineering (ECE), and \u003Ca href=\u0022https:\/\/www.cc.gatech.edu\/people\/moinuddin-qureshi\u0022\u003EMoinuddin K. Qureshi\u003C\/a\u003E, professor in the \u003Ca href=\u0022https:\/\/scs.gatech.edu\u0022\u003ESchool of Computer Science\u003C\/a\u003E with an adjunct appointment in ECE.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIEEE Fellow is a distinction reserved for select IEEE members whose extraordinary accomplishments in any of the IEEE fields of interest are deemed fitting of this prestigious grade elevation. Fellow is the highest grade of membership and conferred by the IEEE Board of Directors. It is recognized by the technical community as a prestigious honor and an important career achievement.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;It\u0026#39;s a very special honor to be named an IEEE Fellow because it means your peers\u0026nbsp;have recognized your contribution\u0026#39;s significance and impact,\u0026rdquo; said Professor and School Chair Arijit Raychowdhury, who became an IEEE Fellow in 2022. \u0026ldquo;It\u0026rsquo;s an honor to work alongside Sung Kyu, Linda, and Moinuddin. They have demonstrated to the rest of the world that our faculty and students are involved in cutting-edge, innovative research.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAbout this year\u0026rsquo;s Georgia Tech IEEE Fellows:\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003ESung Kyu Lim\u003C\/strong\u003E\u0026nbsp;\u003Cbr \/\u003E\r\n\tLim, who currently holds the Motorola Solutions Foundation Professor title in ECE, is being recognized \u0026ldquo;for contributions to electronic design automation and tradeoff for 3-dimensional integrated circuits (ICs).\u0026rdquo; He is the first Georgia Tech ECE researcher to be recruited and serve as a DARPA program manager while teaching at Georgia Tech, currently\u0026nbsp;managing programs related to 3D ICs at the Microsystems Technology Office.\u003Cbr \/\u003E\r\n\t\u003Cbr \/\u003E\r\n\tLim\u0026rsquo;s research focus is on architecture, design, and electronic design automation (EDA) for 2.5D and 3D integrated circuits. He has published more than 400 papers on the topic and received the 2022 Best Paper Award from the IEEE Transactions on Electromagnetic Compatibility and the IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems.\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003ELinda Milor\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\tMilor is being recognized \u0026ldquo;for contributions to testing of analog circuits and bridging the design-manufacturing gap for integrated circuits (ICs).\u0026rdquo; Her research on yield and test of semiconductor ICs has been published in over 200 publications, nine papers have over 50 citations in google scholar, and eight papers have received \u0026ldquo;Best Paper\u0026rdquo; awards, including a best paper for the IEEE Transactions on Semiconductor Manufacturing.\u003Cbr \/\u003E\r\n\t\u003Cbr \/\u003E\r\n\tPrior to her career in academia, Milor served as vice president of process technology and product engineering at eSilicon Corporation and as a product engineering manager at AMD. She is a frequent speaker at conferences, including keynote addresses and presentations on women in STEM in industry and academia.\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Cstrong\u003EMoinuddin K. Qureshi\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\tQureshi is being recognized \u0026ldquo;for contributions to scalable memory systems.\u0026rdquo; His research interests include computer architecture, hardware security, and quantum computing. Prior to joining Georgia Tech, he was a research scientist at the IBM T. J. Watson Research Center where he developed the caching algorithms for Power 7 Systems.\u003Cbr \/\u003E\r\n\t\u003Cbr \/\u003E\r\n\tHe is a Hall-of-Fame member of the three major computer architecture conferences: the International Symposium on Computer Architecture (ISCA), the International Symposium on Microarchitecture (MICRO), and the International Symposium on High-Performance Computer Architecture (HPCA). He recently received the Maurice Wilkes Award for contributions to high-performance memory systems from the Association for Computing Machinery Special Interest Group on Computer Architecture (SIGARCH).\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003EThe total number of fellows selected by IEEE in any one year cannot exceed one-tenth of one percent of the total voting IEEE membership. A complete list of the Class of 2023 fellows is available on the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ieee.org\/content\/dam\/ieee-org\/ieee\/web\/org\/about\/fellows\/2023-newly-elevated-fellows.pdf\u0022\u003EIEEE site\u003C\/a\u003E.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EIEEE Fellow is a distinction reserved for select IEEE members whose extraordinary accomplishments.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"IEEE Fellow is a distinction reserved for select IEEE members whose extraordinary accomplishments. "}],"uid":"36172","created_gmt":"2023-01-27 01:29:18","changed_gmt":"2023-01-30 17:41:54","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-26T00:00:00-05:00","iso_date":"2023-01-26T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665174":{"id":"665174","type":"image","title":"IEEE Fellows 2023","body":null,"created":"1674782361","gmt_created":"2023-01-27 01:19:21","changed":"1674782361","gmt_changed":"2023-01-27 01:19:21","alt":"(L-R)\u00a0Sung Kyu Lim,\u00a0Linda Milor, and\u00a0\u00a0Moinuddin K. Qureshi.\u00a0Georgia Tech\u0027s three\u00a0faculty members elevated to fellow status in the\u00a0Institute of Electrical and Electronics Engineers\u00a0(IEEE) for 2023.","file":{"fid":"251586","name":"IEEE Fellows 2023_graphic.jpg","image_path":"\/sites\/default\/files\/images\/IEEE%20Fellows%202023_graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/IEEE%20Fellows%202023_graphic.jpg","mime":"image\/jpeg","size":540994,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/IEEE%20Fellows%202023_graphic.jpg?itok=Ht1v8DHw"}}},"media_ids":["665174"],"related_links":[{"url":"https:\/\/www.ieee.org\/membership\/fellows\/index.html","title":"IEEE Fellow Program"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim","title":"Sung Kyu Lim"},{"url":"https:\/\/moin.cc.gatech.edu","title":"Moinuddin K. Qureshi"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/linda-s-milor","title":"Linda Milor"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"129","name":"Institute and Campus"}],"keywords":[{"id":"191932","name":"IEEE Fellow Program"},{"id":"171018","name":"Sung Kyu Lim"},{"id":"191933","name":"Moinuddin K. Qureshi"},{"id":"146061","name":"Linda Milor"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665250":{"#nid":"665250","#data":{"type":"news","title":"ECE Professors Named 2023 SPIE Fellows for Optics and Photonics Research Contributions","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/wenshan-cai\u0022\u003EWenshan Cai\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/stanislav-emelianov\u0022\u003EStanislav Emelianov\u003C\/a\u003E\u0026nbsp;have been elected SPIE, the international society for optics and photonics, Fellows for 2023. Cai is a professor in the Georgia Tech School of Electrical and Computer Engineering (ECE), with a joint appointment in\u0026nbsp;\u003Ca href=\u0022https:\/\/www.mse.gatech.edu\/\u0022\u003EMaterials Science and Engineering\u003C\/a\u003E. Emelianov is the Joseph M. Pettit Chair in ECE and a Georgia Research Alliance Eminent Scholar.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEach year,\u0026nbsp;\u003Ca href=\u0022https:\/\/spie.org\/\u0022\u003ESPIE\u003C\/a\u003E\u0026nbsp;promotes members as new Fellows of the Society. This year\u0026rsquo;s cohort of 83 new SPIE Fellows have made significant scientific and technical contributions in the multidisciplinary fields of optics, photonics, and imaging. They are honored for their technical achievement and for their service to the general optics community and to SPIE in particular.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECai has been a member of the ECE faculty since 2012. His research is in the area of nanophotonic materials and devices, in which he has made a major impact on the evolving field of plasmonics and metamaterials. He has published more than 50 papers in peer-reviewed journals, and the total citations of his recent papers have reached approximately 20,000 within the past 10 years. Cai is the author of \u0026ldquo;Optical Metamaterials: Fundamentals and Applications,\u0026rdquo; which is used as a textbook or a major reference at many universities around the world.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEmelianov is the director of the\u0026nbsp;\u003Ca href=\u0022https:\/\/ultrasound.gatech.edu\/\u0022\u003EUltrasound Imaging and Therapeutics Research Laboratory\u003C\/a\u003E\u0026nbsp;at Georgia Tech which focuses on the translation of diagnostic imaging, therapeutic instrumentation, and nanobiotechnology for clinical applications. He holds an appointment at the Emory University School of Medicine, where he is affiliated with Winship Cancer Institute, Department of Radiology, and other clinical units. In the course of his work, Emelianov has pioneered several ultrasound-based imaging techniques, including shear wave elasticity imaging and molecular photoacoustic imaging.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EThe complete list of the 2023 SPIE Fellows is available\u0026nbsp;\u003Ca href=\u0022https:\/\/spie.org\/membership\/member-recognition\/spie-fellows\u0022\u003Eonline.\u003C\/a\u003E\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cdiv\u003E\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\u003C\/div\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"They are honored for their technical achievement and for their service to the general optics community."}],"uid":"36172","created_gmt":"2023-01-30 17:18:37","changed_gmt":"2023-01-30 17:18:37","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-30T00:00:00-05:00","iso_date":"2023-01-30T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665248":{"id":"665248","type":"image","title":"ECE Professors Wenshan Cai\u00a0and\u00a0Stanislav\u00a0Emelianov.","body":null,"created":"1675098978","gmt_created":"2023-01-30 17:16:18","changed":"1675098978","gmt_changed":"2023-01-30 17:16:18","alt":"ECE Professors Wenshan Cai\u00a0and\u00a0Stanislav\u00a0Emelianov.","file":{"fid":"251607","name":"Cai Stass_SPIE Graphic.jpg","image_path":"\/sites\/default\/files\/images\/Cai%20Stass_SPIE%20Graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Cai%20Stass_SPIE%20Graphic.jpg","mime":"image\/jpeg","size":288183,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Cai%20Stass_SPIE%20Graphic.jpg?itok=dg3le5Nr"}}},"media_ids":["665248"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/wenshan-cai","title":"Wenshan Cai"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/wenshan-cai","title":"Stanislav Emelianov"},{"url":"https:\/\/spie.org\/","title":"SPIE, the international society for optics and photonics"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"91661","name":"Wenshan Cai"},{"id":"171473","name":"Stanislav Emelianov"},{"id":"167910","name":"SPIE"},{"id":"191328","name":"the international society for optics and photonics"},{"id":"4497","name":"Materials Science and Engineering"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665139":{"#nid":"665139","#data":{"type":"news","title":"Muthukumar Lands NSF Career Award for Foundational Machine Learning Research ","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/vidya-k-muthukumar\u0022\u003EVidya Muthukumar\u003C\/a\u003E has been named as a recipient of the National Science Foundation (NSF) Faculty Early Career Development Program (CAREER) award. Muthukumar is an assistant professor in the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\u0022\u003EGeorgia Tech School of Electrical and Computer Engineering\u003C\/a\u003E (ECE) with a joint appointment in the \u003Ca href=\u0022https:\/\/www.isye.gatech.edu\u0022\u003EH. Milton Stewart School of Industrial and Systems Engineering\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe NSF CAREER award is the most prestigious award in\u0026nbsp;\u0026ldquo;support of early-career faculty who have the potential to serve as academic role models in research and education and to lead advances in the mission of their department or organization.\u0026rdquo; Approximately 500 awards are given annually to universities and research institutions throughout the country. The NSF especially encourages women, underrepresented minorities, and persons with disabilities to apply.\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nMuthukumar\u0026rsquo;s NSF CAREER project,\u0026nbsp;\u003Ca href=\u0022https:\/\/www.nsf.gov\/awardsearch\/showAward?AWD_ID=2239151\u0026amp;HistoricalAwards=false\u0022\u003E\u0026quot;Overparameterization in modern machine learning: A panacea or a pitfall?,\u0026rdquo;\u003C\/a\u003E\u0026nbsp;aims to establish foundational principles \u0026mdash; through a diversity of mathematical techniques spanning signal processing, information theory, and online decision-making \u0026mdash; that explain the successful generalization of modern machine learning and its failure modes in order to develop efficient and principled solutions. In the absence of such a foundation, outstanding failure modes in deep neural networks remain unmitigated or unnecessarily costly to solve, and architecture selection is conducted in a wasteful trial-and-error manner that involves repeated train-and-test cycles. Muthukumar hopes that the outcomes of this project will eventually enable deep learning technology to reach its full potential in high-stakes and resource-limited applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditionally, the project will create and disseminate educational resources at the high school and undergraduate levels on elementary signal processing, machine learning, and data science that underlie and complement the described research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBefore joining Georgia Tech in January 2021, Muthukumar earned her Ph.D. degree in EECS at UC Berkeley and spent a semester at the Simons Institute for the Theory of Computing as a research fellow for the program\u0026nbsp;\u0026ldquo;Theory of Reinforcement Learning.\u0026rdquo; She is the recipient of an Amazon Research Award, Adobe Data Science Research Award, Simons-Berkeley Research Fellowship, IBM Science for Social Good Fellowship, and the UC Berkeley EECS Outstanding Course Development and Teaching Award. She currently serves on the senior program committee for the Annual Conference on Learning Theory and on the organizing committee for the Learning Theory Alliance mentorship organization.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The award is the most prestigious award in support of early-career faculty who have the potential to serve as academic role models."}],"uid":"36172","created_gmt":"2023-01-26 14:14:48","changed_gmt":"2023-01-30 16:15:54","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-26T00:00:00-05:00","iso_date":"2023-01-26T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"643086":{"id":"643086","type":"image","title":"Assistant Professor Vidya Muthukumar","body":null,"created":"1611085098","gmt_created":"2021-01-19 19:38:18","changed":"1611085098","gmt_changed":"2021-01-19 19:38:18","alt":"Vidya Muthukumar","file":{"fid":"244189","name":"Muthukumar-square.jpg","image_path":"\/sites\/default\/files\/images\/Muthukumar-square.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Muthukumar-square.jpg","mime":"image\/jpeg","size":98949,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Muthukumar-square.jpg?itok=j16K1KCe"}}},"media_ids":["643086"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/vidya-k-muthukumar","title":"Vidya Muthukumar"},{"url":"https:\/\/beta.nsf.gov\/funding\/opportunities\/faculty-early-career-development-program-career","title":"National Science Foundation Faculty Early Career Development Program (CAREER)"},{"url":"https:\/\/www.ece.gatech.edu","title":"School of Electrical and Computer Engineering"},{"url":"https:\/\/www.isye.gatech.edu","title":"H. Milton Stewart School of Industrial and Systems Engineering"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42901","name":"Community"},{"id":"42911","name":"Education"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"186736","name":"Vidya Muthukumar"},{"id":"191934","name":"National Science Foundation (NSF)"},{"id":"191935","name":"Faculty Early Career Development Program (CAREER)"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"1202","name":"H. Milton Stewart School of Industrial and Systems Engineering"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665094":{"#nid":"665094","#data":{"type":"news","title":"ECE Ph.D. Candidate Receives Top Electronic Packaging Award","body":[{"value":"\u003Cp\u003EPh.D. candidate Yiliang Guo has received the Best Student Paper Award at the IEEE Electrical Design of Advanced Packaging and Systems (EDAPS) symposium.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGuo is a graduate researcher in Georgia Tech\u0026rsquo;s 3D Systems Packaging Research Center (PRC), a leading academic center focused on advanced packaging and system integration leading to System on Package (SoP) technologies. He is advised by former ECE Professor Madhavan Swaminathan, currently at the Penn State Department of Electrical Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGuo\u0026rsquo;s research interests include machine learning (ML) and optimization, and their applications in microwave design and electronic packaging problems. His award-winning paper, \u0026ldquo;Training Set Optimization with Uncertainty Quantification for Machine Learning Models of Electromagnetic Structures,\u0026rdquo; proposes to use the uncertainty quantification method to reduce the size of training sets required by ML models.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe recently received the\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/663308\/guo-receives-top-paper-award-electronic-packaging-and-systems\u0022\u003EBest Student Paper Award\u003C\/a\u003E\u0026nbsp;on a different research project at the 2022 Electrical Performance of Electronic Packaging and Systems Conference (EPEPS 2022).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe EDAPS symposium has consistently served as a platform for dissemination of latest research in the areas of electrical design of chip, package and system. The symposium consists of technical paper presentation, poster sessions, industry exhibits, workshops, and tutorials. The conference took place virtually December 12-14.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Yiliang Guo has received the Best Student Paper Award at the IEEE Electrical Design of Advanced Packaging and Systems (EDAPS) symposium."}],"uid":"36172","created_gmt":"2023-01-25 16:47:35","changed_gmt":"2023-01-26 15:40:54","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-25T00:00:00-05:00","iso_date":"2023-01-25T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665093":{"id":"665093","type":"image","title":"ECE Ph.D. candidate Yiliang Guo","body":null,"created":"1674665033","gmt_created":"2023-01-25 16:43:53","changed":"1674665033","gmt_changed":"2023-01-25 16:43:53","alt":"ECE Ph.D. candidate Yiliang Guo","file":{"fid":"251566","name":"Yiliang_photo_resized.jpg","image_path":"\/sites\/default\/files\/images\/Yiliang_photo_resized.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Yiliang_photo_resized.jpg","mime":"image\/jpeg","size":1720807,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Yiliang_photo_resized.jpg?itok=xQAsYoL9"}}},"media_ids":["665093"],"related_links":[{"url":"https:\/\/edaps.org","title":"IEEE Electrical Design of Advanced Packaging and Systems (EDAPS)"},{"url":"https:\/\/sites.gatech.edu\/ien-prc\/","title":"3D Systems Packaging Research Center (PRC)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191662","name":"Yiliang Guo"},{"id":"191980","name":"IEEE Electrical Design of Advanced Packaging and Systems (EDAPS)"},{"id":"191981","name":"3D Systems Packaging Research Center (PRC)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"665028":{"#nid":"665028","#data":{"type":"news","title":"$2.3B Qcells Solar Power Investment Holds Major Potential for Georgia","body":[{"value":"\u003Cp\u003EThe state of Georgia is at the epicenter of what may be the largest investment in clean energy manufacturing in U.S. history, and Georgia Tech is poised to play a key role in an investment that is slated to create thousands of jobs and boost solar power infrastructure in our state and beyond.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EQcells, a solar power company, plans to build a $2.3 billion manufacturing complex just north of Atlanta in Cartersville to not only make state-of-the-art components for solar panels, but also to build complete panels used in a variety of settings, from houses to large-scale commercial and industrial solar arrays.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech is home to some of the world\u0026rsquo;s leading researchers and experts in photovoltaic materials and solar energy. Juan-Pablo Correa-Baena, assistant professor and Goizueta Junior Faculty Rotating Chair in the School of Materials Science and Engineering, and his research group have been blazing trails on the hunt for new materials that can be used in solar energy conversion.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The most important part of this investment in U.S. manufacturing is the fact that Qcells is investing in the development of ingot and wafer production,\u0026rdquo; Correa-Baena said. Currently, silicon needs to be processed to form solar cells used to harvest energy. Ingots are the first step in the manufacturing process of refining raw materials into wafers. The wafers become the base for completed solar panels.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOver the past decade, most ingot and wafer production has been happening outside of the U.S. \u0026ldquo;With this investment, we guarantee that we can have full control of the supply chain by manufacturing all aspects of the solar panels domestically,\u0026rdquo; said Correa-Baena. Ultimately, the goal is to make solar energy more affordable for American consumers and create high-paying jobs for Georgians.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;It is exciting to see that silicon manufacturing is restarting in the U.S. and that Georgia is at the forefront of it,\u0026rdquo; said Ajeet Rohatgi, Regents\u0026rsquo; Professor and John H. Weitnauer Jr. Chair in the School of Electrical and Computer Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ERohatgi is one of the world\u0026rsquo;s leading researchers in photovoltaics \u0026ndash;\u0026nbsp;the conversion of light into electricity using semiconducting materials like silicon. He is the founding director of the first university-based and Department of Energy-funded \u003Ca href=\u0022http:\/\/www.ece.gatech.edu\/research\/UCEP\u0022\u003ECenter of Excellence for Photovoltaics Research and Education\u003C\/a\u003E. The center\u0026rsquo;s work focuses on finding and improving the materials used to make solar cells while also improving their efficiency.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EQcells built its first plant near Dalton, Georgia, in 2019. By 2022, the facility had become the largest producer of solar panels in the western hemisphere. Rohatgi says representatives from Qcells have visited his research facilities on campus, and he and his team have visited the company\u0026rsquo;s Dalton facility as well.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;As demand for clean energy continues to grow nationally, we\u0026rsquo;re ready to put thousands of people to work creating fully American made and sustainable solar solutions, from raw material to finished panels,\u0026rdquo; said Justin Lee, CEO of Qcells. \u0026ldquo;We are committed to working with our customers as well as national and Georgia leaders to bring completely clean energy to millions of people across the country.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETim Lieuwen, executive director of the \u003Ca href=\u0022http:\/\/energy.gatech.edu\/\u0022\u003E\u003Cstrong\u003EStrategic Energy Institute\u003C\/strong\u003E\u003C\/a\u003E\u003Cstrong\u003E, \u003C\/strong\u003ERegents\u0026#39; Professor, and David S. Lewis Jr. Chair said, \u0026ldquo;Georgia Tech is a key leader in most of the core technologies associated with clean energy industries, has nationally distinctive researchers and facilities, and educates a lot of undergraduate and graduate students in these areas.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThat is why Tech has the potential to be a valuable partner in this project. \u0026ldquo;We are in a unique space where we can interface with Qcells to help them improve materials processing and explore new materials, but also aid in their manufacturing processes by introducing artificial intelligence to optimize processes and increase their productivity,\u0026rdquo; said Correa-Baena.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe announcement is not just significant for Georgia Tech, but for the state of Georgia as well. In Lieuwen\u0026rsquo;s view, Georgia is emerging as a center of clean energy manufacturing and technology, in no small part thanks to the Institute\u0026rsquo;s partnerships, research, and workforce development efforts. He says advancements in electric vehicles, batteries, and hydrogen power are all picking up steam in our state. \u0026ldquo;Having these types of companies in areas where Georgia Tech is focusing research and development efforts is good for the Institute and the state.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Qcells expansion is likely just the tip of the iceberg, as leading researchers from across campus identify projects like these where Tech ingenuity and innovation can make a difference.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I\u0026rsquo;m enthusiastic about this expansion of solar cell manufacturing in Georgia because it builds on other clean energy, electrification, and energy storage industries already existing or planned for our state,\u0026rdquo; said Julia Kubanek, professor and vice president for Interdisciplinary Research. \u0026ldquo;The Southeast is increasingly becoming known as a hub for cleantech innovation, and Georgia Tech is proud to be a key contributor to this ecosystem.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EProduction at the new Qcells solar plant is expected to start in 2024.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech experts are at the forefront of technology and research that could revamp clean energy infrastructure in our state.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech experts are at the forefront of technology and research that could revamp clean energy infrastructure in our state."}],"uid":"28058","created_gmt":"2023-01-23 22:24:29","changed_gmt":"2023-01-24 16:17:07","author":"Steven Norris","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-23T00:00:00-05:00","iso_date":"2023-01-23T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"665029":{"id":"665029","type":"image","title":"Qcells Expansion ","body":null,"created":"1674512767","gmt_created":"2023-01-23 22:26:07","changed":"1674512767","gmt_changed":"2023-01-23 22:26:07","alt":"","file":{"fid":"251548","name":"thumbnail_IMG_7264.jpg","image_path":"\/sites\/default\/files\/images\/thumbnail_IMG_7264.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/thumbnail_IMG_7264.jpg","mime":"image\/jpeg","size":218020,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/thumbnail_IMG_7264.jpg?itok=q3vKgENV"}}},"media_ids":["665029"],"groups":[{"id":"1214","name":"News Room"}],"categories":[],"keywords":[{"id":"342","name":"Georgia"},{"id":"109","name":"Georgia Tech"},{"id":"167364","name":"solar power"},{"id":"167183","name":"solar energy"},{"id":"191967","name":"qcells"},{"id":"191968","name":"renewabl energy"},{"id":"186870","name":"go-imat"},{"id":"186858","name":"go-sei"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"},{"id":"71911","name":"Earth and Environment"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ESteven Norris\u003Cbr \/\u003E\r\nsnorris@gatech.edu\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDirector, Media Relations and Social Media\u003Cbr \/\u003E\r\nGeorgia Institute of Technology\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["snorris@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664916":{"#nid":"664916","#data":{"type":"news","title":"Li Receives National Science Foundation Early Career Award","body":[{"value":"\u003Cp\u003EShaolan Li has been named as a recipient of the National Science Foundation (NSF) Faculty Early Career Development Program (CAREER) award. Li is an assistant professor in the Georgia Tech School of Electrical and Computer Engineering (ECE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe NSF CAREER award is the most prestigious award in \u0026ldquo;support of early-career faculty who have the potential to serve as academic role models in research and education and to lead advances in the mission of their department or organization.\u0026rdquo; Approximately 500 awards are given annually to universities and research institutions throughout the country. The NSF especially encourages women, underrepresented minorities, and persons with disabilities to apply.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELi\u0026rsquo;s NSF CAREER project, \u0026quot; Universal Design Automation Framework for Analog Integrated Systems,\u0026rdquo; aims to establish and validate a novel general-purpose analog integrated circuit (IC) design automation flow that overcomes existing productivity barriers. The research will lead to a game-changing tool that allows designers to turn their ideas into circuit structures for a wide range of analog systems in a LEGO-like plug-and-play manner, improves their design reliably with machine learning, and generates fabrication-ready mask layouts swiftly.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe project will not only bring improvement to analog IC productivity and accelerate new technology development, but will have a far-reaching impact on the competitiveness of the U.S. semiconductor industry through integrated education activities aimed to revolutionize IC technology education at both undergraduate and graduate levels, facilitating workforce revitalization.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELi joined ECE in 2019 where he leads the Georgia Tech\u0026nbsp;Analog\u0026nbsp;Mixed-signal\u0026nbsp;Microsystems and\u0026nbsp;Applications (GAMMA) group. Prior to joining Tech, he was a post-doctoral fellow in the Department of Electrical and Computer Engineering at the University of Texas\u0026nbsp;at Austin. He also held intern positions in Broadcom Ltd. and NXP.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe is the recipient of the NSF CAREER Award, IEEE Solid-State Circuit Society Predoctoral Achievement Award, HKUST Academic Achievement Medal, and the UT Austin Cockrell School of Engineering Fellowship. Additionally, Li serves on the Technical Program Committee of the IEEE Custom Integrated Circuits Conference (CICC), the ACM\/IEEE Design Automation Conference (DAC), and the editorial board of IET Electronics Letters.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The NSF CAREER award is the most prestigious award in support of early-career faculty. "}],"uid":"36172","created_gmt":"2023-01-19 21:35:42","changed_gmt":"2023-01-19 21:35:42","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-19T00:00:00-05:00","iso_date":"2023-01-19T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"664915":{"id":"664915","type":"image","title":"Shaolan Li National Science Foundation (NSF) Faculty Early Career Development Program (CAREER) Award","body":null,"created":"1674163934","gmt_created":"2023-01-19 21:32:14","changed":"1674163934","gmt_changed":"2023-01-19 21:32:14","alt":"Shaolan Li Receives\u00a0National Science Foundation (NSF) Faculty Early Career Development Program (CAREER) Award","file":{"fid":"251522","name":"SHAOLAN LI- NSF CAREER Award.jpg","image_path":"\/sites\/default\/files\/images\/SHAOLAN%20LI-%20NSF%20CAREER%20Award.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/SHAOLAN%20LI-%20NSF%20CAREER%20Award.jpg","mime":"image\/jpeg","size":384269,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/SHAOLAN%20LI-%20NSF%20CAREER%20Award.jpg?itok=bNJ8ySs1"}}},"media_ids":["664915"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/shaolan-li","title":"Shaolan Li"},{"url":"https:\/\/beta.nsf.gov\/funding\/opportunities\/faculty-early-career-development-program-career","title":"National Science Foundation Faculty Early Career Development Program (CAREER)"},{"url":"https:\/\/gamma.ece.gatech.edu","title":"Analog Mixed-signal Microsystems and Applications (GAMMA) Group"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"182039","name":"Shaolan Li"},{"id":"191934","name":"National Science Foundation (NSF)"},{"id":"191935","name":"Faculty Early Career Development Program (CAREER)"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"191936","name":"Analog Mixed-signal Microsystems and Applications"},{"id":"183799","name":"Gamma"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664712":{"#nid":"664712","#data":{"type":"news","title":"Wang Honored with Predoctoral Achievement Award by Solid-State Circuits Society","body":[{"value":"\u003Cp\u003ETzuhan\u0026nbsp;Wang\u0026nbsp;has been named a recipient of\u0026nbsp;the\u0026nbsp;2022-2023 IEEE Solid-State Circuits Society (SSCS) Predoctoral Achievement Award. Wang is a Ph.D. candidate in the\u0026nbsp;Georgia Tech School of Electrical and Computer Engineering (ECE) where he is advised by ECE Assistant Professor Shaolan Li.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Predoctoral Achievement Award is the\u0026nbsp;highest honor IEEE SSCS bestows upon student members. It is awarded to promising graduate students annually based on academic record, quality of publications, and a graduate study program well matched to the charter of SSCS.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWang is being recognized for his Ph.D. research on \u0026ldquo;Extremely efficient analog to digital converter (ADC).\u0026rdquo; The work proposes a robust noise-shaping SAR ADC that boosts\u0026nbsp;the\u0026nbsp;noise suppression for resolution improvement without power and design complexity overhead. The research was presented at\u0026nbsp;the 2022 International Solid State Circuits Conference (ISSCC) as a demo with a low-power, highly efficient ECG readout application.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs a member of the Georgia Tech Analog Mixed-signal Microsystems and Applications (GAMMA) Lab directed by Li, Wang conducts impactful research on innovative design techniques to address\u0026nbsp;the\u0026nbsp;fundamental challenges in analog integrated circuit design.\u0026nbsp;He received\u0026nbsp;his B.S. and M.S. degrees in engineering science from National Taiwan University, located in Taipei, Taiwan. He\u0026nbsp;received\u0026nbsp;his second M.S. degree in electrical engineering from Georgia Tech.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis current research interests include digitally assisted noise shaping techniques and mixed-signal circuit design, focusing on addressing various challenges and issues associated with high-speed ADC design. Wang\u0026nbsp;is a reviewer for IEEE Journal on Solid-State Circuits (JSSC), IEEE Transactions on Circuits and Systems, and IET Electronics Letters. He is also a Student Member of\u0026nbsp;the\u0026nbsp;IEEE Society and a recipient of\u0026nbsp;the\u0026nbsp;IEEE\u0026nbsp;SSCS\u0026nbsp;Student Travel Grant Award (2021-2022).\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The Predoctoral Achievement Award is the highest honor IEEE SSCS bestows upon student members."}],"uid":"36172","created_gmt":"2023-01-12 22:20:10","changed_gmt":"2023-01-12 22:20:10","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-12T00:00:00-05:00","iso_date":"2023-01-12T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"664711":{"id":"664711","type":"image","title":"ECE Ph.D. candidate\u00a0Tzuhan\u00a0Wang","body":null,"created":"1673561829","gmt_created":"2023-01-12 22:17:09","changed":"1673561829","gmt_changed":"2023-01-12 22:17:09","alt":"ECE Ph.D. candidate\u00a0Tzuhan\u00a0Wang","file":{"fid":"251480","name":"TzuhanWang_graphic.jpg","image_path":"\/sites\/default\/files\/images\/TzuhanWang_graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/TzuhanWang_graphic.jpg","mime":"image\/jpeg","size":376762,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/TzuhanWang_graphic.jpg?itok=JCsW3KxR"}}},"media_ids":["664711"],"related_links":[{"url":"https:\/\/sscs.ieee.org\/membership\/awards\/predoctoral-achievement-award","title":"IEEE Solid-State Circuits Society Predoctoral Achievement Award"},{"url":"https:\/\/gamma.ece.gatech.edu","title":"Analog Mixed-signal Microsystems and Applications (GAMMA) Lab"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"8862","name":"Student Research"},{"id":"144","name":"Energy"}],"keywords":[{"id":"191900","name":"Tzuhan Wang"},{"id":"171546","name":"IEEE Solid-State Circuits Society"},{"id":"191901","name":"Predoctoral Achievement Award"},{"id":"182039","name":"Shaolan Li"},{"id":"191902","name":"Analog Mixed-signal Microsystems and Applications (GAMMA) Lab"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"664392":{"#nid":"664392","#data":{"type":"news","title":"Georgia Tech Receives $65 Million Grant from Semiconductor Research Corporation for JUMP 2.0 Centers","body":[{"value":"\u003Cp\u003EIntelligent machines and AI characters that can interact seamlessly and intimately with human beings will have wide-ranging effects on society \u0026ndash; in healthcare, search and rescue, business and defense, and even recreation. The technology is not very far off, and a massive national effort, led in part by Georgia Tech researchers, is charting the course.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELast year, the \u003Ca href=\u0022https:\/\/www.src.org\/\u0022\u003ESemiconductor Research Corporation (SRC) \u003C\/a\u003Eand the \u003Ca href=\u0022https:\/\/www.darpa.mil\/\u0022\u003EDefense Advanced Research Projects Agency (DARPA)\u003C\/a\u003E announced a new program to improve the nation\u0026rsquo;s information and technology infrastructure. With a global chip shortage, supply chain issues, and other challenges in play, a group of Georgia Tech faculty members jumped at the opportunity to participate.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETheir landing was perfect. Two new research centers, representing an investment of about $65.7 million, have been awarded to Georgia Tech through the SRC-administrated Joint University Microelectronics Program 2.0, or \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/\u0022\u003EJUMP 2.0\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJUMP 2.0 will support the work of dozens of inter-disciplinary researchers from multiple universities, tackling the technological issues of an increasingly connected world. The goal is to improve the nation\u0026rsquo;s performance, efficiency, and capabilities for both commercial and military applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Georgia Tech won two of the seven centers, which is not only fantastic, but also speaks highly about the breadth and depth of our research enterprise,\u0026rdquo; said Professor \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/arijit-raychowdhury\u0022\u003EArijit Raychowdhury\u003C\/a\u003E, the Steve W. Chaddick Chair of the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering at Georgia Tech\u003C\/a\u003E and will direct one of the new centers.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe JUMP 2.0 announcement represents the latest round of significant support advancing AI-related research at Georgia Tech. Last July, Tech received \u003Ca href=\u0022https:\/\/news.gatech.edu\/news\/2021\/07\/29\/georgia-tech-joins-us-national-science-foundation-advance-ai-research-and-education\u0022\u003Etwo National Science Foundation Artificial Intelligence Research awards totaling $40 million.\u003C\/a\u003E In September, the U.S. Economic Development Administration awarded Georgia Tech \u003Ca href=\u0022https:\/\/research.gatech.edu\/economic-development-administration-awards-georgia-tech-65-million-ai-manufacturing-project\u0022\u003E$65 million to support a statewide initiative\u003C\/a\u003E combining AI and manufacturing innovations with workforce and outreach programs.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EA New Collaborative Chapter\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003ELaunching in 2023, JUMP 2.0 is the next chapter of an SRC-led alliance that formed in 2018 \u0026ndash; the original JUMP, with its broad focus on nano-electronic computing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJUMP 2.0 is a collaboration between SRC indust\u0026shy;\u0026shy;rial participants (IBM, Intel, Raytheon, TSMC and Samsung, to name a few) and the Department of Defense. The program asked researchers from U.S. universities to solicit proposals for collaborative, multidisciplinary, multi-institute research in seven theme areas: cognition; communications and connectivity; intelligent sensing to action; systems and architectures for distributed computing; intelligent memory and storage; advanced monolithic and heterogenous integration; and high-performance energy efficient devices.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe two new research centers Georgia Tech, both headquartered within the School of Electrical and Computer Engineering (ECE) are:\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026bull; CoCoSys: Center for the Co-Design of Cognitive Systems (theme area: cognition), under the direction of Raychowdhury;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026bull; CogniSense: Center on Cognitive Multispectral Sensors (theme area: intelligent sensing to action), under the direction of \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/saibal-mukhopadhyay\u0022\u003ESaibal Mukhopadhyay\u003C\/a\u003E, Joseph M. Pettit Professor in ECE.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESemiconductors, or microchips, are basically tiny silicon slices packed with millions of transistors that control electron activity. These chips enable all our electronic devices to work. So, a shortage of semiconductors \u0026ndash; or a shortcoming in terms of quality and efficiency \u0026ndash; spells trouble for sectors and industries that depend on these little bits of hardware, for example: computing, healthcare, telecommunication, security, transportation, or manufacturing.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EBuilding a Digital Human\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe goals for the JUMP 2.0 centers are lofty and wide-ranging, addressing current and future needs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;In some sense, the question we\u0026rsquo;re addressing is, \u0026lsquo;how do you build a perfect digital human,\u0026rsquo;\u0026rdquo; Raychowdhury said of the Team CoCoSys mission. \u0026ldquo;We want to learn how to build systems which are aware \u0026ndash; capable of interacting as human agents with us. For example, we want AI that can listen to a conversation between two human beings and learn from that and seamlessly merge into society.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECurrent AI, Raychowdhury said, may be able to perform relatively narrow tasks better than a human, but one area that it is much less effective is\u0026nbsp;human-intelligent machine collaboration. This concept has been increasingly researched in recent years as automated virtual assistants and the metaverse have entered the mainstream. As cognitive systems research moves toward creation of a digital human, it will have far-reaching impact in industry and healthcare testing, disaster relief, fully autonomous and collaborative systems, immersive training and gaming experiences, and more.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Continuous learning through interactions with humans is missing,\u0026rdquo; Raychowdhury said. \u0026ldquo;The next generation of AI needs to comprehend nuances of human interaction, explain, and interpret visual cues and language, and be able to do that in real-time with high energy-efficiency. That\u0026rsquo;s what we want to address. That\u0026rsquo;s the meta goal of this center.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThree other Georgia Tech faculty researchers, all from ECE, are part of Team CoCoSys: \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/larry-p-heck\u0022\u003ELarry Heck\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/azad-j-naeemi\u0022\u003EAzad Naeemi\u003C\/a\u003E, and \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/tushar-krishna\u0022\u003ETushar Krishna\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This is a diverse team in all possible ways with expertise across the board,\u0026rdquo; Raychowdhury said.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003ESensors with a Brain\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EThe ability to sense is fundamental and probably the most critical component for building an intelligent machine. \u0026ldquo;It is fundamental to nature,\u0026rdquo; said Mukhopadhyay. \u0026ldquo;We have eyes, ears, a nose, and skin to sense the environment around us.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe CogniSense Center research team wants to develop sensors that can effectively \u0026ldquo;perceive\u0026rdquo; everything around them and, like humans, efficiently attend to the information that really matters.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EToday\u0026rsquo;s electronics sensors samples everything they \u0026ldquo;see\u0026rdquo; and generate abundance of\u0026nbsp; digital data; sometime way too much for a machine store, process, and make sense. The CogniSense center\u0026rsquo;s goal is to change this paradigm by learning from biology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;In human, sensors and the brain work together to control attention and extract only important information from everything happening around us,\u0026rdquo; said Mukhopadhyay. \u0026ldquo;Can we make electronic sensors that behave like that \u0026ndash; cognizant and energy efficient?\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team he\u0026rsquo;s assembled is made up of 20 researchers from 12 different institutions, including two other ECE faculty members: \u003Ca href=\u0022https:\/\/jrom.ece.gatech.edu\/\u0022\u003EJustin Romberg\u003C\/a\u003E (associate chair for research in ECE) and \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E (interim director of the Georgia Tech 3D Systems Packing Research Center).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We have a diverse team with expertise in radars, optics, integrated circuits, packaging, signal processing, and artificial intelligence to build these new sensors with a brain,\u0026rdquo; said Mukhopadhyay.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EBeyond Campus\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech researchers will play critical roles in three other centers based at other universities around the country:\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026bull; PRISM: Center for Processing with Intelligent Storage and Memory\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026bull; ACE: Evolvable Computing for Next-Generation Distributed Computer Systems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026bull;\u0026nbsp;CHIMES: Center for Heterogenous Integration of Microelectronic Systems\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECHIMES in particular will feature a large, multi-disciplinary Georgia Tech influence including ECE\u0026rsquo;s \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/suman-datta\u0022\u003ESuman Datta\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/callie-hao\u0022\u003ECallie Hao\u003C\/a\u003E, and \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/shimeng-yu\u0022\u003EShimeng Yu\u003C\/a\u003E; George Woodruff School of Mechanical Engineering\u0026rsquo;s \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/sitaraman\u0022\u003ESuresh Sitaraman\u003C\/a\u003E and \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/kumar\u0022\u003ESatish Kumar;\u003C\/a\u003E and the center\u0026rsquo;s associate director, Bakir (doubling up on his JUMP 2.0 responsibilities as a member of both CogniSense and CHIMES).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We are delighted in the critical and fundamental role Georgia Tech plays within CHIMES,\u0026rdquo; said Bakir. \u0026ldquo;In each of the four research themes that constitute this center, Georgia Tech faculty play a key role. This not only reflects our world class faculty, students, and staff, but also our world-class fabrication, assembly and bonding, and advanced system level prototyping facilities that will be critical in enabling next generation 3D heterogeneous and 3D monolithic circuits and systems.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETech\u0026#39;s multidisciplinary research activities related to CHIMES are supported by the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology (IEN)\u003C\/a\u003E. Georgia Tech\u0026#39;s nanotechnology core facilities, namely the IEN \u003Ca href=\u0022https:\/\/cleanroom.gatech.edu\/\u0022\u003EMicro\/Nanofabrication Facility \u003C\/a\u003Eand \u003Ca href=\u0022https:\/\/mcf.gatech.edu\/\u0022\u003EMaterials Characterization Facility\u003C\/a\u003E, support CHIMES and other JUMP 2.0 research activities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEstablishing all of these new semiconductor research centers is the result of impeccable timing, according to Raychowdhury, who pointed out that ECE broke into the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/661036\/georgia-tech-ece-programs-move-undergraduate-rankings-electrical-engineering-top-ranked\u0022\u003Etop two in national rankings by \u003Cem\u003EU.S. News and World Report\u003C\/em\u003E \u003C\/a\u003Erankings for the first time in 2022, not long after President Biden signed the CHIPS and Science Act, which provides about $280 billion in new funding to boost U.S. research and manufacturing of semiconductors.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;These research centers are part of a confluence of things that are happening simultaneously across the U.S.,\u0026rdquo; he said. \u0026ldquo;And they have implications for Georgia Tech, national security, and the independence of our national supply chain as a whole.\u0026rdquo;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003ETwo new research centers, representing an investment of about $65.7 million, have been awarded to Georgia Tech through the SRC-administrated Joint University Microelectronics Program 2.0, or \u003Ca href=\u0022https:\/\/www.src.org\/program\/jump2\/\u0022\u003EJUMP 2.0\u003C\/a\u003E.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":" Two new research centers, representing an investment of about $65.7 million, have been awarded to Georgia Tech through the SRC-administrated Joint University Microelectronics Program 2.0, or JUMP 2.0."}],"uid":"28153","created_gmt":"2023-01-05 13:43:32","changed_gmt":"2023-01-06 16:03:24","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2023-01-05T00:00:00-05:00","iso_date":"2023-01-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"664390":{"id":"664390","type":"image","title":"Microchip","body":null,"created":"1672925089","gmt_created":"2023-01-05 13:24:49","changed":"1672925089","gmt_changed":"2023-01-05 13:24:49","alt":"","file":{"fid":"251414","name":"microchip.jpg","image_path":"\/sites\/default\/files\/images\/microchip.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/microchip.jpg","mime":"image\/jpeg","size":306603,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/microchip.jpg?itok=D51MG5HO"}},"664391":{"id":"664391","type":"image","title":"JUMP 2.0 leaders","body":null,"created":"1672925479","gmt_created":"2023-01-05 13:31:19","changed":"1672925479","gmt_changed":"2023-01-05 13:31:19","alt":"","file":{"fid":"251415","name":"Jump leaders.jpg","image_path":"\/sites\/default\/files\/images\/Jump%20leaders.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Jump%20leaders.jpg","mime":"image\/jpeg","size":724193,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Jump%20leaders.jpg?itok=vv5yMF4k"}}},"media_ids":["664390","664391"],"groups":[{"id":"1188","name":"Research Horizons"},{"id":"1214","name":"News Room"}],"categories":[],"keywords":[{"id":"167686","name":"Semiconductors"},{"id":"191818","name":"JUMP 2.0"},{"id":"174636","name":"intelligent machines"},{"id":"191819","name":"digital human"},{"id":"690","name":"darpa"},{"id":"176662","name":"microchips"},{"id":"2835","name":"ai"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EWriter: \u003Ca href=\u0022mailto:jerry.grillo@ibb.gatech.edu\u0022\u003EJerry Grillo\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["jerry.grillo@ibb.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663767":{"#nid":"663767","#data":{"type":"news","title":"ECE Research Group \u0026 Lab Spotlight: OLIVES","body":[{"value":"\u003Cp\u003EThe human brain is made up of around 100 billion neurons, meaning it can process complex, multi-parallel information at a tantalizing speed. Through the sense of sight alone, humans can gather a treasure trove of information in the blink of an eye and apply that information to make split-second decisions. With \u0026lsquo;smart\u0026rsquo; technology becoming more and more ingrained in everyday life and further trusted to keep humans safe, it is crucial for machines to have human-like vision and rapid information processing capabilities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EProfessor Ghassan AlRegib\u0026rsquo;s OLIVES (Omni Lab for Intelligent Visual Engineering and Science) research group in the Georgia Tech School for Electrical and Computer Engineering (ECE) is at the forefront of today\u0026rsquo;s computer vision and visual machine learning research and its deployment in everyday life applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We\u0026rsquo;re providing machines with the robust algorithms and datasets they need to better see, learn from, and respond to the world around them,\u0026rdquo; said AlRegib.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWorking in the areas of autonomous driving, machine learning in the wild (outside a lab setting), subsurface interpretation, and healthcare, the team is advancing the field with safe, reliable, and predictive tools. Read about a few exciting research projects and themes taking place in OLIVES below.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EAutonomous Vehicles (AVs) and Smart Mobility in Any Condition\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;As researchers endeavor for higher levels of autonomy in technology, safety-critical functions demand powerful algorithms,\u0026rdquo; said AlRegib. \u0026ldquo;Without understanding data, machine learning is\u0026nbsp;lacking. Autonomous driving may be the most obvious current example of this in practice.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor autonomous driving to work, a vehicle\u0026rsquo;s cameras must supply the car\u0026rsquo;s computers with information to make incredibly fast decisions. However, the majority of existing data and benchmarks are limited in terms of data available in challenging environmental conditions. For example, think of how a human driver adapts to driving in rain or sun glare conditions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo overcome the shortcomings in existing research, AlRegib\u0026rsquo;s team introduced the most comprehensive\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/1908.11262.pdf\u0022\u003E\u0026nbsp;traffic sign detection dataset\u003C\/a\u003E\u0026nbsp;every published that contains controlled challenging conditions. It facilitates the building of deep learning models \u0026mdash; a form of machine learning with algorithms inspired by the structure and function of the brain \u0026mdash; in solving various computer vision tasks that help the car make the best and safest decision possible no matter the weather. Currently the group is working with a leader in AVs to publish a new comprehensive dataset.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWATCH: \u003C\/strong\u003E\u003Ca href=\u0022https:\/\/mediaspace.gatech.edu\/media\/Robust%20Autonomous%20Driving%20Under%20Challenging%20Conditions%20DEMO\/1_n1c8i26o\u0022\u003ERobust Autonomous Driving Under Challenging Conditions DEMO\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EManufacturing Trust in Deployed Intelligent Systems\u0026nbsp;\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Trust in a system translates to its ability to explain, generalize, and become reliable,\u0026quot;\u0026nbsp;said\u0026nbsp;Mohit Prabhushankar, a postdoctoral fellow in the OLIVES Lab. \u0026quot;Systems must know what they don\u0026rsquo;t know, and more importantly, when they don\u0026#39;t know.\u0026quot;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn this context, explainability is the act of involving humans in a system\u0026rsquo;s decision-making process by contextually providing reasons for its internal processes. Reliability then requires systems to be reliable under all conditions of deployment including when they encounter new aberrant events not seen previously. This is where generalizability \u0026ndash; the ability of a trained model to classify or forecast unseen data \u0026ndash; is used to make the best decision possible.\u0026nbsp;Equally important is the uncertainty score that is associated with the decision.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe OLIVES group\u0026rsquo;s state-of-the-art research introduces a two-stage decision making process that is coined as\u0026nbsp;\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/2209.08425.pdf\u0022\u003E\u003Cem\u003EIntrospective Learning\u003C\/em\u003E\u003C\/a\u003E.\u0026nbsp;The first stage is a fast and instinctive process and can be available in any existing system that makes a decision.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe second stage is a slower reflection stage where the system is asked to reflect on its decision by considering and evaluating all available choices. The team demonstrates the value of such processes in generalizability and uncertainty estimation with applications in robust recognition and prediction confidence calibration. This concept is\u0026nbsp;\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/2206.08255.pdf\u0022\u003Efurther expanded\u003C\/a\u003E\u0026nbsp;to detect adversarial and out-of-distribution data during deployment.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe fields of contextually relevant explanations are tackled in\u0026nbsp;\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/2202.11838.pdf\u0022\u003Epublished findings\u003C\/a\u003E\u0026nbsp;in the Signal Processing Magazine that provides a user-centric policy for intelligent systems. The team\u0026rsquo;s findings have been demonstrated across several applications ranging from AVs to medical imaging, entertainment systems, and subsurface imaging.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Interpretability and trust are precursors to effectively deploy intelligent systems in everyday life applications,\u0026rdquo; said AlRegib.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWATCH:\u003C\/strong\u003E \u003Ca href=\u0022https:\/\/mediaspace.gatech.edu\/media\/CURE-OR%3A%20Challenging%20Unreal%20and%20Real%20Environment%20for%20Object%20Recoginition%20DEMO\/1_eraxkrla\u0022\u003EChallenging Unreal and Real Environment for Object Recognition DEMO\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EHuman-In-the-Loop Solutions to Big Data\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe amount of data that researchers can capture and generate in today\u0026rsquo;s world can be put to work in nearly every field imaginable. For example, the OLIVES lab was the first to introduce modern visual machine learning to seismic interpretation\u0026nbsp;\u0026mdash; data used to study earthquakes or vibrations of the earth.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn recent years, AlRegib helped established a new consortium called Machine Learning for Seismic (ML4Seismic) designed to foster research partnerships aimed to drive innovations in\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/1812.08756.pdf\u0022\u003E\u0026nbsp;artificial-intelligence assisted seismic imaging\u003C\/a\u003E.ML4Seismic also provides smart analyses of the Earth\u0026rsquo;s subsurface for geothermal and oil and gas applications in the energy sector.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFurther, the OLIVES team\u0026rsquo;s work extends to healthcare, specifically ophthalmology. One of their first products is a\u0026nbsp;\u003Ca href=\u0022https:\/\/patentimages.storage.googleapis.com\/10\/cb\/4e\/525bd751f92ee0\/US11185224.pdf\u0022\u003Eportable eye exam device\u003C\/a\u003E\u0026nbsp;that can provide access to eyecare anytime and anywhere using a headset and a cloud-based AI technology. AlRegib has partnered with the Retina Consultants of Texas to release a\u003Ca href=\u0022https:\/\/zenodo.org\/record\/6622145#.Ytg7XC-B30p\u0022\u003E\u0026nbsp;comprehensive ophthalmology dataset\u003C\/a\u003E\u0026nbsp;with multiple data modalities and have developed an\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/stamp\/stamp.jsp?arnumber=8790783\u0026amp;tag=1\u0022\u003E\u0026nbsp;automated framework to detect\u003C\/a\u003E\u0026nbsp;relative afferent pupillary defect (RAPD) in eyes.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;In a way our research comes full circle with our ophthalmology work. We can now utilize computer vision to literally benefit human vision,\u0026rdquo; said AlRegib.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn such applications, the domain expert \u0026mdash; a person with a strong theoretical foundation in the specific field for which the data was collected \u0026mdash; is at the center, and the expert\u0026rsquo;s interactions with the data and the decision-making process is instrumental. Hence, intelligent solutions must incorporate a two-way communication between the domain expert and the decision-making system. The OLIVES team has introduced solutions to this through active learning in both the fields of\u0026nbsp;\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/document\/9506657\u0022\u003Eseismic interpretation\u003C\/a\u003E\u0026nbsp;and\u0026nbsp;\u003Ca href=\u0022https:\/\/arxiv.org\/pdf\/2206.10120.pdf\u0022\u003Eophthalmology healthcare\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;By incorporating humans and their interactions with Big Data, we are able to effectively analyze and better understand Earth\u0026rsquo;s subsurface structures, provide personalized healthcare, and\u0026nbsp;capitalize on the greatest value domain experts provide, which is their knowledge and experience,\u0026rdquo; said\u0026nbsp;AlRegib.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWATCH:\u003C\/strong\u003E \u003Ca href=\u0022http:\/\/mediaspace.gatech.edu\/media\/Limitless%20Eyecare%20through%20Artificial%20Intelligence%20%26%20Imaging\/1_i5aygis8\u0022\u003ELimitless Eyecare through Artificial Intelligence \u0026amp; Imaging\u0026nbsp;DEMO\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EWant to learn more? Check out the\u003C\/em\u003E\u003Ca href=\u0022https:\/\/alregib.ece.gatech.edu\/\u0022\u003E\u003Cem\u003E\u0026nbsp;OLIVES website\u003C\/em\u003E\u003C\/a\u003E\u003Cem\u003E.\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Ghassan AlRegib\u0027s Omni Lab for Intelligent Visual Engineering and Science (OLIVES) is is at the forefront of today\u2019s computer vision and visual machine learning research."}],"uid":"36172","created_gmt":"2022-12-09 02:15:04","changed_gmt":"2022-12-15 17:39:16","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-08T00:00:00-05:00","iso_date":"2022-12-08T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663761":{"id":"663761","type":"image","title":"ECE Lab Profile OLIVES","body":null,"created":"1670547837","gmt_created":"2022-12-09 01:03:57","changed":"1670547837","gmt_changed":"2022-12-09 01:03:57","alt":"","file":{"fid":"251246","name":"Research Group \u0026 Lab Spotlight_OLIVES Ghassan_Header.jpg","image_path":"\/sites\/default\/files\/images\/Research%20Group%20%26%20Lab%20Spotlight_OLIVES%20Ghassan_Header.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Research%20Group%20%26%20Lab%20Spotlight_OLIVES%20Ghassan_Header.jpg","mime":"image\/jpeg","size":461547,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Research%20Group%20%26%20Lab%20Spotlight_OLIVES%20Ghassan_Header.jpg?itok=f0AYyu2a"}},"663766":{"id":"663766","type":"image","title":"Ghassan and Mohit","body":null,"created":"1670550850","gmt_created":"2022-12-09 01:54:10","changed":"1670550850","gmt_changed":"2022-12-09 01:54:10","alt":"ECE Professor Ghassan AlRegib and postdoctoral research fellow Mohit Prabhushankar discussing the group\u2019s latest machine learning work in autonmous vechicles (AVs). AVs are won of the most\u00a0obvious examples of OLIVES research in every day life.\u00a0","file":{"fid":"251250","name":"Ghassan \u0026 Mohit.jpg","image_path":"\/sites\/default\/files\/images\/Ghassan%20%26%20Mohit.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Ghassan%20%26%20Mohit.jpg","mime":"image\/jpeg","size":1074958,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Ghassan%20%26%20Mohit.jpg?itok=2reml-b6"}},"663764":{"id":"663764","type":"image","title":"OLIVES CURE-OR","body":null,"created":"1670550163","gmt_created":"2022-12-09 01:42:43","changed":"1670550163","gmt_changed":"2022-12-09 01:42:43","alt":"","file":{"fid":"251248","name":"CURE-OR.png","image_path":"\/sites\/default\/files\/images\/CURE-OR.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/CURE-OR.png","mime":"image\/png","size":1067635,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/CURE-OR.png?itok=0ZaWa8C2"}},"663765":{"id":"663765","type":"image","title":"OLIVES AV","body":null,"created":"1670550259","gmt_created":"2022-12-09 01:44:19","changed":"1670550259","gmt_changed":"2022-12-09 01:44:19","alt":"\u2022\tExample of the OLVIES group\u2019s autonomous vehicle dataset in action.","file":{"fid":"251249","name":"OLIVES AV.png","image_path":"\/sites\/default\/files\/images\/OLIVES%20AV.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/OLIVES%20AV.png","mime":"image\/png","size":1063707,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/OLIVES%20AV.png?itok=2nWQenjE"}},"663763":{"id":"663763","type":"image","title":"OLIVES Group Photo","body":null,"created":"1670550025","gmt_created":"2022-12-09 01:40:25","changed":"1671121313","gmt_changed":"2022-12-15 16:21:53","alt":"Members of the OLIVES team in the lab (L-R): Ghazal Kaviani (Ph.D. candidate), Jinsol Lee (Ph.D. candidate), unknown, Ryan Benkert (Ph.D. candidate), Chen Zhou (Ph.D. candidate), Zoe Fowler (Ph.D. candidate), Yash-yee Logan (Ph.D. candidate), Professor Ghassan AlRegib, Mohit Prabhushankar (postdoctoral research fellow), Kiran Kokilepersaud (Ph.D. candidate), and Ahmad Mustafa (Ph.D. candidate).","file":{"fid":"251247","name":"NEW OLIVES LAB PHOTO.jpg","image_path":"\/sites\/default\/files\/images\/NEW%20OLIVES%20LAB%20PHOTO.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/NEW%20OLIVES%20LAB%20PHOTO.jpg","mime":"image\/jpeg","size":1338246,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/NEW%20OLIVES%20LAB%20PHOTO.jpg?itok=rr34KkWk"}}},"media_ids":["663761","663766","663764","663765","663763"],"related_links":[{"url":"https:\/\/ghassanalregib.info","title":"OLIVES (Omni Lab for Intelligent Visual Engineering and Science) "},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/ghassan-alregib","title":"Ghassan AlRegib"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"145","name":"Engineering"},{"id":"152","name":"Robotics"}],"keywords":[{"id":"44681","name":"Ghassan AlRegib"},{"id":"182572","name":"OLIVES"},{"id":"178069","name":"Omni Lab for Intelligent Visual Engineering and Science"},{"id":"191729","name":"School for Electrical and Computer Engineering"},{"id":"2435","name":"ECE"},{"id":"191730","name":"Intelligent Computer Vision"},{"id":"191731","name":"Machine Learning for Seismic"},{"id":"174666","name":"autonomous driving"},{"id":"191732","name":"machine learning in the wild"},{"id":"191733","name":"subsurface interpretation"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39501","name":"People and Technology"},{"id":"39521","name":"Robotics"},{"id":"39541","name":"Systems"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663776":{"#nid":"663776","#data":{"type":"news","title":"Swaminathan Named NAI Fellow","body":[{"value":"\u003Cp\u003EMadhavan Swaminathan is among 169 renowned and distinguished academic inventors named to the 2022 class of Fellows of the National Academy of Inventors (NAI). Swaminathan is the John Pippin Chair in Microsystems Packaging \u0026amp; Electromagnetics in the School of Electrical and Computer Engineering (ECE) with a joint appointment in the School of Materials Science and Engineering (MSE), and Director of the 3D Systems Packaging Research Center (PRC) at Georgia Tech.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EElection to NAI Fellow status is the highest professional accolade bestowed to academic inventors who have demonstrated a prolific spirit of innovation in creating or facilitating outstanding inventions that have made a tangible impact on quality of life, economic development, and the welfare of society.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESwaminathan is an internationally recognized researcher in microelectronic packaging,\u0026nbsp;an area that is expected to fuel the semiconductor industry over the next decade.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe is the author of more than 550 refereed technical publications and the primary author and co-editor of three books. Swaminathan also holds 31 patents, is the founder and co-founder of two start-up companies (E-System Design and Jacket Micro Devices), and is an IEEE Fellow. Prior to joining Georgia Tech in 1994, he was an engineer at IBM working on packaging for supercomputers. Swaminathan will be leaving Georgia Tech at the end of 2022 to lead the Penn State Department of Electrical Engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition to Swaminathan, Georgia Tech researchers Adegboyega Oyelere (associate professor in the School of Chemistry \u0026amp; Biology) and Zhong Lin Wang (Regents\u0026#39; Professor and Hightower Chair Emeritus in the School of Materials Sciences and Engineering) have been named NAI Fellows this year.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe 2022 Fellow class hails from 110 research universities, governmental and non-profit research institutions worldwide. They collectively hold over 5,000 issued U.S. patents. Among the new class of Fellows are members of the National Academy of Sciences, Engineering and Medicine; Fellows of AAAS; and other prestigious organizations; Nobel Laureates; other honors and distinctions as well as senior leadership from universities and research institutions.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe class will be inducted at the Fellows Induction Ceremony held on July 27, 2023,\u0026nbsp;during the\u0026nbsp;NAI\u0026nbsp;Twelfth Annual Meeting in Washington, D.C. To learn more about the 2022 class of NAI Fellows,\u0026nbsp;visit the\u0026nbsp;\u003Ca href=\u0022https:\/\/academyofinventors.org\/\u0022\u003ENAI website\u003C\/a\u003E.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Swaminathan is an internationally recognized researcher in microelectronic packaging."}],"uid":"36172","created_gmt":"2022-12-09 16:05:17","changed_gmt":"2022-12-09 19:34:41","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-09T00:00:00-05:00","iso_date":"2022-12-09T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"646902":{"id":"646902","type":"image","title":"Madhavan Swaminathan","body":null,"created":"1619473945","gmt_created":"2021-04-26 21:52:25","changed":"1619473945","gmt_changed":"2021-04-26 21:52:25","alt":"photograph of Madhavan Swaminathan","file":{"fid":"245575","name":"Swami cropped.jpg","image_path":"\/sites\/default\/files\/images\/Swami%20cropped.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Swami%20cropped.jpg","mime":"image\/jpeg","size":675387,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Swami%20cropped.jpg?itok=EfAKMYIx"}}},"media_ids":["646902"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/madhavan-swaminathan","title":"Madhavan Swaminathan"},{"url":"https:\/\/sites.gatech.edu\/ien-prc\/","title":"3D Systems Packaging Research Center"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"132","name":"Institute Leadership"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"24251","name":"Madhavan Swaminathan"},{"id":"87401","name":"National Academy of Inventors"},{"id":"191735","name":"John Pippin Chair in Microsystems Packaging \u0026 Electromagnetics"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"12072","name":"3D Systems Packaging Research Center"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663652":{"#nid":"663652","#data":{"type":"news","title":"Paul Joseph Brings Nanotechnology Expertise to India","body":[{"value":"\u003Cp\u003EThe global demand for nanotechnologists is growing, and universities around the world are creating and expanding programs to educate the workforce of the future. This summer, \u003Ca href=\u0022https:\/\/research.gatech.edu\/paul-joseph\u0022\u003EPaul Joseph\u003C\/a\u003E, a principal research scientist at the Georgia Tech Institute for Electronics and Nanotechnology (IEN), spent two weeks at the Indian Institute of Information Technology (IIIT) to help develop their nanotechnology offerings.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Indian Industries realize the importance of nanotechnology and its day-to-day applications in various products, so the goal is for them to train their own student community,\u0026rdquo; Joseph explained. \u0026ldquo;It\u0026#39;s about developing knowledgeable students in this emerging technology so that they can prepare them for the future workforce and meet the demands of the country.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJoseph, who also serves as director of external user programs for the Southeastern Nanotechnology Infrastructure Corridor, has more than 25 years of experience in research and teaching. He received a prestigious \u003Ca href=\u0022https:\/\/fulbrightspecialist.worldlearning.org\/the-fulbright-specialist-program\u0022\u003EFulbright Specialist Award\u003C\/a\u003E to share his expertise with the students and faculty at IIIT.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Fulbright Specialist Program \u0026ldquo;pairs highly qualified U.S. academics and professionals with host institutions abroad to share their expertise, strengthen institutional linkages, hone their skills, gain international experience, and learn about other cultures while building capacity at their overseas host institutions.\u0026rdquo; During his visit, Joseph focused on student, faculty, and curriculum development in addition to high school outreach. He also taught a one-day course.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor the student development portion of the program, Joseph gave a series of 10 \u0026ldquo;Introduction to Nanotechnology\u0026rdquo; lectures to approximately 90 B.Tech students. Following the lectures, he hosted office hours where he held small group mentoring sessions. Joseph met with approximately 40 students during his short visit, which furthered their interest in nanotechnology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The students would ask questions related to my lecture, and many of them wanted to learn more about pursuing higher education in the United States,\u0026rdquo; Joseph said. \u0026ldquo;As a result, six students are very interested in applying for graduate school at Georgia Tech.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the afternoons, Joseph led sessions with 25 members of the IIIT faculty to share his knowledge in outcome-based education, mentoring students, student assessment and methodologies, and technology commercialization. He also worked with the IIIT team to develop the curriculum for a three-credit course titled \u0026ldquo;Introduction to Nanoscience and Nanotechnology\u0026rdquo; and participated in a brainstorming session for the establishment of the Institute Center of Excellence in Nanotechnology (CENT) at IIIT.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe also ran \u0026ldquo;Introduction to Micro- and Nanotechnology and Microfabrication Techniques,\u0026rdquo; a one-day workshop for faculty and students at IIIT in addition to other universities in the area. The successful workshop was attended by roughly 135 individuals interested in learning more about nanotechnology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I was very impressed by the enthusiasm of both students and faculty to learn new technologies,\u0026rdquo; Joseph said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAnd finally, Joseph assisted with high school outreach in the area and visited two local high schools during his visit. He gave expert lectures on the applications of nanotechnology to approximately 140 11\u003Csup\u003Eth\u003C\/sup\u003E and 12\u003Csup\u003Eth\u003C\/sup\u003E graders during these visits.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;For many of these students, this was the first time that they heard the word nanotechnology, and they were very excited,\u0026rdquo; Joseph recalled with a smile. \u0026ldquo;I was so impressed with how quickly they grasped what I was saying and the depth of knowledge they had on the topic. They were able to answer any questions that I asked them.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince each of his modules reached a different audience, Joseph believes he reached approximately 400 individuals during his two-week stay at the university, and the relationship between IIIT and IEN is growing. As a result of his visit, IIIT is working to send some of its faculty members to IEN to learn more about nanotechnology and use its core facilities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAt the culmination of this visit, IIIT hosted a valedictory ceremony for Joseph to thank him for his contributions. \u0026ldquo;I would like to thank Doctor Joseph for conducting this successful program,\u0026rdquo; said one of the students who attended Joseph\u0026rsquo;s lectures. \u0026ldquo;We have moved a bit further by not only exposing our peers to the world of nanotech, but also gained a lot of insights along the way \u0026hellip; I am impressed by how such a vast course has been delivered in such a short time.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EJoseph would like to thank Institute Director Selvakumar Subramanian, Fulbright Program Coordinator Nitish Katal, Dean of Academics Nishtha Hooda, and all other IIIT faculty and students for their support to serve as a successful and productive Fulbright Specialist at his host institution. \u003C\/em\u003E \u003Cem\u003EHe would also like to thank the Fulbright Foreign Scholarship Board for the award.\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"This summer Joseph spent two weeks at the Indian Institute of Information Technology to help develop their nanotechnology offerings."}],"uid":"34760","created_gmt":"2022-12-06 00:24:14","changed_gmt":"2022-12-07 18:29:04","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-12-05T00:00:00-05:00","iso_date":"2022-12-05T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663653":{"id":"663653","type":"image","title":"Paul Joseph Teaching Session on Nanotechnology to Undergraduate Students","body":null,"created":"1670290081","gmt_created":"2022-12-06 01:28:01","changed":"1670290081","gmt_changed":"2022-12-06 01:28:01","alt":"Teaching Session on Nanotechnology to Undergraduate Students","file":{"fid":"251218","name":"joseph-image.png","image_path":"\/sites\/default\/files\/images\/joseph-image.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/joseph-image.png","mime":"image\/png","size":613626,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/joseph-image.png?itok=3anSUWfh"}}},"media_ids":["663653"],"related_links":[{"url":"https:\/\/research.gatech.edu\/paul-joseph-awarded-fulbright-specialist-grant-india","title":"Paul Joseph Awarded Fulbright Specialist Grant to India"}],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"191716","name":"Fulbright specialist"},{"id":"12701","name":"Institute for Electronics and Nanotechnology"},{"id":"191717","name":"Paul Joseph"},{"id":"107","name":"Nanotechnology"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71871","name":"Campus and Community"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"663385":{"#nid":"663385","#data":{"type":"news","title":"Georgia Tech, Emory researchers receive $2.46 Million Grant to Develop Intelligent Tools for Assessing Heat Exposure Effects","body":[{"value":"\u003Cp\u003EThe \u003Ca href=\u0022https:\/\/www.niehs.nih.gov\/\u0022\u003ENational Institute of Environmental Health Sciences\u003C\/a\u003E has awarded a $2.46 million grant to Emory University and Georgia Institute of Technology researchers to develop a multi-sensor biopatch for farmworkers that can predict symptoms of heat-related illness, dehydration, and acute kidney injury.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe four-year grant will allow the team to develop a wearable wireless unit for farmworkers with sensors that can integrate key physiological signals, predict adverse heat-related medical events, and generate warnings about them in real time.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;When you think about people who work outside all day, and that includes construction workers and landscapers as well as farm workers and others, they are exposing themselves to potentially dangerous heat-related conditions,\u0026rdquo; says \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/yeo\u0022\u003EW. Hong Yeo\u003C\/a\u003E, a Woodruff Faculty Fellow and associate professor in mechanical and biomedical engineering at Georgia Tech, and one of the principal investigators on the project, who is leading development of the biopatch.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe findings of the project will lead to an intervention study in which data are sent from the biopatch to an Android device. The team will develop artificial intelligence (AI) tools for predicting study outcomes. In future research, the team envisions that data sent to the Android from the biopatch will be processed with these tools. After processing, warnings may be sent to workers from the Android device as necessary, which will help determine if the technology can reduce morbidity associated with occupational heat exposure.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEscalating trends of increasing environmental temperatures place marginalized populations, such as agricultural workers who have routine occupational exposure to hot, humid environments, at increased risk for the acute health effects of heat exposure, according to \u003Ca href=\u0022https:\/\/www.sph.emory.edu\/faculty\/profile\/index.php?FID=804\u0022\u003EVicki Hertzberg\u003C\/a\u003E, lead principal investigator on the project and a professor at the \u003Ca href=\u0022https:\/\/www.nursing.emory.edu\/\u0022\u003EEmory University Nell Hodgson Woodruff School of Nursing\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Heat-related illness and dehydration are particularly insidious, as they can quickly progress from moderate discomfort to confusion and impaired judgment, thereby diminishing the affected worker\u0026rsquo;s ability to seek necessary medical attention,\u0026rdquo; she says.\u0026nbsp;\u0026ldquo;A hand-held device with clear information about heat illness will help farmworkers know when to seek help.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJoining Hertzberg and Yeo as a principal investigator is \u003Ca href=\u0022http:\/\/www.cs.emory.edu\/~lxiong\/\u0022\u003ELi Xiong\u003C\/a\u003E, a Samuel Candler Dobbs professor in the \u003Ca href=\u0022https:\/\/www.cs.emory.edu\/home\/\u0022\u003EEmory Department of Computer Science\u003C\/a\u003E. Xiong will lead the development of prediction models associated with the research, and Yeo will lead the development of the biopatch.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We know that once we can get continuous physiological data in real time, then we can prevent this problem,\u0026rdquo; says Yeo, a Woodruff Faculty Fellow and associate professor in mechanical and biomedical engineering at Georgia Tech, who also is director of the \u003Ca href=\u0022https:\/\/chcie.me.gatech.edu\/\u0022\u003EGeorgia Tech IEN Center for Human-Centric Interfaces and Engineering\u003C\/a\u003E. \u0026ldquo;Currently, it\u0026rsquo;s very hard to measure real-time events because of the limitations of existing sensor or device technology.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EConventional wearable devices tend to be rigid, heavy, and bulky \u0026ndash; not useful for workers who spend a lot of time moving around.\u003C\/p\u003E\r\n\r\n\u003Cdiv\u003E\u0026ldquo;All of that motion means we\u0026rsquo;re losing data, so we\u0026rsquo;re creating a reliable solution,\u0026rdquo; says Yeo, whose \u003Ca href=\u0022https:\/\/sites.google.com\/view\/yeogroup?pli=1\u0022\u003EBio-Interfaced Translational Nanoengineering Group\u003C\/a\u003E has specialized in the development of soft, wearable health monitors that use stretchable electronics.\u003C\/div\u003E\r\n\r\n\u003Cp\u003EXiong adds, \u0026ldquo;Once we have these continuous data, then the challenge is how to fuse these multimodal data in real time and make reliable predictions for interventions. I\u0026rsquo;m looking forward to working with the team to develop the AI tools and test them in the field.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEmory School of Nursing assistant professor Roxana Chicas will lead the field team assessing the use of the biopatch on outdoor workers, and Jeff Sands, professor in the \u003Ca href=\u0022https:\/\/med.emory.edu\/departments\/medicine\/index.html\u0022\u003EEmory Department of Medicine\u003C\/a\u003E and director of the \u003Ca href=\u0022https:\/\/med.emory.edu\/departments\/medicine\/divisions\/renal-medicine\/index.html\u0022\u003EEmory University Division of Renal Medicine\u003C\/a\u003E, will provide renal expertise. Completing the team is Nezahualcoyotl Xiuhtecutli, executive director of the \u003Ca href=\u0022https:\/\/floridafarmworkers.org\/\u0022\u003EFarmworker Association of Florida\u003C\/a\u003E. The association and the School of Nursing have had a strong partnership in community-based research among Florida farmworkers.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Georgia Tech, Emory researchers receive $2.46 Million Grant to Develop Intelligent Tools for Assessing Heat Exposure Effects"}],"uid":"28153","created_gmt":"2022-11-22 02:11:42","changed_gmt":"2022-12-06 00:37:23","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-21T00:00:00-05:00","iso_date":"2022-11-21T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663388":{"id":"663388","type":"image","title":"R01 for Biopatch","body":null,"created":"1669083480","gmt_created":"2022-11-22 02:18:00","changed":"1669083480","gmt_changed":"2022-11-22 02:18:00","alt":"","file":{"fid":"251112","name":"Grant story.jpg","image_path":"\/sites\/default\/files\/images\/Grant%20story_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Grant%20story_0.jpg","mime":"image\/jpeg","size":882924,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Grant%20story_0.jpg?itok=zdByj-np"}}},"media_ids":["663388"],"groups":[{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187423","name":"go-bio"},{"id":"191676","name":"biopatch"},{"id":"191677","name":"heat stroke"},{"id":"132141","name":"wearables"},{"id":"4460","name":"Medical Devices"},{"id":"191678","name":"R01 Grant"},{"id":"191679","name":"Woonhong Yeo"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EWriter: \u003Ca href=\u0022mailto:mkieve@emory.edu\u0022\u003EMelanie Kieve\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"663308":{"#nid":"663308","#data":{"type":"news","title":"Guo Receives Top Paper Award in Electronic Packaging and Systems","body":[{"value":"\u003Cp\u003EPh.D. candidate Yiliang Guo has received the Best Student Paper Award at the 2022 Electrical Performance of Electronic Packaging and Systems Conference (EPEPS 2022).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGuo is a graduate researcher in Georgia Tech\u0026rsquo;s 3D Systems Packaging Research Center (PRC), a leading academic center focused on advanced packaging and system integration leading to System on Package (SoP) technologies. He is advised by Professor Madhavan Swaminathan in the School of Electrical and Computer Engineering (ECE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGuo\u0026rsquo;s research interests include machine learning and optimization, and their applications in microwave design and electronic packaging problems. His award-winning paper, \u0026ldquo;2D Spectral Transposed Convolutional Neural Network for S-Parameter Predictions,\u0026rdquo; proposes to use 2D transposed convolutional kernel to solve the dimensionality problem when utilizing machine learning method for s-parameter predictions in packaging problems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEPEPS\u0026nbsp;is the premier international conference on advanced and emerging issues in electrical modeling, analysis and design of electronic interconnections, packages, and systems. It also focuses on new methodologies and design techniques for evaluating and ensuring signal, power, and thermal integrity in high-speed designs. EPEPS is jointly sponsored by the IEEE Electronics Packaging Society, IEEE Microwave Theory and Techniques Society, and IEEE Antenna and Propagation Society. This year\u0026rsquo;s conference was held on Oct. 9-12 in San Jose, Cali.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"EPEPS is the premier international conference on advanced and emerging issues in electrical modeling, analysis and design of electronic interconnections, packages, and systems."}],"uid":"36172","created_gmt":"2022-11-18 13:46:30","changed_gmt":"2022-11-18 13:58:05","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-18T00:00:00-05:00","iso_date":"2022-11-18T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663306":{"id":"663306","type":"image","title":"Ph.D. candidate Yiliang Guo ","body":null,"created":"1668779043","gmt_created":"2022-11-18 13:44:03","changed":"1668779043","gmt_changed":"2022-11-18 13:44:03","alt":"Ph.D. candidate Yiliang Guo\u00a0","file":{"fid":"251095","name":"Yiliang_graphic2.jpg","image_path":"\/sites\/default\/files\/images\/Yiliang_graphic2.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Yiliang_graphic2.jpg","mime":"image\/jpeg","size":975905,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Yiliang_graphic2.jpg?itok=zMH39Poh"}}},"media_ids":["663306"],"related_links":[{"url":"http:\/\/www.epeps.org","title":"Electrical Performance of Electronic Packaging and Systems Conference (EPEPS 2022)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191662","name":"Yiliang Guo"},{"id":"191663","name":"Electrical Performance of Electronic Packaging and Systems (EPEPS 2022) Conference"},{"id":"12072","name":"3D Systems Packaging Research Center"},{"id":"66891","name":"Georgia Tech School of Electrical and Computer Engineering"},{"id":"24251","name":"Madhavan Swaminathan"},{"id":"191664","name":"2D Spectral Transposed Convolutional Neural Network for S-Parameter Predictions"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"663039":{"#nid":"663039","#data":{"type":"news","title":"Using Vibrations to Control a Swarm of Tiny Robots","body":[{"value":"\u003Cp\u003EVibrating tiny robots could revolutionize research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIndividual robots can work collectively as swarms to create major advances in everything from construction to surveillance, but microrobots\u0026rsquo; small scale is ideal for drug delivery, disease diagnosis, and even surgeries.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDespite their potential, microrobots\u0026rsquo; size often means they have limited sensing, communication, motility, and computation abilities, but new research from the Georgia Institute of Technology enhances their ability to collaborate efficiently. The work offers a new system to control swarms of 300 3-millimeter microbristle robots\u0026rsquo; (microbots) ability to aggregate and disperse controllably without onboard sensing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe breakthrough is unique to Georgia Tech\u0026rsquo;s expertise in electric and computer engineering and robotics and its push for interdisciplinary collaborations.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;By collaborating with roboticists we were able to \u0026lsquo;close the gap\u0026rsquo; between single robot design and swarm control,\u0026rdquo; said \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/azadeh-ansari\u0022\u003EAzadeh Ansari\u003C\/a\u003E, an assistant professor in the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E (ECE). \u0026ldquo;So I guess the different elements were there, and we just made the connection.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers presented the work, \u0026ldquo;\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/abstract\/document\/9835143\u0022\u003EControlling Collision-Induced Aggregations in a Swarm of Micro Bristle Robots\u003C\/a\u003E,\u0026rdquo; in \u003Cem\u003E\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/xpl\/RecentIssue.jsp?punumber=8860\u0022\u003EIEEE Transactions on Robotics\u003C\/a\u003E\u003C\/em\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EThe Challenges of Microbots\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhile larger robots can control movement through sensing the environment and wirelessly sending this data to each other, microbots do not have the capacity to carry the same sensors, communications, or power units. In this study, the researchers instead utilized inter-robot physical interactions to encourage robots to swarm.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Microbots are too small to interpret and make decisions, but by using the collision between them and how they respond to frequency and the amplitude of global vibration actuation, we could influence how individual robots move and the collective behaviors of hundreds and thousands of these tiny robots,\u0026rdquo; said Zhijian Hao, an ECE Ph.D. student.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThese behaviors, or motility characteristics, determine how microbots move linearly and the randomness in their rotation. By using vibration, the researchers could control these motility characteristics and perform motility-induced phase separation (MIPS). The researchers borrowed the concept from thermodynamics, when an agitated material can change phases from solid to gas to liquid. The researchers manipulated the level of vibration to influence the microbots to form clusters or disperse to create good spatial coverage.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo better understand these phase separations, they developed computational models and a live tracking system for the 300-robot swarm using computer vision. These enabled the researchers to analyze microrobots\u0026rsquo; behavior and motion data that give rise to the swarm\u0026rsquo;s characteristics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This project is the first complete pipeline using this MIPS that can be generalized to different microbot swarms,\u0026rdquo; Hao said. \u0026ldquo;We hope people will find that using physical interactions is another new way to control the microbots, which initially was very difficult to do.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECollaborating for Innovation\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EA Georgia Tech \u003Ca href=\u0022https:\/\/research.gatech.edu\/seed-grant-funding\u0022\u003Eseed grant\u003C\/a\u003E from the \u003Ca href=\u0022https:\/\/research.gatech.edu\/robotics\u0022\u003EInstitute for Robotics and Intelligent Machines\u003C\/a\u003E\u0026nbsp;(IRIM)\u0026nbsp; and the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology\u003C\/a\u003E enabled this high-risk research.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe success of the project can be attributed to the interdisciplinary nature of the research. While the ECE researchers had expertise in building microelectromechanical systems (MEMS) to fabricate technology such as computer chips or microbots, the robotics researchers brought modeling experience. Ansari first created \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/tiny-vibration-powered-robots-are-size-worlds-smallest-ant\u0022\u003Emicrobristle bots\u003C\/a\u003E in 2019 from 3D-printed polymers, which seeded the collaboration with IRIM Director and Professor \u003Ca href=\u0022https:\/\/faculty.cc.gatech.edu\/~seth\/\u0022\u003ESeth Hutchinson\u003C\/a\u003E and Professor \u003Ca href=\u0022https:\/\/research.gatech.edu\/magnus-egerstedt\u0022\u003EMagnus Egerstedt\u003C\/a\u003E, now at University of California, Irvine, and their Ph.D. students Sid Mayya and Gennaro Notomista.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We knew more about how to build micro devices and actuate them, and they knew more about the algorithms, modelings, and the closed-loop and open-loop control,\u0026rdquo; Ansari said. \u0026ldquo;So, it was very good interdisciplinary work because each group benefited from the new perspectives that the others brought to this.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECITATION: Z. Hao, S. Mayya, G. Notomista, S. Hutchinson, M. Egerstedt and A. Ansari, \u0026quot;Controlling Collision-Induced Aggregations in a Swarm of Micro Bristle Robots,\u0026quot; in\u0026nbsp;\u003Cem\u003EIEEE Transactions on Robotics\u003C\/em\u003E, 2022, doi: 10.1109\/TRO.2022.3189846.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Individual robots can work collectively as swarms to create major advances in everything from construction to surveillance, but microrobots\u2019 small scale is ideal for drug delivery, disease diagnosis, and even surgeries."}],"uid":"34541","created_gmt":"2022-11-09 18:34:15","changed_gmt":"2022-11-09 20:55:29","author":"Tess Malone","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-09T00:00:00-05:00","iso_date":"2022-11-09T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663057":{"id":"663057","type":"image","title":" Ansari lab","body":null,"created":"1668023663","gmt_created":"2022-11-09 19:54:23","changed":"1668023663","gmt_changed":"2022-11-09 19:54:23","alt":"Ansari and Hao","file":{"fid":"251031","name":"ansari.jpg","image_path":"\/sites\/default\/files\/images\/ansari.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/ansari.jpg","mime":"image\/jpeg","size":563680,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/ansari.jpg?itok=NdB0XJoh"}}},"media_ids":["663057"],"groups":[{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ETess Malone, Research Writer\/Editor\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["tess.malone@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662975":{"#nid":"662975","#data":{"type":"news","title":"Georgia Tech Packaging Research Center Collaboration with SKC Leads to $600 Million Semiconductor Manufacturing Site in Georgia","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.absolicsinc.com\/\u0022\u003EAbsolics\u003C\/a\u003E, Inc., a subsidiary of SKC Co., broke ground on a new semiconductor manufacturing facility in Covington, Georgia, on November 1. The $600 million facility will produce a revolutionary glass substrate that can \u0026ldquo;significantly increase the performance and energy efficiency of chipsets.\u0026rdquo; It is expected to create more than 400 skilled jobs in Georgia.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn a \u003Ca href=\u0022https:\/\/www.georgia.org\/press-release\/sk-group-locate-first-its-kind-glass-based-semiconductor-part-venture-covington\u0022\u003Eprevious announcement\u003C\/a\u003E about the facility, Georgia Tech President \u0026Aacute;ngel Cabrera said \u0026ldquo;We\u0026rsquo;re delighted that Georgia Tech\u0026rsquo;s investment in packaging research and advanced circuitry over the last 25-30 years has contributed to Georgia\u0026rsquo;s selection as the best place for the company to manufacture their state-of-the-art semiconductor technology. We look forward to further collaboration so we can work together to lead the region in developing the best engineering talent to work in this crucially important field.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.prc.gatech.edu\/\u0022\u003EGeorgia Tech 3D Systems Packaging Research Center\u003C\/a\u003E (PRC) Director \u003Ca href=\u0022https:\/\/research.gatech.edu\/madhavan-swaminathan\u0022\u003EMadhavan Swaminathan\u003C\/a\u003E and his team worked closely with SKC on this project. According to Swaminathan, glass as a substrate material has seven useful attributes or properties, namely smoothness which enables dense connectivity between chips; tailorable thermal expansion which improves reliability; stiffness which eases manufacturability; zero moisture absorption that improves stability; low thermal conductivity which isolates hotspots; dielectric insulation that improves performance; and large area panel processing which reduces cost.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The PRC has been pioneering glass substrate technology for many years and we have been continuing to advance this technology working closely with SKC and several other supply chain companies along with state and federal support,\u0026rdquo; said Swaminathan, who also participated in the monumental groundbreaking ceremony. \u0026ldquo;With applications emerging in artificial intelligence, high-performance computing, and high-end communications, we expect glass substrates as being the next technology of the future. By creating the world\u0026rsquo;s first glass substrate factory, we see Absolics as being uniquely positioned to productize and commercialize this technology through their vast skill set, know-how, and customized manufacturable solutions. In the years ahead we look forward to continuing our close collaboration with Absolics in several areas that include research, education, and workforce development.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/eng.sk.com\/news\/absolics-breaks-ground-on-planned-600-million-manufacturing-site-in-georgia-for-breakthrough-semiconductor-material\u0022\u003ERead the Article\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Absolics, Inc., a subsidiary of SKC Co., broke ground on a new semiconductor manufacturing facility in Covington, Georgia, on November 1. "}],"uid":"34760","created_gmt":"2022-11-07 21:24:06","changed_gmt":"2022-11-08 14:56:09","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-07T00:00:00-05:00","iso_date":"2022-11-07T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"663000":{"id":"663000","type":"image","title":"Georgia officials and representatives from SKC Co. Ltd. and Absolics, Inc. held a shovel ceremony on Tuesday to celebrate the company\u2019s new facility in Covington, Ga.","body":null,"created":"1667919304","gmt_created":"2022-11-08 14:55:04","changed":"1667919304","gmt_changed":"2022-11-08 14:55:04","alt":"Georgia officials and representatives from SKC Co. Ltd. and Absolics, Inc. held a shovel ceremony on Tuesday to celebrate the company\u2019s new facility in Covington, Ga.","file":{"fid":"251016","name":"Absolics_Georgia_facility_groundbreaking.jpg","image_path":"\/sites\/default\/files\/images\/Absolics_Georgia_facility_groundbreaking.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Absolics_Georgia_facility_groundbreaking.jpg","mime":"image\/jpeg","size":956767,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Absolics_Georgia_facility_groundbreaking.jpg?itok=DYCbLS7Y"}}},"media_ids":["663000"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"106361","name":"Business and Economic Development"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"662995":{"#nid":"662995","#data":{"type":"news","title":"Connect your ORCID iD with Georgia Tech","body":[{"value":"\u003Cp\u003EBeginning in 2023, researchers applying for many sources of federal funding will be required to have a\u0026nbsp;persistent identifier (an ORCID iD). Fortunately, there is an easy way to meet this requirement: creating an ORCID iD, which\u0026nbsp;also adds value, including addressing more specific research activity disclosure requirements.\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nAs a Georgia Tech researcher, you need to register with \u003Ca href=\u0022https:\/\/library.gatech.edu\/orcid\u0022 target=\u0022_blank\u0022\u003EORCID\u003C\/a\u003E and connect it with Georgia Tech.\u003C\/p\u003E\r\n\r\n\u003Ch5\u003E\u003Ca href=\u0022https:\/\/library.gatech.edu\/orcid\u0022\u003E\u003Cstrong\u003ERegister \u0026amp; Connect Your ORCID iD\u003C\/strong\u003E\u003C\/a\u003E\u003C\/h5\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech is a university that receives more than $50 million in federally funded research per year; therefore, we are required by the\u0026nbsp;National Security Presidential Memorandum-33 (NSPM-33) to strengthen and standardize disclosure requirements for federally funded awards.The first step in protecting your research at Georgia Tech is to register and connect your ORCID iD with Georgia Tech.\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/protecting-your-research\u0022 target=\u0022_blank\u0022\u003ELearn more.\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"As a Georgia Tech researcher, you need to register with ORCID and connect it with Georgia Tech"}],"uid":"34760","created_gmt":"2022-11-08 13:11:52","changed_gmt":"2022-11-08 13:13:53","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-08T00:00:00-05:00","iso_date":"2022-11-08T00:00:00-05:00","tz":"America\/New_York"},"extras":[],"hg_media":{"636264":{"id":"636264","type":"image","title":"Tech Tower Square","body":null,"created":"1592317201","gmt_created":"2020-06-16 14:20:01","changed":"1592317201","gmt_changed":"2020-06-16 14:20:01","alt":"Tech Tower","file":{"fid":"242099","name":"Tech Tower Square.jpg","image_path":"\/sites\/default\/files\/images\/Tech%20Tower%20Square.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Tech%20Tower%20Square.jpg","mime":"image\/jpeg","size":332378,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Tech%20Tower%20Square.jpg?itok=n998syPb"}}},"media_ids":["636264"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}},"661711":{"#nid":"661711","#data":{"type":"news","title":"Ougazzaden and Collaborators Awarded ANR Grant for Optically Stimulated Cochlear Implants","body":[{"value":"\u003Cp\u003EFor individuals suffering from hearing loss, good news may be on the horizon thanks to cutting-edge optical technology. The \u003Ca href=\u0022https:\/\/anr.fr\/en\/\u0022\u003EFrench National Research Agency (ANR)\u003C\/a\u003E has awarded \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/abdallah-ougazzaden\u0022\u003EAbdallah Ougazzaden\u003C\/a\u003E, professor of \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003EElectrical and Computer Engineering\u003C\/a\u003E at Georgia Tech and president of \u003Ca href=\u0022https:\/\/lorraine.gatech.edu\/\u0022\u003EGeorgia Tech-Lorraine\u003C\/a\u003E, a \u0026euro;560,000 ($560,700) grant to develop technology for a new class of cochlear implants that may be able to restore hearing for patients.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe project aims to create optically stimulated, reduced-size, high-density cochlear implants with removable LEDs (CORTIORGAN). Project collaborators include Jean-Paul Salvestrini, director of the \u003Ca href=\u0022https:\/\/umi2958.gatech.edu\/\u0022\u003EGeorgia Tech-CNRS IRL 2958\u003C\/a\u003E lab and adjunct lecturer in the School of Electrical and Computer Engineering (ECE); Paul Voss, associate professor in ECE; and Suresh Sundaram, adjunct lecturer in ECE.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;CORTIORGAN is taking the technology for cochlear implants in a completely new direction through the optical stimulation of the cochlea with compact, dense, and highly flexible LED implants,\u0026rdquo; Ougazzaden said. \u0026ldquo;In particular, we will use a new semiconductor material \u0026ndash; a two-dimensional hexagonal boron nitride \u0026ndash; that brings about a radical rethinking of existing methods for processing inorganic LED devices.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe key technology is based on optogenetics, a groundbreaking biological technique that stimulates neurons and other cells with light. The technology has a range of medical and neuroscience applications, including sight recovery and blocking pain signals.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers will use optogenetic methods to achieve optical stimulation of auditory nerves rather than traditional electrical stimulation. Because tissue inside the cochlea has high electrical conductivity, optical stimulation of nerves can result in better spatial resolution and thus better implants.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECORTIORGAN\u0026rsquo;s goal is to develop removable ultra-thin LEDs that can be packaged in cochlear implants. The novel process allows the researchers to achieve size and flexibility requirements for cochlear implants that will be inserted into mouse cochlea and tested at the end of the project.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This innovation will have a strong positive impact on the hearing-impaired by offering them an optical implant with greater spatial resolution and higher sound reproduction fidelity in comparison to existing electrical stimulation technology,\u0026rdquo; Ougazzaden added. \u0026ldquo;This optical technology will open the door for future neuroscience applications with many opportunities for commercialization.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOther partners include \u003Ca href=\u0022https:\/\/www.pasteur.fr\/en\u0022\u003EInstitut Pasteur\u003C\/a\u003E, a renowned Paris-based center for biomedical research, and the \u003Ca href=\u0022https:\/\/www.c2n.universite-paris-saclay.fr\/en\/\u0022\u003ECenter for Nanosciences and Nanotechnologies (C2N)\u003C\/a\u003E, a collaboration between the University of Paris-Saclay and the French National Center for Scientific Research (CNRS).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWriter\u003C\/strong\u003E: Catherine Barzler\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The French National Research Agency has awarded a grant to Georgia Tech and Georgia Tech-Lorraine researchers to develop technology for a new class of cochlear implants."}],"uid":"36123","created_gmt":"2022-09-30 15:10:38","changed_gmt":"2022-11-07 20:34:54","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-30T00:00:00-04:00","iso_date":"2022-09-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661710":{"id":"661710","type":"image","title":"CORTIORGAN cochlear implant","body":null,"created":"1664550338","gmt_created":"2022-09-30 15:05:38","changed":"1664550338","gmt_changed":"2022-09-30 15:05:38","alt":"Schematic of CORTIORGAN flexible optical implant in cochlea","file":{"fid":"250643","name":"CORTIORGAN.jpg","image_path":"\/sites\/default\/files\/images\/CORTIORGAN.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/CORTIORGAN.jpg","mime":"image\/jpeg","size":364103,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/CORTIORGAN.jpg?itok=ETz6vdn1"}}},"media_ids":["661710"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71891","name":"Health and Medicine"},{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EAndrea Gappell, Communications Manager, Georgia Tech-Lorraine\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["catherine.barzler@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662812":{"#nid":"662812","#data":{"type":"news","title":"ECE Sweeps Nitride Semiconductors Workshop Student Awards","body":[{"value":"\u003Cp\u003ETwo Ph.D. candidates in the Georgia Tech School of Electrical and Computer Engineering (ECE) have won the top prizes at the 2022 International Workshop on Nitride Semiconductors (IWN).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EZachary Engel and Keisuke Motoki won the Best Oral Presentation Award and the Best Student Poster Award, respectively. Motoki and Engel were also co-authors on each other\u0026rsquo;s research papers. The researchers are part of ECE\u0026rsquo;s Advanced Semiconductor Technology Facility (ASTF) directed by Professor Alan Doolittle.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEngel\u0026rsquo;s research presents new semiconductor chemistries that allow for improved semiconductor quality as demonstrated by a record sheet charge and channel resistance in a next generation replacement for the current champion of power and RF transistors, AlGaN\/GaN (aluminum gallium nitride \/\u0026nbsp;gallium nitride)\u0026nbsp;transistors. This new device will allow 2.5 times higher current than present technologies. In principle, it can be integrated with ASTF\u0026rsquo;s\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/659945\/georgia-techs-new-aluminum-nitride-based-semiconductor-poised-transform-industry\u0022 target=\u0022_blank\u0022\u003Egroundbreaking aluminum nitride-based semiconductor\u003C\/a\u003E, which previous demonstrations have shown to be the largest voltage semiconductor ever created. Engel\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/662085\/engel-recognized-semiconductor-research-icmbe\u0022 target=\u0022_blank\u0022\u003Erecently won the Best Student Oral Prize\u003C\/a\u003Eat the 2022 International Conference on Molecular Beam Epitaxy (ICMBE) for the same research. The work is supported by the DARPA COFFEE program.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMotoki\u0026rsquo;s award-wining research investigates the high structural quality of AlGaN self-assembled superlattices grown by metal modulated epitaxy (MME), a low-temperature growth technique. The research is supported by the Office of Naval Research (ONR) Multidisciplinary University Research Initiatives (MURI) Program and the Air Force Office of Scientific Research (AFOSR). His broader Georgia Tech research focuses on structural characterizations and understanding the growth kinetics of III-nitride semiconductor materials \u0026mdash; like aluminum\u0026nbsp;nitride (AlN), GaN, indium\u0026nbsp;nitride\u0026nbsp;(InN), and their solid solutions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe IWN is the largest international conference focused on the latest advances in III-nitride materials, nanostructures, and devices. Growth, characterization, optical and electronic devices, novel materials and nanostructures are all topics covered during the workshop. The 2022 IWN was held October 9-14 in Berlin, Germany.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Zachary Engel and Keisuke Motoki won the Best Oral Presentation Award and the Best Student Poster Award, respectively."}],"uid":"36172","created_gmt":"2022-11-03 13:57:04","changed_gmt":"2022-11-03 13:57:04","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-11-03T00:00:00-04:00","iso_date":"2022-11-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"662800":{"id":"662800","type":"image","title":"ECE Ph.D. candidates Zachary Engel and Keisuke Motoki","body":null,"created":"1667412828","gmt_created":"2022-11-02 18:13:48","changed":"1667412828","gmt_changed":"2022-11-02 18:13:48","alt":"ECE Ph.D. candidates Zachary Engel and Keisuke Motoki","file":{"fid":"250963","name":"ECE Ph.D. candidates Zachary Engel and Keisuke Motoki.jpg","image_path":"\/sites\/default\/files\/images\/ECE%20Ph.D.%20candidates%20Zachary%20Engel%20and%20Keisuke%20Motoki.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/ECE%20Ph.D.%20candidates%20Zachary%20Engel%20and%20Keisuke%20Motoki.jpg","mime":"image\/jpeg","size":249402,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/ECE%20Ph.D.%20candidates%20Zachary%20Engel%20and%20Keisuke%20Motoki.jpg?itok=056eQS6A"}}},"media_ids":["662800"],"related_links":[{"url":"https:\/\/www.iwn2022.org","title":"International Workshop on Nitride Semiconductors (IWN)"},{"url":"https:\/\/alan.ece.gatech.edu\/ASTF\/Files%20for%20Upload\/index.htm","title":"Advanced Semiconductor Technology Facility"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191424","name":"Zachary Engel"},{"id":"191576","name":"Keisuke Motoki"},{"id":"13090","name":"Advanced Semiconductor Technology Facility"},{"id":"1159","name":"Alan Doolittle"},{"id":"191577","name":"International Workshop on Nitride Semiconductors (IWN)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662730":{"#nid":"662730","#data":{"type":"news","title":"Bakir to Serve as Interim Director of Packaging Research Center","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E has been named interim director of the Institute for Electronics and Nanotechnology\u0026rsquo;s \u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022\u003EPackaging Research Center\u003C\/a\u003E (PRC). Bakir will assume this role on December 1, 2022.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026quot;I am delighted that Professor Bakir has agreed to serve the campus community in this capacity,\u0026rdquo; said Michael Filler, IEN\u0026rsquo;s associate director for research programs. \u0026ldquo;His deep expertise in electronics packaging, proven leadership, and steady judgement will be an asset to PRC during this transition.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe PRC is a graduated National Science Foundation Engineering Research Center focusing on advanced packaging and system integration leading to System on Package technologies. The Center conducts research and education\u0026nbsp;in all aspects of electronics packaging that includes design, materials, process, assembly, thermal management, and integration driven by applications, which includes broad areas such as high-performance computing, artificial intelligence, automotive, broadband wireless, and space.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe PRC team consists of 29 faculty from five schools at Georgia Tech, 11 researchers and administrative staff, more than 50 graduate and undergraduate students, and several visiting engineers. This is enabled through collaboration with 48 industry and government organizations and 14 universities in North America, Europe, and Asia.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I look forward to collaborating with the campus community in this new capacity to continue Georgia Tech\u0026rsquo;s leadership and forward-looking research initiatives in the areas of advanced packaging, heterogeneous integration, and 3D architectures with our partners in the industry and government,\u0026rdquo; said Bakir.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBakir, who also serves as the Dan Fielder Professor in the \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E and leads the \u003Ca href=\u0022https:\/\/bakirlab.gatech.edu\/\u0022\u003EIntegrated 3D Systems Group\u003C\/a\u003E, brings a wealth of experience to his new role as PRC interim director. He and his research group have received more than thirty paper and presentation awards including six from the IEEE Electronic Components and Technology Conference, four from the IEEE International Interconnect Technology Conference, and one from the IEEE Custom Integrated Circuits Conference (CICC). His group was also awarded the 2014 and 2017 Best Papers of the IEEE Transactions on Components Packaging and Manufacturing Technology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBakir is the recipient of the 2013 Intel Early Career Faculty Honor Award, 2012 DARPA Young Faculty Award, 2011 IEEE CPMT Society Outstanding Young Engineer Award, and was an Invited Participant in the 2012 National Academy of Engineering Frontiers of Engineering Symposium. He is the co-recipient of the 2018 IEEE Electronics Packaging Society Exceptional Technical Achievement Award \u0026ldquo;for contributions to 2.5D and 3D IC heterogeneous integration, with a focus on interconnect technologies.\u0026rdquo; He is also the co-recipient of the 2018 McKnight Foundation Technological Innovations in Neuroscience Awards. In 2020, Bakir was the recipient of the Georgia Tech Outstanding Doctoral Thesis Advisor Award. \u0026nbsp;\u003Cbr \/\u003E\r\n\u0026nbsp;\u003Cbr \/\u003E\r\nBakir serves as a senior area editor for the \u003Cem\u003EIEEE Transactions on Components, Packaging and Manufacturing Technology\u003C\/em\u003E and was previously an Editor for \u003Cem\u003EIEEE Transactions on Electron Devices\u003C\/em\u003E. He has also served as a Distinguished Lecturer for IEEE EPS.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/prc.gatech.edu\/\u0022\u003ELearn more about PRC\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"He will assume this role on December 1, 2022."}],"uid":"34760","created_gmt":"2022-10-31 18:09:01","changed_gmt":"2022-10-31 18:09:01","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-31T00:00:00-04:00","iso_date":"2022-10-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"626131":{"id":"626131","type":"image","title":"Muhannad Bakir","body":null,"created":"1568386872","gmt_created":"2019-09-13 15:01:12","changed":"1568386872","gmt_changed":"2019-09-13 15:01:12","alt":"photograph of Muhannad Bakir","file":{"fid":"238370","name":"MuhannadBakir-cropped.jpg","image_path":"\/sites\/default\/files\/images\/MuhannadBakir-cropped.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MuhannadBakir-cropped.jpg","mime":"image\/jpeg","size":684989,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MuhannadBakir-cropped.jpg?itok=wo7f2Tl9"}}},"media_ids":["626131"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"189814","name":"go-researchevents"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"662285":{"#nid":"662285","#data":{"type":"news","title":"Datta Receives VLSI Technology and Circuits Test of Time Award","body":[{"value":"\u003Cp\u003ESuman Datta has received the Test of Time Award at the 2022 IEEE Symposium on VLSI Technology and Circuits. Datta is the Joseph M. Pettit Chair in Advanced Computing in the Georgia Tech School of Electrical and Computer Engineering (ECE) and a Georgia Research Alliance Eminent Scholar.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDatta, who holds a joint appointment with the School of Materials Science and Engineering, was honored this year along with his co-authors and former colleagues at Intel Corporation for his 2006 research, \u0026ldquo;\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/document\/1705211\u0022\u003ETri-Gate Transistor Architecture with High-k Gate Dielectrics, Metal Gates and Strain Engineering\u003C\/a\u003E.\u0026rdquo; True to its name, the Test of Time Award recognizes papers that have established their significance in history by standing the test of time. The goal of the award is to honor impactful papers and promote their recognition in the Symposia\u0026rsquo;s community.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs transistor gets smaller, it gets harder to switch off the transistor effectively. In response, Datta and his former Intel colleagues formulated the Tri-Gate transistor technology\u0026nbsp;that was first introduced commercially at the 22-nm technology node. The transistor architecture has scaled to the\u0026nbsp;5-nm node and remains the workhorse of all leading-edge logic technology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe research was the first experimental demonstration of high-performance NMOS and PMOS Tri-gate transistors in which the channel strain, high-k gate dielectric, gate electrode work functions, epitaxial source-drain regions were co-optimized together with the fin dimensions (width and height) and the fin shape (trapezoidal versus rectangular). The paper illustrated how to combine the electrostatic benefit of the fully-depleted nonplanar transistor structure with high-permittivity gate dielectric, work-function engineered metal gate electrodes and high- strain-engineered high-mobility channel to demonstrate high-performance CMOS transistors.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition to receiving the Test of Time Award at the symposium, Datta organized a short course on Monolithic and Heterogenous Integration and Advances in Application-Specific Computing Systems and Technologies. His research group presented three papers at the symposium on A Thousand State Superlattice Ferroelectric Field Effect Transistor Analog Weight Cell (with Professor Shimeng Yu); BEOL Compatible Ferroelectric Routers for Run-time Reconfigurable Compute-in-Memory Accelerators (with Professor Shimeng Yu) and Multi-bit per-cell 1T SiGe Floating Body RAM for Cache Memory in Cryogenic Computing (with Professor Arijit Raychowdhury).\u003C\/p\u003E\r\n\r\n\u003Cp\u003ENow in it\u0026rsquo;s 42nd year, the IEEE Symposium on VLSI Technology and Circuits is known as the microelectronics industry\u0026rsquo;s premiere international conference integrating technology, circuits, and systems. The 2022 symposium convened this year in Honolulu, Hawaii.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The Test of Time Award recognizes papers that have established their significance in history by standing the test of time. "}],"uid":"36172","created_gmt":"2022-10-18 20:26:15","changed_gmt":"2022-10-25 11:36:18","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-18T00:00:00-04:00","iso_date":"2022-10-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"655369":{"id":"655369","type":"image","title":"Suman Datta","body":null,"created":"1644510950","gmt_created":"2022-02-10 16:35:50","changed":"1644510950","gmt_changed":"2022-02-10 16:35:50","alt":"Suman Datta","file":{"fid":"248462","name":"Suman Datta.jpg","image_path":"\/sites\/default\/files\/images\/Suman%20Datta.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Suman%20Datta.jpg","mime":"image\/jpeg","size":660640,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Suman%20Datta.jpg?itok=NeLC56HG"}}},"media_ids":["655369"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/suman-datta","title":"Suman Datta"},{"url":"https:\/\/www.vlsisymposium.org","title":"IEEE Symposium on VLSI Technology and Circuits"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191062","name":"Suman Datta"},{"id":"191466","name":"IEEE Symposium on VLSI Technology and Circuits"},{"id":"191467","name":"tri-gate transistor"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662503":{"#nid":"662503","#data":{"type":"news","title":"Buggaveeti Recognized with 2022 Emerging Leader Award in Microelectronics Assembly and Packaging","body":[{"value":"\u003Cp\u003EThe International Microelectronics Assembly and Packaging Society (IMAPS) has recognized Sanketh Buggaveeti with the 2022 Emerging Leader Award. Buggaveeti is currently pursuing an online master\u0026rsquo;s degree in electrical and computer engineering (ECE) at Georgia Tech.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIMAPS\u0026nbsp;is the leading international society dedicated to the advancement and growth of microelectronics and electronics packaging technologies through professional education.\u0026nbsp;The IMAPS Emerging Leaders Award\u0026nbsp;recognizes the contributions made by emerging talent with three to eight years in the field and Society membership for a minimum of two years.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs a principal engineer at Infinera, Buggaveeti leads the design of cutting-edge photonic modules with industry leading levels of mechanical, electrical, thermal, and optical integration. He is an integral part of the optical systems design team that has received five \u0026ldquo;Most Innovative Product\u0026rdquo; industry awards, set over ten performance records, and supported some of the largest telecommunication networks around the world.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBuggaveeti\u0026rsquo;s Georgia Tech research focuses on heterogeneous integration and energy efficient microsystems. He has authored\/co-authored 20 journal and conference papers and currently contributes as a peer reviewer for seven international journals in the fields of microsystems, opto-mechanics, and systems engineering. He was recognized by the U.S. Government as an \u0026ldquo;Outstanding Researcher\u0026rdquo; in 2021 for his contributions in the field of \u0026ldquo;Packaging and Integration of Microsystems\u0026rdquo;.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBuggaveeti holds a Bachelor of Technology degree in mechanical engineering from Vellore Institute of Technology (India) and a master\u0026rsquo;s degree in mechanical engineering from the University of Michigan where he attended as a K.C. Mahindra Scholar and held a graduate research assistantship at the Micro System Technology and Sciences Lab.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Buggaveeti is currently pursuing an online master\u2019s degree in ECE."}],"uid":"36172","created_gmt":"2022-10-24 19:38:51","changed_gmt":"2022-10-25 11:35:45","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-24T00:00:00-04:00","iso_date":"2022-10-24T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"662502":{"id":"662502","type":"image","title":"Sanketh Buggaveeti is an online master\u2019s degree student in the Georgia Tech School of Electrical and Computer Engineering (ECE).","body":null,"created":"1666640131","gmt_created":"2022-10-24 19:35:31","changed":"1666640131","gmt_changed":"2022-10-24 19:35:31","alt":"Sanketh Buggaveeti is an online master\u2019s degree student in the Georgia Tech School of Electrical and Computer Engineering (ECE).","file":{"fid":"250876","name":"IMG-9490.jpg","image_path":"\/sites\/default\/files\/images\/IMG-9490.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/IMG-9490.jpg","mime":"image\/jpeg","size":516895,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/IMG-9490.jpg?itok=USP40ZLx"}}},"media_ids":["662502"],"related_links":[{"url":"https:\/\/www.imaps.org","title":"International Microelectronics Assembly and Packaging Society (IMAPS)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42901","name":"Community"},{"id":"42911","name":"Education"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191515","name":"Sanketh Buggaveeti"},{"id":"191516","name":"International Microelectronics Assembly and Packaging Society (IMAPS)"},{"id":"191517","name":"Infinera"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662301":{"#nid":"662301","#data":{"type":"news","title":"Blowin\u0027 in the Wind","body":[{"value":"\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Ch3\u003EAs music distribution technology shifted from analog vinyl records to digital compact discs (CDs) and then to streaming files, the sound quality took a substantial hit \u0026ndash; along with the monetary value of the musical consumer product.\u003C\/h3\u003E\r\n\r\n\u003Cp\u003ENow, as the vinyl format is enjoying a comeback, materials scientists at the Georgia Tech Research Institute (GTRI) have worked with a team of artists and recording engineers to boost the quality of analog music reproduction through a new surface coating that both improves sound quality and prevents wear. The patented technology led to the creation of a one-of-a-kind Bob Dylan record that recently brought $1.8 million at a \u003Cstrong\u003E\u003Ca href=\u0022https:\/\/www.christies.com\/features\/an-ionic-original-recording-of-blowin-in-the-wind-12353-3.aspx\u0022\u003EChristie\u0026rsquo;s auction\u003C\/a\u003E\u003C\/strong\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EA First for a New Generation of Discs\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EThe studio recording of Dylan\u0026rsquo;s 1963 classic \u0026ldquo;Blowin\u0026rsquo; in the Wind\u0026rdquo; is the first of a new generation of unique archival records with spectacular sound quality and the capacity for a thousand plays (or more) without deterioration. For musician and producer T Bone Burnett, the goal of the effort was to provide musical artists with a new medium \u0026ndash; and an opportunity to set the value of their work themselves.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Recording artists have had the value of what we do determined for us under the shorter and shorter-term technologies of mass production and distribution by organizations, governments, distributors, streamers, and others, but we have not had a way to find the value of an individual work of art,\u0026rdquo; said Burnett, a long-time Dylan collaborator who played guitar on the recording. \u0026ldquo;If we are able to help establish a music space in the fine arts through the making of these archival discs, musicians will be able to find real value for their work.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Ch2\u003ENanometer-Scale Coatings Improve Quality\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EThe new record format, which Burnett has dubbed an \u0026ldquo;Ionic Original,\u0026rdquo; was made possible by a unique coating of sapphire and quartz applied to a layer of nitrocellulose on an aluminum disc. The coating was developed with help from GTRI materials scientists Jud Ready and Brent Wagner.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We helped them develop a way to put a hard oxide coating on top of the nitrocellulose lacquer to protect it during play,\u0026rdquo; said Ready, a GTRI principal research engineer and deputy director of \u003Cstrong\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/materials\u0022\u003EGeorgia Tech\u0026rsquo;s Institute for Materials\u003C\/a\u003E\u003C\/strong\u003E. \u0026ldquo;That includes silica (SiO\u003Csub\u003E2\u003C\/sub\u003E), better known as quartz, and alumina (Al\u003Csub\u003E2\u003C\/sub\u003EO\u003Csub\u003E3\u003C\/sub\u003E), which is known as sapphire. With other ingredients and variables, it\u0026rsquo;s a gradient designed to produce the best sound quality and resist the wear that would otherwise happen to the nitrocellulose acetate.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EA hard coating is needed because the stylus \u0026ldquo;needle\u0026rdquo; used to play the record on a conventional turntable can be made of diamond, which is even harder than quartz or sapphire. Playing a traditional vinyl record causes abrasion in the much softer grooves where the music is stored, causing wear that degrades the sound quality over time and also creates annoying pops and noise \u0026ndash; issues that led to adoption of compact discs which are played with a non-contact optical reader.\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EThe Analog Advantage\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EBut digital formats \u0026ndash; CDs and streaming files \u0026ndash; provide listeners a digitally sampled version of the original analog sound rather than more fully reproducing what was created by the musicians. Though most consumers won\u0026rsquo;t notice, the difference can be heard \u0026ndash; which helps account for the renaissance of analog records.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Analog music travels in actual waves \u0026ndash; not sampled and simulated \u0026ndash; and sounds more resonant, deeper, and truer,\u0026rdquo; Burnett explained. \u0026ldquo;Analog records more atmosphere. It is closer to the human. An Ionic Original is the equivalent of a painting, hand-made and retouched by the artist. A digital stream is the equivalent of seeing a copy of a photograph of a painting.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003ESubjecting the Research to the Turntable Test\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EIn 2013, Ready and Wagner worked with Burnett and recording engineer Barak Moffitt to develop the coating technique, which was patented. The patent is now owned by Ionic Recording Company LLC, which bought it from Georgia Tech. Separate from the original work that led to the patent, Ready more recently worked as a private consultant with Ionic to support refining the new process and identifying a company that could coat the record.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The issues were in the thin film coatings \u0026ndash; the time, the density of the coating, the ratio between the two elements \u0026ndash; and the pre-cleaning process before the coating was put down,\u0026rdquo; Ready explained.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAhead of the quartz-sapphire coating process, production of the record proceeded much like any other analog record. Dylan recorded the song in 2021; it was mixed in Los Angeles and Nashville, and finally mastered in Memphis by Jeff Powell, one of the world\u0026rsquo;s top vinyl cutting experts.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;When an artist like Bob Dylan, a producer like T Bone Burnett and a recording engineer like Mike Piersante went into a project like this, they knew the desired result was a pristine vinyl master lacquer that would go through the Ionic coating process and sound as good or better than any vinyl record ever made even after 1,000 plays,\u0026rdquo; said Powell.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESeveral 10-inch-diameter discs were made and compared by Piersante, who graded them all on a scale of zero to 10. The best one was sent to Virginia-based Blue Ridge Optics for application of the thin-film coating. After that, the disc flew by private jet to California, where it was analyzed acoustically and presented to the media. Finally, it went on to London for the \u003Cstrong\u003E\u003Ca href=\u0022https:\/\/www.christies.com\/features\/an-ionic-original-recording-of-blowin-in-the-wind-12353-3.aspx\u0022\u003EChristie\u0026rsquo;s auction\u003C\/a\u003E\u003C\/strong\u003E.\u003C\/p\u003E\r\n\r\n\u003Ch2\u003EAn Eye-Opening Experience for a Materials Engineer\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EReady\u0026rsquo;s bread-and-butter research involves thin-film coatings, but this is his first foray into the entertainment industry.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We would normally put these down for optical coatings and to protect microelectronic devices,\u0026rdquo; Ready explained. \u0026ldquo;It\u0026rsquo;s a hundred nanometers or so of silica and alumina \u0026ndash; a nanometer is a billionth of a meter \u0026ndash; to create the scratch-resistant coating. At GTRI, we apply these coatings with a commercial-scale tool that is commonly used to put anti-reflective coatings on eyeglasses and on equipment used in space.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWorking as a consultant, Ready visited Burnett\u0026rsquo;s studio to compare the sound of the same song played from magnetic tape, vinyl, CD and finally, streaming files.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The amount of resolution that goes away is incredible,\u0026rdquo; he said. \u0026ldquo;Whole instruments disappear. You could hear the faintest of different sounds on the tape and vinyl \u0026ndash; but they were gone. There are ways that the CD recording is taking the sinusoidal analog waves and breaking them into lots of little rectangles. No matter how skinny you make the rectangle, you are always going to be losing some sound or adding noise.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Ch2\u003E\u0026ldquo;Blowin\u0026rsquo; in the Wind\u0026rdquo; Could Make New Waves\u003C\/h2\u003E\r\n\r\n\u003Cp\u003EThe 2021 Bob Dylan recording of \u0026ldquo;Blowin\u0026rsquo; in the Wind\u0026rdquo; was just the second ever to be made in the studio. Written by the artist in 1962 and released on \u003Cem\u003EThe Freewheelin\u0026rsquo; Bob Dylan\u003C\/em\u003E in 1963, it is a protest song that asks a series of questions about peace, war, and freedom. The song has been inducted into the Grammy Hall of Fame and, in 2004, was ranked 14th on \u003Cem\u003ERolling Stone\u003C\/em\u003E magazine\u0026#39;s list of the \u0026quot;500 Greatest Songs of All Time.\u0026quot;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhat\u0026rsquo;s next for the process? Burnett believes the technique may generate interest among music archivists who may want to store recordings protected from wear. He promises there will be more one-of-a-kind records, including \u0026ldquo;several\u0026rdquo; additional Dylan cuts.\u003C\/p\u003E\r\n\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cp\u003E\u0026ldquo;We are speaking with interested people about private sales, and with other artists about making further Ionic discs,\u0026rdquo; he said. \u0026ldquo;Perhaps there will be other auctions. We remain open to seeing where this path leads.\u0026rdquo;\u003C\/p\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cp\u003EWriter:\u0026nbsp;\u003Ca href=\u0022mailto:john.toon@gtri.gatech.edu\u0022\u003EJohn Toon\u003C\/a\u003E\u003Cbr \/\u003E\r\nGTRI Communications\u003Cbr \/\u003E\r\nGeorgia Tech Research Institute\u003Cbr \/\u003E\r\nAtlanta, Georgia USA\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Csub\u003E\u003Cstrong\u003EAbout GTRI\u003C\/strong\u003E: The Georgia Tech Research Institute (GTRI) is the nonprofit, applied research division of the Georgia Institute of Technology (Georgia Tech).\u202fFounded in 1934 as the Engineering Experiment Station, GTRI has grown to more than 2,800 employees, supporting eight laboratories in over 20 locations around the country and performing more than $700 million of problem-solving research annually for government and industry.\u202fGTRI\u0026#39;s renowned researchers combine science, engineering, economics, policy, and technical expertise to solve complex problems for the U.S. federal government, the state, and industry. For more information, please visit www.gtri.gatech.edu.\u003C\/sub\u003E\u003C\/p\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Materials scientists at GTRI have worked with a team of artists and recording engineers to boost the quality of analog music reproduction through a new surface coating. "}],"uid":"35832","created_gmt":"2022-10-19 00:42:45","changed_gmt":"2022-10-19 15:27:26","author":"Michelle Gowdy","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-18T00:00:00-04:00","iso_date":"2022-10-18T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"662300":{"id":"662300","type":"image","title":"Jud Ready, a GTRI principal research engineer","body":null,"created":"1666139901","gmt_created":"2022-10-19 00:38:21","changed":"1666139901","gmt_changed":"2022-10-19 00:38:21","alt":"","file":{"fid":"250833","name":"jud-ready-ionic-original-test.jpg","image_path":"\/sites\/default\/files\/images\/jud-ready-ionic-original-test.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/jud-ready-ionic-original-test.jpg","mime":"image\/jpeg","size":485544,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/jud-ready-ionic-original-test.jpg?itok=JJl_GFrv"}},"662299":{"id":"662299","type":"image","title":"GTRI researcher Jud Ready holding an acetate ","body":null,"created":"1666139811","gmt_created":"2022-10-19 00:36:51","changed":"1666139811","gmt_changed":"2022-10-19 00:36:51","alt":"","file":{"fid":"250832","name":"blowin-in-the-wind-jud-ready_0.jpg","image_path":"\/sites\/default\/files\/images\/blowin-in-the-wind-jud-ready_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/blowin-in-the-wind-jud-ready_0.jpg","mime":"image\/jpeg","size":696402,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/blowin-in-the-wind-jud-ready_0.jpg?itok=zyfBFxTr"}}},"media_ids":["662300","662299"],"groups":[{"id":"1276","name":"Georgia Tech Research Institute (GTRI)"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"135","name":"Research"},{"id":"143","name":"Digital Media and Entertainment"},{"id":"145","name":"Engineering"},{"id":"148","name":"Music and Music Technology"}],"keywords":[{"id":"14209","name":"Jud Ready"},{"id":"191486","name":"a GTRI principal research engineer"},{"id":"187433","name":"go-ien"},{"id":"186870","name":"go-imat"},{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39501","name":"People and Technology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E(Interim) Director of Communications\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMichelle Gowdy\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMichelle.Gowdy@gtri.gatech.edu\u003C\/p\u003E\r\n\r\n\u003Cp\u003E404-407-8060\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["michelle.gowdy@gtri.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662085":{"#nid":"662085","#data":{"type":"news","title":"Engel Recognized for Semiconductor Research at ICMBE","body":[{"value":"\u003Cp\u003EZachary\u0026nbsp;Engel has won the Best Student Oral Prize at the 2022 International Conference on Molecular Beam Epitaxy (ICMBE). Engel\u0026nbsp;is a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE) and is part of ECE\u0026rsquo;s Advanced Semiconductor Technology Facility (ASTF) directed by Professor Alan Doolittle.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EICMBE recognized Engel for the quality of his work and presentation excellence on \u0026quot;Demonstration of Sc0.2Al0.8N HEMT structures with a sheet resistance of 150 \u0026Omega;\/\u25a1 and a sheet charge of 5.9x1013 cm-2 with phase pure, metal rich growth.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe research presents new semiconductor chemistries that allow for improved semiconductor quality as demonstrated by a record sheet charge and channel resistance in a next generation replacement for the current champion of power and RF transistors, AlGaN\/GaN transistors. This new device will allow 2.5 times higher current than present technologies. In principle, it can be integrated with ASTF\u0026rsquo;s\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/659945\/georgia-techs-new-aluminum-nitride-based-semiconductor-poised-transform-industry\u0022\u003Egroundbreaking aluminum nitride-based semiconductor\u003C\/a\u003E, which previous demonstrations have shown to be the largest voltage semiconductor ever created.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThis year\u0026rsquo;s ICMBE was held in Sheffield, United Kingdom from September 4-9. The conference began in 1978 in Paris, France\u0026nbsp;and provides a prominent international forum for reporting new developments in the areas of fundamental and applied molecular beam epitaxy research, including advances in the technique, synthesis of new materials, discovery of new physical properties, formation of novel heterostructures, and the development of innovative devices.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The research presents new semiconductor chemistries that allow for improved semiconductor quality."}],"uid":"36172","created_gmt":"2022-10-13 15:41:21","changed_gmt":"2022-10-13 19:15:32","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-13T00:00:00-04:00","iso_date":"2022-10-13T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"662084":{"id":"662084","type":"image","title":"Zachary, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering","body":null,"created":"1665675479","gmt_created":"2022-10-13 15:37:59","changed":"1665675479","gmt_changed":"2022-10-13 15:37:59","alt":"Zachary, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering","file":{"fid":"250779","name":"Zachary Engel_graphic.jpg","image_path":"\/sites\/default\/files\/images\/Zachary%20Engel_graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Zachary%20Engel_graphic.jpg","mime":"image\/jpeg","size":395211,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Zachary%20Engel_graphic.jpg?itok=oNhM89c3"}}},"media_ids":["662084"],"related_links":[{"url":"https:\/\/iop.eventsair.com\/icmbe2022\/","title":"International Conference on Molecular Beam Epitaxy"},{"url":"https:\/\/alan.ece.gatech.edu","title":"Advanced Semiconductor Technology Facility"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191424","name":"Zachary Engel"},{"id":"191425","name":"International Conference on Molecular Beam Epitaxy"},{"id":"2435","name":"ECE"},{"id":"13090","name":"Advanced Semiconductor Technology Facility"},{"id":"1159","name":"Alan Doolittle"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"662053":{"#nid":"662053","#data":{"type":"news","title":"Early Alzheimer\u2019s Research Team Awarded $3.8M NIH Grant for Precision Robotics","body":[{"value":"\u003Cp\u003EBy 2050, more than 150 million people are projected to be living with dementia. Alzheimer\u0026rsquo;s disease, the most common form of dementia, makes up roughly 70% of all cases. Alzheimer\u0026rsquo;s causes progressive neurodegeneration \u0026ndash; a hallmark of the disease which is thought to initiate and track cognitive decline in those suffering with it. But while increasingly accurate biochemical markers are helping diagnose Alzheimer\u0026rsquo;s disease earlier, treatments to stall the disease in its early stages remain elusive.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn support of early-stage Alzheimer\u0026rsquo;s research, the National Institutes of Health (NIH) has awarded a $3.8M grant to an interdisciplinary research team from Georgia Tech and Emory University. Led by \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/forest\u0022\u003ECraig Forest\u003C\/a\u003E, professor of bioengineering at the \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003EWoodruff School of Mechanical Engineering\u003C\/a\u003E at Georgia Tech, and \u003Ca href=\u0022http:\/\/cellbio.emory.edu\/rowan\/\u0022\u003EMatt Rowan\u003C\/a\u003E, assistant professor of cell biology at the \u003Ca href=\u0022https:\/\/www.med.emory.edu\/\u0022\u003EEmory University School of Medicine\u003C\/a\u003E, the team will undertake a multiyear project to develop new precision robotics and use them to uncover the emergence of cellular and circuit dysfunction during the progression of Alzheimer\u0026rsquo;s. The team\u0026rsquo;s work could lead to novel molecular and cellular therapies that halt the disease.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We will robotically search across the brain, with unprecedented throughput, for the earliest electrical signals of the disease in order to understand how Alzheimer\u0026rsquo;s starts,\u0026rdquo; Forest said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ERecent research into early-stage Alzheimer\u0026rsquo;s indicates that changes start to happen in the brain even before classic biochemical markers begin to accumulate. The first changes seem to be circuit dysfunction due to altered circuit activity, but the cellular players in this process are unclear. Parvalbumin-expressing (PV) interneurons are special types of inhibitory neurons in the brain which seem especially prone to changes in their activity in models of early Alzheimer\u0026rsquo;s. According to the researchers\u0026rsquo; hypothesis, PV interneurons may contribute to early brain dysfunction and future neurodegeneration.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;While several investigations have looked at changes in neuronal activity in Alzheimer\u0026rsquo;s models, our approach represents the first to systematically evaluate the physiology of different neuron types, including PV interneurons, across several disease stages and different brain areas that are highly vulnerable\u0026nbsp;in early Alzheimer\u0026rsquo;s,\u0026rdquo; Rowan said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team will study whether PV interneurons develop dysfunction in vulnerable regions of the brain during early Alzheimer\u0026rsquo;s before progressing to other brain regions. To test their hypothesis, they will use \u003Ca href=\u0022https:\/\/licensing.research.gatech.edu\/technology\/patcherbotpharma-automated-intracellular-pharmacological-electrophysiology-robot\u0022\u003EPatcherBot\u003C\/a\u003E, an automated robotic platform that can produce electrophysiological recordings of thousands of individual neurons in the brain. By augmenting PatcherBot\u0026rsquo;s machine vision capability using florescence imaging, the researchers will be able to use the technology to specifically trace PV interneurons.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPostdoctoral fellow Viktor Olah and graduate students Mercedes Gonzalez and Annie Goettemoeller developed and perfected the biological, mechanical, and computational tools necessary for the team to hit the ground running, Forest said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFindings from the research project could yield wide-ranging advances, from significant progress in electrophysiology methods to biological implications related to the potential for understanding progressive dysfunction in early-stage Alzheimer\u0026rsquo;s disease.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The team will use the technology to uncover the emergence of cellular and circuit dysfunction during the progression of Alzheimer\u2019s."}],"uid":"36123","created_gmt":"2022-10-12 19:03:23","changed_gmt":"2022-10-12 21:53:16","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-12T00:00:00-04:00","iso_date":"2022-10-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"662052":{"id":"662052","type":"image","title":"Forest Rowan Alz","body":null,"created":"1665600095","gmt_created":"2022-10-12 18:41:35","changed":"1665602266","gmt_changed":"2022-10-12 19:17:46","alt":"A robotically controlled glass electrode enables single-cell electrical recordings in living brain tissue. Credit: Georgia Tech","file":{"fid":"250766","name":"Screen Shot 2022-10-12 at 2.37.38 PM.png","image_path":"\/sites\/default\/files\/images\/Screen%20Shot%202022-10-12%20at%202.37.38%20PM.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Screen%20Shot%202022-10-12%20at%202.37.38%20PM.png","mime":"image\/png","size":9155434,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Screen%20Shot%202022-10-12%20at%202.37.38%20PM.png?itok=LyhdD-A8"}},"662054":{"id":"662054","type":"image","title":"Craig Forest","body":null,"created":"1665601614","gmt_created":"2022-10-12 19:06:54","changed":"1665601614","gmt_changed":"2022-10-12 19:06:54","alt":"Craig Forest","file":{"fid":"250767","name":"forest 1.jpg","image_path":"\/sites\/default\/files\/images\/forest%201.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/forest%201.jpg","mime":"image\/jpeg","size":49619,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/forest%201.jpg?itok=B6HYPTi7"}},"662057":{"id":"662057","type":"image","title":"Matt Rowan 2","body":null,"created":"1665602029","gmt_created":"2022-10-12 19:13:49","changed":"1665602029","gmt_changed":"2022-10-12 19:13:49","alt":"Matt Rowan","file":{"fid":"250771","name":"Rowan2.jpg","image_path":"\/sites\/default\/files\/images\/Rowan2.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Rowan2.jpg","mime":"image\/jpeg","size":293952,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Rowan2.jpg?itok=J9bhKggq"}}},"media_ids":["662052","662054","662057"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39521","name":"Robotics"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:catherine.barzler@gatech.edu\u0022\u003ECatherine Barzler\u003C\/a\u003E\u003Cbr \/\u003E\r\nSenior Research Writer\/Editor\u003Cbr \/\u003E\r\nInstitute Communications\u003Cbr \/\u003E\r\n\u0026nbsp;\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"661912":{"#nid":"661912","#data":{"type":"news","title":"ECE Students Place First, Second in Premier Microelectronics Undergraduate Research Competition","body":[{"value":"\u003Cp\u003ECynthia Wang and Tyler Lizzo placed first and second respectively in the Joint University Microelectronics Program (JUMP)\u0026nbsp;Undergraduate Research Initiative\u0026nbsp;(URI) Poster Competition at Semiconductor Research Corporation (SRC)\u0026nbsp;TECHCON 2022.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWang and Lizzo\u0026rsquo;s winning research projects are part of the Opportunity Research Scholars\u0026rsquo; (ORS) program in the Georgia Tech School of Electrical and Computer Engineering (ECE). Through ORS, ECE undergraduate students work on a research project for two-consecutive semesters supervised by a\u0026nbsp;Ph.D.\u0026nbsp;mentor and faculty advisor.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWang, a computer engineering major, received top overall recognition for her research project, \u0026ldquo;Peak Finding Algorithm for Real-Time mmWave FMCW Radar and mmID Tag Tracking Systems.\u0026rdquo; The project\u0026rsquo;s faculty advisor was Emmanouil\u0026nbsp;Tentzeris, and the Ph.D. mentor was Charles A. Lynch III.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWang\u0026rsquo;s research interests include computer architecture and systems software. She was part of the ATHENA lab research group led by Tentzeris during the 2021-22 academic year where her research focused on a 60-GHz mmWave FMCW radar reader and backscattering tag system for high fidelity real-time tracking. In addition to her research, Wang has interned at Google and more recently joined NVIDIA as an architect intern, working on performance analysis for functional models of GPU architectures.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;TECHCON\u0026nbsp;was truly a great experience,\u0026rdquo; said Wang. \u0026ldquo;Not only did I learn from and meet a bunch of accomplished researchers in semiconductors and microelectronics, but I also had the opportunity to form connections with industry leaders.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELizzo graduated with a computer engineering bachelor\u0026rsquo;s degree in Spring 2022 and is a current master\u0026rsquo;s student in ECE. He was an ORS scholar for the last two years of his undergraduate career, culminating in first and second place finishes in the TECHCON Undergraduate Research Competition\u0026nbsp;in 2021 and 2022, respectively.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis award-wining 2022 project, \u0026ldquo;LSTM-based Model Predictive Control For Heat Dissipation of IMDs,\u0026rdquo; proposes using machine learning and control techniques to dynamically manage the power consumption of Implantable Medical Devices (IMDs). The project\u0026rsquo;s faculty advisor was ECE Professor Ying Zhang, and the Ph.D. mentor was Ay\u0026ccedil;a Ermi\u015f.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELizzo\u0026rsquo;s research focused on Long Short-Term Memory (LSTM) architectures, a type of neural network that is incredibly efficient for long-term relationships. One important research direction was the implementation of online\/real-time learning, which allows the machine learning model to continue to update as data is being processed, integral for a system as complex and dynamic as the human body. Integration of online learning led to a 41.6% improvement in error performance.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;TECHCON\u0026nbsp;was a wonderful experience,\u0026rdquo; said Lizzo. \u0026ldquo;It was truly amazing to see all the wonderful research that fellow undergraduate students were undertaking.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETECHCON 2022 was held September 18-20, 2022 in Austin, Texas. Each year, SRC brings industry leaders and university researchers highly involved in microelectronics research together at TECHCON to support advancements in the semiconductor industry. Student presenters enjoy multiple formal and informal occasions to network with SRC member companies, opening the door to internship and job opportunities.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Wang and Lizzo\u2019s winning research projects are part of the Opportunity Research Scholars\u2019 (ORS) program in ECE. "}],"uid":"36172","created_gmt":"2022-10-07 12:23:35","changed_gmt":"2022-10-07 12:23:35","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-07T00:00:00-04:00","iso_date":"2022-10-07T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661911":{"id":"661911","type":"image","title":"Cynthia Wang and Tyler Lizzo at TECHCON 2022","body":null,"created":"1665145179","gmt_created":"2022-10-07 12:19:39","changed":"1665145179","gmt_changed":"2022-10-07 12:19:39","alt":"","file":{"fid":"250722","name":"TechCon_2022_Cynthia Wang and Tyler Lizzo.png","image_path":"\/sites\/default\/files\/images\/TechCon_2022_Cynthia%20Wang%20and%20Tyler%20Lizzo.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/TechCon_2022_Cynthia%20Wang%20and%20Tyler%20Lizzo.png","mime":"image\/png","size":2350738,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/TechCon_2022_Cynthia%20Wang%20and%20Tyler%20Lizzo.png?itok=q_PJ2szU"}}},"media_ids":["661911"],"related_links":[{"url":"https:\/\/www.src.org\/program\/jump\/","title":"Joint University Microelectronics Program (JUMP)"},{"url":"https:\/\/www.src.org\/program\/jump\/jump-uri\/","title":"JUMP Undergraduate Research Initiative (URI)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"}],"keywords":[{"id":"191394","name":"Cynthia Wang"},{"id":"191395","name":"Tyler Lizzo"},{"id":"191396","name":"Joint University Microelectronics Program (JUMP)"},{"id":"191397","name":"Undergraduate Research Initiative (URI)"},{"id":"191398","name":"TECHCON 2022"},{"id":"190597","name":"Emmanouil Tentzeris"},{"id":"191399","name":"Charles A. Lynch III"},{"id":"167025","name":"ATHENA Lab"},{"id":"33141","name":"Ying Zhang"},{"id":"191400","name":"Ay\u00e7a Ermi\u015f"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661583":{"#nid":"661583","#data":{"type":"news","title":"Partnership with DOD\u2019s Microelectronics Workforce Development Program Continues, Expands ","body":[{"value":"\u003Cp\u003EThe Scalable Asymmetric Lifecycle En\u0026shy;gage\u0026shy;ment Microelectronics Work\u0026shy;force Development program (SCALE)\u0026nbsp;has announced the program will extend another five years and expand with $10.8 million additional Department of Defense (DoD) funding, with a ceiling of $99 million.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESCALE officials said this expansion of the nation\u0026rsquo;s preeminent program will further its goal to develop a next-generation workforce that can return the United States to prominence in global microelectronics manufacturing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech participates in the partnership, which is led by Purdue University and managed by NSWC Crane. SCALE facilitates the training of highly skilled U.S. microelectronics engineers, hardware designers and manufacturing experts. SCALE brings together a public-private-academic partnership of 17 universities and 34 partners within the defense industry and government.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This is an extremely exciting time in the country and at Tech for microchip design and manufacturing,\u0026rdquo; said Arijit Raychowdhury, the Steve W. Chaddick School Chair of Tech\u0026rsquo;s School of Electrical and Computer Engineering (ECE). \u0026ldquo;These newly announced funds for the SCALE program will help Georgia Tech recruit a new, diverse group of students ready to work in defense microelectronics. We\u0026rsquo;re thrilled to be a SCALE partner university and honored to be leading many of the project\u0026rsquo;s specialty areas.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESCALE\u0026nbsp;provides\u0026nbsp;unique courses, mentoring, internship matching and targeted research projects\u0026nbsp;for college students interested in\u0026nbsp;five microelectronics specialty areas. Georgia Tech ECE faculty members will be the primary investigators for three of the areas:\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003Esystem on a chip will be led by\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/arijit-raychowdhury\u0022\u003ERaychowdhury\u003C\/a\u003E;\u003C\/li\u003E\r\n\t\u003Cli\u003Eradiation-hardening will be led by\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/john-d-cressler\u0022\u003EJohn Cressler\u003C\/a\u003E;\u003C\/li\u003E\r\n\t\u003Cli\u003Eand heterogeneous integration\/advanced packaging will be led by\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/madhavan-swaminathan\u0022\u003EMadhavan Swaminathan\u003C\/a\u003E.\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003EThe other two focus areas are embedded system security\/trusted AI and supply chain awareness.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIndustry and government partners regularly meet and update a list of knowledge, skills, and abilities important for new entrants to the workforce. The SCALE universities then update their curriculum to ensure the students are prepared for upcoming needs in the rapidly advancing microelectronics field.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPeter Bermel, SCALE director and the Elmore Associate Professor of Electrical and Computer Engineering at Purdue, said the United States will need 50,000 trained semiconductor engineers to meet overwhelming and rapidly growing demand.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The United States is committed to expanding and strengthening its semiconductor industry and workforce rapidly over the next five years,\u0026rdquo; Bermel said. \u0026ldquo;SCALE takes a holistic approach to the microelectronics workforce gap by comprehensively addressing system challenges for workforce training and recruiting.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGoals for the next five years include:\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003EExpanding student participation in SCALE fivefold to more than 1,000.\u003C\/li\u003E\r\n\t\u003Cli\u003EDeveloping learning models for K-12 classrooms.\u003C\/li\u003E\r\n\t\u003Cli\u003ECollaborating with community colleges nationwide to develop microelectronics classes.\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003EThe demand for microelectronics increased by 26.2% in 2021. But while the United States consumes about half of the chips produced worldwide, the country only manufactures about 12%, highlighting the pressing need for the U.S. to strengthen\u0026nbsp;its domestic semiconductor supply chains and increase industrial capacity.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe funding announcement is the latest highlight in Georgia Tech\u0026rsquo;s leadership role in bolstering microelectronics and workforce development. Tech\u0026rsquo;s large engineering and science faculty bring a broad set of research expertise to strengthen the country\u0026rsquo;s semiconductor capacity. The Institute is\u0026nbsp;\u003Ca href=\u0022https:\/\/research.gatech.edu\/microelectronics-momentum-drives-nations-semiconductor-resurgence?fbclid=IwAR2BY9KRX_nKRuNmm8PMQ-HkX6jSaObEpY_0j_tPD3Yn33kle6SM2owXlZI\u0022\u003Euniquely positioned\u003C\/a\u003E\u0026nbsp;to train the microelectronics workforce, drive future microelectronics advances, and provide fabrication and packaging facilities for industry, academic and government partners to develop and test new solutions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E###\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Georgia Institute of Technology, or Georgia Tech, is a top 10 public research university developing leaders who advance technology and improve the human condition. The Institute offers business, computing, design, engineering, liberal arts, and sciences degrees. Its nearly 44,000 students, representing 50 states and 149 countries, study at the main campus in Atlanta, at campuses in France and China, and through distance and online learning. As a leading technological university, Georgia Tech is an engine of economic development for Georgia, the Southeast, and the nation, conducting more than $1 billion in research annually for government, industry, and society.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The nearly $11M, five-year extension of the SCALE program aims to restore global lead through education initiatives."}],"uid":"36172","created_gmt":"2022-09-27 20:14:05","changed_gmt":"2022-10-05 12:44:04","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-27T00:00:00-04:00","iso_date":"2022-09-27T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661582":{"id":"661582","type":"image","title":"The Scalable Asymmetric Lifecycle En\u00acgage\u00acment Microelectronics Work\u00acforce Development program (SCALE) graphic ","body":null,"created":"1664309453","gmt_created":"2022-09-27 20:10:53","changed":"1664309453","gmt_changed":"2022-09-27 20:10:53","alt":"The nearly $11M, five-year extension of the SCALE program aims to restore global lead through education initiatives.","file":{"fid":"250604","name":"SCALEannouncement_GA TECH.jpg","image_path":"\/sites\/default\/files\/images\/SCALEannouncement_GA%20TECH.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/SCALEannouncement_GA%20TECH.jpg","mime":"image\/jpeg","size":384578,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/SCALEannouncement_GA%20TECH.jpg?itok=T4-zp_yM"}}},"media_ids":["661582"],"related_links":[{"url":"https:\/\/research.purdue.edu\/scale\/index.php","title":"Scalable Asymmetric Lifecycle Engagement Microelectronics Workforce Development program (SCALE)"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/arijit-raychowdhury","title":"Arijit Raychowdhury"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/john-d-cressler","title":"John Cressler"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/madhavan-swaminathan","title":"Madhavan Swaminathan"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42901","name":"Community"},{"id":"42911","name":"Education"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191338","name":"Scalable Asymmetric Lifecycle En\u00acgage\u00acment Microelectronics Workforce Development program (SCALE)"},{"id":"139771","name":"Arijit Raychowdhury"},{"id":"191336","name":"John Cressler; Madhavan Swaminathan"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39531","name":"Energy and Sustainable Infrastructure"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661839":{"#nid":"661839","#data":{"type":"news","title":"Kwong using NIH Director\u0027s Pioneer Award to Develop Living Biosensors","body":[{"value":"\u003Cp\u003ESome cancers have a long and deadly memory. Years or decades after the disease has been beaten into remission, cancer cells that weren\u0026rsquo;t killed by initial treatment may be lying dormant at metastatic sites, like the bone marrow, until they reawaken with malignant intent.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/faculty\/Gabe-A.-Kwong\u0022\u003EGabe Kwong\u003C\/a\u003E\u0026nbsp;wants to build living sentinels to detect those dormant and potentially deadly disseminated tumor cells (DTCs) before the cancer can recur. It\u0026rsquo;s an ambitious and groundbreaking idea from a researcher whose lab has developed a reputation for innovative work, and it\u0026rsquo;s earned Kwong a\u0026nbsp;\u003Ca href=\u0022https:\/\/commonfund.nih.gov\/pioneer\/AwardRecipients\u0022\u003E2022 Director\u0026rsquo;s Pioneer Award\u003C\/a\u003E\u0026nbsp;from the National Institutes of Health (NIH).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I\u0026rsquo;m extremely humbled, and grateful for what this means for the lab,\u0026rdquo; said Kwong, associate professor in the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University. \u0026ldquo;This is a peer-reviewed honor, and it tells us that the field recognizes that our work over the past 10 years has been impactful and worth investing in.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/commonfund.nih.gov\/pioneer\u0022\u003EThe Pioneer Awards\u003C\/a\u003E\u0026nbsp;support highly creative researchers with potentially transformative ideas. The largest grant in the NIH\u0026rsquo;s\u0026nbsp;\u003Ca href=\u0022https:\/\/commonfund.nih.gov\/highrisk\u0022\u003EHigh-Risk, High-Reward\u003C\/a\u003E\u0026nbsp;Research program, the award will provide Kwong $5.5 million over the next five years. This is the first time a Georgia Tech or Emory research has received funding through the program. And it\u0026rsquo;s Kwong\u0026rsquo;s second high-risk project funded: He won the NIH Director\u0026rsquo;s New Innovator Award for early career scientists in 2016.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAccording to the NIH, proposed pioneering work must be high-impact and \u0026ldquo;reflect ideas that are substantially different\u0026rdquo; from the researcher\u0026rsquo;s current program.\u0026nbsp;\u003Ca href=\u0022https:\/\/lsi.gatech.edu\/\u0022\u003E\u0026nbsp;Kwong\u0026rsquo;s lab\u003C\/a\u003E\u0026nbsp;has been focused on engineering\u0026nbsp;\u003Cem\u003Esynthetic\u003C\/em\u003E\u0026nbsp;sensors until now. With this project, he\u0026rsquo;s shifting to reengineering living\u003Cem\u003E\u0026nbsp;\u003C\/em\u003Ecells.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;For years, we\u0026rsquo;ve been designing ultra-sensitive sensors to detect cancer or the response to immunotherapy drugs. They function as sentinels and report on sites of disease by producing a signal that can be detected from a biofluid such as urine,\u0026rdquo; he said. \u0026ldquo;They\u0026rsquo;ve been inorganic probes that don\u0026rsquo;t have a memory or know how to think. Our goal is to develop a living sensor \u0026mdash; immune cells that can traffic through the body and act as a long-lived pool of sentinels.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKwong is driven by the potential threat of cancer dormancy. Many cells leave the primary tumor and enter the body\u0026rsquo;s circulation. Called circulation tumor cells, or CTCs, they are typically short-lived and don\u0026rsquo;t lead to metastasis. Sometimes, however, a few of these cells may find their way to a distant organ and hide there, despite seemingly successful cancer treatment. These cells can wait for years, or even decades, before reawakening. So, patients with no evidence of disease could harbor dormant cancer and remain at risk of metastatic relapse for the rest of their lives.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Currently, there is no good way to monitor these dormant cells or their reawakening,\u0026rdquo; Kwong said. \u0026ldquo;But we are living in an entirely new era of medicine and cancer immunotherapy where we can design T cells as living medicines. We see this as an opportunity to not only build a future where immune cells are engineered as therapies, but also as living sensors.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe idea is to use the same T cells that are grafted into a patient as cancer-fighters as lifelong sensors that are continuously on the lookout for future disease. If Kwong and his team are successful, he said the technological breakthroughs could lead to new about how and when dormant cells reawaken.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Once we figure out how to engineer these cells, we\u0026rsquo;ll likely transition to a phase where we\u0026rsquo;re talking more about earlier detection and preventative medicine,\u0026rdquo; he said. \u0026ldquo;Our new drugs are already working much, much better than before. Imagine if we can keep the cancer from coming back for years and years and intervene at the earliest stages of recurrence. That\u0026rsquo;s the high reward.\u0026rdquo;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EGeorgia Tech researcher plans to engineer immune cells to become lifelong cancer sentinels\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Georgia Tech researcher plans to engineer immune cells to become lifelong cancer sentinels"}],"uid":"28153","created_gmt":"2022-10-05 12:35:29","changed_gmt":"2022-10-05 12:41:44","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-10-05T00:00:00-04:00","iso_date":"2022-10-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661838":{"id":"661838","type":"image","title":"Gabe Kwong","body":null,"created":"1664973124","gmt_created":"2022-10-05 12:32:04","changed":"1664973124","gmt_changed":"2022-10-05 12:32:04","alt":"","file":{"fid":"250696","name":"Gabe horiz.jpg","image_path":"\/sites\/default\/files\/images\/Gabe%20horiz.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Gabe%20horiz.jpg","mime":"image\/jpeg","size":2413420,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Gabe%20horiz.jpg?itok=0kxPvTe4"}}},"media_ids":["661838"],"groups":[{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"}],"categories":[],"keywords":[{"id":"280","name":"Cancer research"},{"id":"187423","name":"go-bio"},{"id":"10454","name":"biosensors"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":["jerry.grillo@ibb.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661695":{"#nid":"661695","#data":{"type":"news","title":"Wang Selected for Prominent Taiwanese Research Scholarship","body":[{"value":"\u003Cp\u003EWeichun (Johnson) Wang has been selected for the 2022 Taiwan Government Scholarship to Study Abroad (GSSA). Wang is a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE). He is a member of the Gigascale Reliable Energy-Efficient Nanosystem (GREEN) Lab and is advised Saibal Mukhopadhyay, a Joseph M. Pettit Professor in ECE.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe scholarship is in recognition of Wang\u0026rsquo;s research, \u0026ldquo;A 28nm High Frequency 8T SRAM Computation-In-Memory Macro for Machine Learning.\u0026rdquo; His research explores computing architectures and circuit designs that can implement complex dynamics and solve computationally challenging problems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe GSSA is a prestigious research award for Ph.D. students of Taiwanese origin and aims to support international studies. This highly competitive award is given to only 14 students each year. The award considers several factors, including innovation in research work, milestones, publications, transcripts, institution ranking, and recommendation letters.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The GSSA is a prestigious research award for Ph.D. students of Taiwanese origin and aims to support international studies. "}],"uid":"36172","created_gmt":"2022-09-30 12:52:29","changed_gmt":"2022-09-30 13:01:23","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-30T00:00:00-04:00","iso_date":"2022-09-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661696":{"id":"661696","type":"image","title":"ECE Ph.D. Candidate Weichun Wang ","body":null,"created":"1664542866","gmt_created":"2022-09-30 13:01:06","changed":"1664542866","gmt_changed":"2022-09-30 13:01:06","alt":"ECE Ph.D. Candidate Weichun Wang\u00a0","file":{"fid":"250639","name":"Photo B_Weichun (Johnson) Wang.png","image_path":"\/sites\/default\/files\/images\/Photo%20B_Weichun%20%28Johnson%29%20Wang.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Photo%20B_Weichun%20%28Johnson%29%20Wang.png","mime":"image\/png","size":5337176,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Photo%20B_Weichun%20%28Johnson%29%20Wang.png?itok=Q_LImQNN"}}},"media_ids":["661696"],"related_links":[{"url":"https:\/\/greenlab.ece.gatech.edu","title":"Gigascale Reliable Energy-Efficient Nanosystem (GREEN) Lab"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"153","name":"Computer Science\/Information Technology and Security"},{"id":"144","name":"Energy"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191355","name":"Weichun Wang"},{"id":"183927","name":"Gigascale Reliable Energy-Efficient Nanosystem (GREEN) Lab"},{"id":"166900","name":"Saibal Mukhopadhyay"},{"id":"181436","name":"Taiwan Government Scholarship to Study Abroad"},{"id":"9167","name":"machine learning"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661473":{"#nid":"661473","#data":{"type":"news","title":"Zandehshahvar Awarded SPIE Optics and Photonics Education Scholarship","body":[{"value":"\u003Cp\u003EMohammadreza\u0026nbsp;(Reza) Zandehshahvar has been awarded\u0026nbsp;a 2022 Optics and Photonics Education Scholarship by SPIE, the international society for optics and photonics, in recognition of his research on machine learning for inverse design and knowledge discovery in nanophotonics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EReza is a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE).\u0026nbsp;He has\u0026nbsp;been a member of ECE\u0026rsquo;s Photonics Research Group, directed by Ali Adibi, the Professor and Joseph M. Pettit Chair in Electronics and Nanophotonics, since 2018.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis current research focuses on developing unsupervised learning models for knowledge discovery in nanophotonics. Other research interests include medical image processing, active learning, and metric learning.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAccording to SPIE, the key criterion in evaluating and ranking applications for the scholarship is the \u0026quot;prospect for long-term contribution that the granting of an award will make to the field of optics, photonics or related field.\u0026quot; This year SPIE has award $293,000 in education scholarships to 78 outstanding SPIE Student Members, based on their potential contribution to optics and photonics, or a related discipline. Award-winning applicants were evaluated, selected, and approved by the SPIE Scholarship Committee. Through 2021, SPIE has distributed over $6 million in individual scholarships.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEarlier this year, Zandehshahvar was awarded the ECE Faculty Award at the School\u0026rsquo;s annual Roger P. Webb Awards Program. The award is given annually to the electrical or computer engineering student who, in the opinion of the ECE faculty, has done the most to improve the educational environment within ECE or Georgia Tech, and has contributed significantly to both student welfare and student-faculty interactions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditionally, he received the 2022 VIP Outstanding Mentor Award for mentoring students on the projects related to machine learning for inverse design in nanophotonics and medical image processing for diagnosis and prognosis of lung diseases. Georgia Tech\u0026rsquo;s Vertically Integrated Projects (VIP) program is a transformative approach to enhancing higher education by engaging undergraduate and graduate students in ambitious, long-term, large-scale, multidisciplinary project teams that are led by faculty.\u0026nbsp;Reza is the lead mentor on the AI-based Discovery and Innovation VIP team since 2019.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"In recognition of the Ph.D. candidate\u0027s research on machine learning for inverse design and knowledge discovery in nanophotonics."}],"uid":"36172","created_gmt":"2022-09-22 20:53:39","changed_gmt":"2022-09-22 20:53:39","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-22T00:00:00-04:00","iso_date":"2022-09-22T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661472":{"id":"661472","type":"image","title":"ECE Ph.D student Mohammadreza (Reza) Zandehshahvar","body":null,"created":"1663879760","gmt_created":"2022-09-22 20:49:20","changed":"1663879760","gmt_changed":"2022-09-22 20:49:20","alt":"ECE Ph.D student Mohammadreza (Reza) Zandehshahvar","file":{"fid":"250546","name":"ECE Ph.D student Mohammadreza (Reza) Zandehshahvar.JPG","image_path":"\/sites\/default\/files\/images\/ECE%20Ph.D%20student%20Mohammadreza%20%28Reza%29%20Zandehshahvar.JPG","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/ECE%20Ph.D%20student%20Mohammadreza%20%28Reza%29%20Zandehshahvar.JPG","mime":"image\/jpeg","size":423475,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/ECE%20Ph.D%20student%20Mohammadreza%20%28Reza%29%20Zandehshahvar.JPG?itok=bPhpA4sj"}}},"media_ids":["661472"],"related_links":[{"url":"https:\/\/sites.gatech.edu\/ece-prg\/","title":"Photonics Research Group"},{"url":"https:\/\/spie.org","title":"SPIE, the international society for optics and photonics"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42911","name":"Education"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"191326","name":"Mohammadreza (Reza) Zandehshahvar"},{"id":"2769","name":"Ali Adibi"},{"id":"168404","name":"nanophotonics"},{"id":"83301","name":"Photonics Research Group"},{"id":"191327","name":"Optics and Photonics Education Scholarship"},{"id":"167910","name":"SPIE"},{"id":"191328","name":"the international society for optics and photonics"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661384":{"#nid":"661384","#data":{"type":"news","title":" Microchip Can Electronically Detect Covid Antibodies in Just a Drop of Blood","body":[{"value":"\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cdiv\u003E\r\n\u003Cp\u003EA single drop of blood from a finger prick. A simple electronic chip. And a smartphone readout of test results that could diagnose a Covid-19 infections or others like HIV or Lyme disease.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIt sounds a bit like science fiction, like the beginnings of the medical tricorder used by doctors on Star Trek. Yet researchers at Georgia Tech and Emory University have taken the first step to showing it can be done, and they\u0026rsquo;ve \u003Ca href=\u0022https:\/\/doi.org\/10.1002\/smll.202203309\u0022\u003Epublished their results in the journal \u003Cem\u003ESmall\u003C\/em\u003E\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPostdoctoral fellow Neda Rafat and Assistant Professor \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/faculty\/Aniruddh%20-Sarkar\u0022\u003EAniruddh Sarkar\u003C\/a\u003E created a small chip that harnesses the fundamental chemistry of the gold-standard lab method but uses electrical conductivity instead of optics to detect antibodies and indicate infection.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;At the heart of many diagnostics, something binds to something, and a signal is produced. That\u0026#39;s where the optics interact and generate a light signal,\u0026rdquo; said Sarkar, a faculty member in the \u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/\u0022\u003EWallace H. Coulter Department of Biomedical Engineering\u003C\/a\u003E at Georgia Tech and Emory. \u0026ldquo;What Neda has done is figured out a way of making that binding event happen between a patient sample and something from the sensor itself, so that signal will be directly electronic.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe \u0026ldquo;something\u0026rdquo; Rafat is using is silver, an electrically conductive metal. Her approach creates small silver deposits in tiny wells of the microchip, completing an electrical circuit that can be measured with a simple multimeter.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe technique is a new approach to diagnostics like the rapid antigen tests that have become so familiar during the Covid pandemic, but the team\u0026rsquo;s tests do much more. \u003Ca href=\u0022http:\/\/www.micronanobio.org\/\u0022\u003ERafat, Sarkar, and their team of researchers\u003C\/a\u003E created multiplex chips, which means they can detect multiple different kinds of antibodies. That allows one chip to potentially screen for multiple infections from just a single drop of blood. The team also can quantify the level of antibodies in the blood based on how much silver ends up on the chip.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2022\/09\/microchip-can-electronically-detect-covid-antibodies-just-drop-blood\u0022\u003E\u003Cstrong\u003ERead the full story on the College of Engineering website.\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n\u003C\/div\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":[{"value":"\u003Cp\u003EThe approach is simple, cheap, and even can quantify antibody levels in the body\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"  The approach is simple, cheap, and even can quantify antibody levels in the body"}],"uid":"27446","created_gmt":"2022-09-21 15:29:20","changed_gmt":"2022-09-22 18:05:26","author":"Joshua Stewart","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-21T00:00:00-04:00","iso_date":"2022-09-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661382":{"id":"661382","type":"image","title":"Covid Test Microchip","body":null,"created":"1663773975","gmt_created":"2022-09-21 15:26:15","changed":"1663773975","gmt_changed":"2022-09-21 15:26:15","alt":"A custom microchip that detects Covid-19 infection electronically and can differentiate between vaccine-induced antibodies and those created as a result of a coronavirus infection. (Photo: Candler Hobbs)","file":{"fid":"250528","name":"Sarkar-Electronic-Covid-Test-Chip-by-Candler-Hobbs-2706-2-h.jpg","image_path":"\/sites\/default\/files\/images\/Sarkar-Electronic-Covid-Test-Chip-by-Candler-Hobbs-2706-2-h_0.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sarkar-Electronic-Covid-Test-Chip-by-Candler-Hobbs-2706-2-h_0.jpg","mime":"image\/jpeg","size":401413,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sarkar-Electronic-Covid-Test-Chip-by-Candler-Hobbs-2706-2-h_0.jpg?itok=_0iG0rnc"}},"661380":{"id":"661380","type":"image","title":"Neda Rafat \u0026 Aniruddh Sarkar Covid Test Chip","body":null,"created":"1663773795","gmt_created":"2022-09-21 15:23:15","changed":"1663773795","gmt_changed":"2022-09-21 15:23:15","alt":"Postdoctoral fellow Neda Rafat and Assistant Professor Aniruddh Sarkar with the Bluetooth reader and smartphone app their team developed to display test results from a new electronic Covid-19 test chip. (Photo: Candler Hobbs)","file":{"fid":"250526","name":"Rafat-Neda-Sarkar-Aniruddh-Electronic-Detector-by-Candler-Hobbs-2771-3x2.jpg","image_path":"\/sites\/default\/files\/images\/Rafat-Neda-Sarkar-Aniruddh-Electronic-Detector-by-Candler-Hobbs-2771-3x2.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Rafat-Neda-Sarkar-Aniruddh-Electronic-Detector-by-Candler-Hobbs-2771-3x2.jpg","mime":"image\/jpeg","size":375139,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Rafat-Neda-Sarkar-Aniruddh-Electronic-Detector-by-Candler-Hobbs-2771-3x2.jpg?itok=1SDxgzUY"}}},"media_ids":["661382","661380"],"groups":[{"id":"1237","name":"College of Engineering"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187423","name":"go-bio"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:jstewart@gatech.edu\u0022\u003EJoshua Stewart\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECollege of Engineering\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["jstewart@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"661102":{"#nid":"661102","#data":{"type":"news","title":"Cleanroom User Spotlight: Muneeb Zia","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/muneeb-zia\u0022\u003EMuneeb Zia\u003C\/a\u003E is a research engineer in the \u003Ca href=\u0022https:\/\/bakirlab.gatech.edu\/\u0022\u003EIntegrated 3D Systems Lab\u003C\/a\u003E led by Professor \u003Ca href=\u0022https:\/\/research.gatech.edu\/muhannad-s-bakir\u0022\u003EMuhannad Bakir\u003C\/a\u003E. His research focuses on developing microfabrication technologies for heterogeneous integration and \u003Cem\u003Ein vivo\u003C\/em\u003E biosensing applications. In the following Q\u0026amp;A, Zia briefly discusses his work in the IEN cleanroom and gives advice to current and future users.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EHow long have you been using the IEN Cleanroom? \u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EI have been using the IEN Cleanroom for about 10 years.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat tools do you use when you are in the cleanroom and what are you doing?\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMost of my current work involves the fabrication of high-density flexible electromyography (EMG) electrodes. To do this, I use a variety of tools including, but not limited to:\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=407\u0026amp;DepartmentId=2\u0022\u003ESpin coaters\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=1296\u0026amp;DepartmentId=2\u0022\u003EHeidelberg MLA 150 Maskless Aligner\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=529\u0026amp;DepartmentId=2\u0022\u003EMask Aligner\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=369\u0026amp;DepartmentId=2\u0022\u003EVision RIE\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=564\u0026amp;DepartmentId=2\u0022\u003ESTS PECVD\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=467\u0026amp;DepartmentId=2\u0022\u003ECHA Evaporator\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=375\u0026amp;DepartmentId=2\u0022\u003EUnifilm Sputterer\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=554\u0026amp;DepartmentId=2\u0022\u003EPlasma Therm ICP\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=373\u0026amp;DepartmentId=2\u0022\u003EDektak 150 Profilometer\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=456\u0026amp;DepartmentId=2\u0022\u003EHitachi S-4700 FE-SEM\u003C\/a\u003E\u003C\/li\u003E\r\n\t\u003Cli\u003E\u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=537\u0026amp;DepartmentId=2\u0022\u003EADT 7100 Dicing Saw\u003C\/a\u003E\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003ESo, if you run into me in the cleanroom, I am probably making some flexible EMG electrodes.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat is\/has been your favorite project you have worked on in the IEN cleanroom?\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMy favorite project has been the fabrication of flexible EMG electrodes. These flexible high-density arrays were initially developed to record single motor unit activity from the \u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/stamp\/stamp.jsp?tp=\u0026amp;arnumber=8947994\u0022\u003Etiny muscles controlling breathing and vocal behavior in songbirds\u003C\/a\u003E. However, since these initial studies, we have \u003Ca href=\u0022https:\/\/www.emgworkshop.internationalmotorcontrol.org\/tech#publications\u0022\u003Efurther developed our devices\u0026rsquo; capabilities\u003C\/a\u003E and collaborated with a number of labs to create new electrode designs. These new designs can record from several different species and muscle groups, including from humans. The first successful \u003Ca href=\u0022https:\/\/twitter.com\/JonAMichaels\/status\/1527802574065352704\u0022\u003Ehuman trial\u003C\/a\u003E was also carried out by the Pruszynski Lab in Canada earlier this year.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWe are now working to share this technology with the greater neuroscience community around the world. We are conducting \u003Ca href=\u0022https:\/\/www.emgworkshop.internationalmotorcontrol.org\u0022\u003Eremote workshops\u003C\/a\u003E where we provide the electrode arrays developed in the IEN Cleanroom along with online instruction materials to users to collect high-resolution EMG data in their own labs.\u0026nbsp;To date, labs from around the world including labs in Canada, the United Kingdom, Japan, China, Switzerland, Portugal, Denmark, and Finland have participated in the workshop. We plan to have more than 100 labs around the world use the electrodes by the end of the workshop.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat would you say to other people thinking about using a tool in the IEN cleanroom?\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGetting trained on a new tool is very streamlined and simple, and there are a lot of training videos available to get you started. The trainers in the IEN Cleanroom are also very accessible and always willing to work with you. So, do not wait!\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat is your favorite thing about the IEN Cleanroom?\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMy favorite thing about the IEN Cleanroom is the extremely supportive and helpful staff.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Zia is a research engineer in the Integrated 3D Systems Lab led by Professor Muhannad Bakir. "}],"uid":"34760","created_gmt":"2022-09-12 18:32:40","changed_gmt":"2022-09-12 18:32:40","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-12T00:00:00-04:00","iso_date":"2022-09-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661101":{"id":"661101","type":"image","title":"Muneeb Zia","body":null,"created":"1663007405","gmt_created":"2022-09-12 18:30:05","changed":"1663008083","gmt_changed":"2022-09-12 18:41:23","alt":"Muneeb Zia in the IEN Cleanroom","file":{"fid":"250459","name":"cleanroom_img-web.png","image_path":"\/sites\/default\/files\/images\/cleanroom_img-web_0.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/cleanroom_img-web_0.png","mime":"image\/png","size":456442,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/cleanroom_img-web_0.png?itok=_r8VFz-q"}}},"media_ids":["661101"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"191269","name":"cleanroom user"},{"id":"189442","name":"GT Institute for Electronics and Nanotechnology"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"661094":{"#nid":"661094","#data":{"type":"news","title":"Sarkar Awarded Qualcomm Innovation Fellowship","body":[{"value":"\u003Cp\u003ERishov Sarkar, a second-year Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE), has been awarded a Qualcomm Innovation Fellowship.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Qualcomm Innovation Fellowship (QIF) program invests in Ph.D. students across a broad range of technical research areas. Award winners earn a one-year fellowship and are mentored by Qualcomm engineers to facilitate the success of the proposed research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESarkar is a member of ECE\u0026rsquo;s Software\/Hardware Co-Design for Intelligence and Efficiency (SHARC) Lab direct by assistant professor Cong (Callie) Hao. He received his B.S. degree in 2020 in computer engineering with a minor in robotics and his M.S. degree in 2021 in electrical and computer engineering, both from Georgia Tech. His research lies primarily in developing FPGA (field programmable gate array) accelerators for Graph Neural Networks using High-Level Synthesis.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Qualcomm Innovation Fellowship was awarded to Sarkar along with Zhiwen Fan from the University of Texas-Austin for their joint proposal, \u0026ldquo;Real-time Visual Processing for Autonomous Driving via Video Transformer with Data-Model-Accelerator Tri-Design.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EQualcomm Research\u0026rsquo;s top engineers carefully review submitted proposals and select the QIF finalists, who are then invited to present their proposals to a panel of executive judges. The QIF program has experienced continued growth with over 100 proposals submitted each year in the U.S. and internationally, and has awarded over $15 million since it started in 2009 at Qualcomm\u0026rsquo;s Research Center in Silicon Valley, Cali.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition to the Qualcomm Innovation Fellowship, Rishov was recently awarded third place in University Demo Best Demonstration at the 59th Design Automation Conference for his work on a Memory-Efficient FPGA Architecture for Multi-Task Vision Transformer using Mixture-of-Experts. He is also a recipient of the 2022 CRNCH Ph.D. Fellowship for his proposal, \u0026ldquo;Hyperscale Distributed GNN Training with Tri-Design: Near-Storage, Device, and System.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Award winners earn a one-year fellowship and are mentored by Qualcomm engineers to facilitate the success of the proposed research. "}],"uid":"36172","created_gmt":"2022-09-12 18:05:35","changed_gmt":"2022-09-12 18:05:35","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-12T00:00:00-04:00","iso_date":"2022-09-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"661093":{"id":"661093","type":"image","title":"Rishov Sarkar, a second-year Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE)","body":null,"created":"1663005739","gmt_created":"2022-09-12 18:02:19","changed":"1663005739","gmt_changed":"2022-09-12 18:02:19","alt":"Rishov Sarkar, a second-year ECE Ph.D. candidate, presenting the Vision Transformer FPGA demo at the University Demonstration at DAC, which represents a portion of the work proposed for the Qualcomm Innovation Fellowship.","file":{"fid":"250454","name":"Rishov Sarkar.jpg","image_path":"\/sites\/default\/files\/images\/Rishov%20Sarkar.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Rishov%20Sarkar.jpg","mime":"image\/jpeg","size":999432,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Rishov%20Sarkar.jpg?itok=SuEQ2pUQ"}}},"media_ids":["661093"],"related_links":[{"url":"https:\/\/www.qualcomm.com\/research\/university-relations\/innovation-fellowship","title":"Qualcomm Innovation Fellowship"},{"url":"https:\/\/sharclab.ece.gatech.edu","title":"Software\/Hardware Co-Design for Intelligence and Efficiency (SHARC) Lab"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"144","name":"Energy"}],"keywords":[{"id":"191267","name":"Rishov Sarkar"},{"id":"181440","name":"Qualcomm Innovation Fellowship"},{"id":"191268","name":"Graph Neural Networks"},{"id":"177451","name":"field programmable gate array"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660988":{"#nid":"660988","#data":{"type":"news","title":"Abdollahramezani Receives IEEE Photonics Society (IPS) 2022 Graduate Student Scholarship","body":[{"value":"\u003Cp\u003ESajjad\u0026nbsp;Abdollahramezani, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering, has been selected to receive a 2022 Graduate Student Scholarship from the IEEE Photonics Society.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe\u0026nbsp;IEEE Photonics Society\u0026nbsp;is a technical community of more than 100,000 professionals dedicated to transforming breakthroughs in quantum physics into devices, systems and products. The society enables networking and promotes professional growth within the photonics and optics community. Each year, ten outstanding society student members from around the world are awarded an IEEE Photonics Society Graduate Student Scholarship.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAbdollahramezani has been a member of ECE\u0026rsquo;s Photonics Research Group, directed by Ali Adibi, the Professor and Joseph M. Pettit Chair in Electronics and Nanophotonics, since 2017. His\u0026nbsp;Ph.D. research is focused on design, optimization, fabrication, and demonstration of\u0026nbsp;reconfigurable metasurfaces for capturing and manipulating an entire light field (to enable\u0026nbsp;applications like imaging, spectroscopy, and computing). According to Adibi,\u0026nbsp;Abdollahramezani\u0026rsquo;s research will not only provide new ways of designing, understanding, and fabricating new classes of metasurface-based devices and systems for imaging, computing, and spectroscopy, but it also enables novel classes of reconfigurable nanophotonics devices for emerging applications such as biosensing and quantum engineering.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAbdollahramezani received this year\u0026rsquo;s\u0026nbsp;ECE Graduate Research Assistant Excellence Award, which is presented to ECE graduate students who have been highly dedicated to conducting world-class research and who are considered leaders in their respective research groups.\u0026nbsp;He completed his undergraduate degree at Isfahan University of Technology and received his MSc from Sharif University of Technology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003ERead more about Abdollahramezani and Adibi\u0026rsquo;s work in \u0026ldquo;\u003C\/em\u003E\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/658072\/shaping-future-light-through-reconfigurable-metasurfaces\u0022\u003E\u003Cem\u003EShaping the Future of Light through Reconfigurable Metasurfaces.\u003C\/em\u003E\u003C\/a\u003E\u003Cem\u003E\u0026rdquo;\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Each year, ten outstanding society student members from around the world are awarded an IEEE Photonics Society Graduate Student Scholarship. "}],"uid":"36172","created_gmt":"2022-09-08 19:35:29","changed_gmt":"2022-09-08 19:35:29","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-09-08T00:00:00-04:00","iso_date":"2022-09-08T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660987":{"id":"660987","type":"image","title":"Sajjad\u00a0Abdollahramezani","body":null,"created":"1662665511","gmt_created":"2022-09-08 19:31:51","changed":"1662665511","gmt_changed":"2022-09-08 19:31:51","alt":"Sajjad\u00a0Abdollahramezani","file":{"fid":"250413","name":"Sajjad Abdollahramezani_IEEE Photonics Society Graduate Student Scholarship.jpg","image_path":"\/sites\/default\/files\/images\/Sajjad%20Abdollahramezani_IEEE%20Photonics%20Society%20Graduate%20Student%20Scholarship.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sajjad%20Abdollahramezani_IEEE%20Photonics%20Society%20Graduate%20Student%20Scholarship.jpg","mime":"image\/jpeg","size":532756,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sajjad%20Abdollahramezani_IEEE%20Photonics%20Society%20Graduate%20Student%20Scholarship.jpg?itok=b15EEmW9"}}},"media_ids":["660987"],"related_links":[{"url":"https:\/\/www.photonicssociety.org\/awards\/graduate-student-scholarship","title":"IEEE Photonics Society Graduate Student Scholarship"},{"url":"https:\/\/sites.gatech.edu\/ece-prg","title":"Photonics Research Group"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/ali-adibi","title":"Ali Adibi"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"188070","name":"Sajjad Abdollahramezani"},{"id":"179326","name":"IEEE Photonics Society"},{"id":"83301","name":"Photonics Research Group"},{"id":"2769","name":"Ali Adibi"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660724":{"#nid":"660724","#data":{"type":"news","title":"Das Selected to Prestigious Scientific Events this Fall","body":[{"value":"\u003Cp\u003EPoulami Das, a Georgia Tech Ph.D. candidate in the School of Electrical and Computer Engineering (ECE), has been selected to attend two high-profile conferences this fall: the Heidelberg Laureate Forum (HLF) and Rising Stars in EECS.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn September she will attend HLF in Heidleberg, Germany. The opportunity to join the annual forum is provided exclusively to outstanding young scientists in mathematics and computer science (or closely related fields) at the undergraduate\/pre-master, graduate Ph.D. and postdoc levels.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn order to participate, young researchers must pass a multi-step application and selection process. Two hundred are then carefully selected and given the opportunity to spend a week at HLF interacting with the laureates of the disciplines. Each year the recipients of the most prestigious awards in mathematics and computer science, the Abel Prize, ACM A.M. Turing Award, ACM Prize in Computing, Fields Medal,\u0026nbsp;IMU Abacus Medal and Nevanlinna Prize are named laureates and invited to participate in the forum. \u0026nbsp;Laureates give lectures on subjects of their choosing which are primarily directed at the participating young scientists. Those lectures are the starting point of intensive discussions between the laureates and the young researchers during the forum.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditionally, Das has been selected to attend Rising Stars in EECS, an academic career workshop in electrical engineering and computer science. This year\u0026rsquo;s workshop will be held in October at the University of Texas at Austin. Rising Stars is an intensive workshop for graduate students and postdocs with historically marginalized or underrepresented genders who are interested in pursuing academic careers in electrical engineering, computer science, and artificial intelligence and decision-making. Launched at MIT in 2012, the annual event has since been hosted at the University of California at Berkeley, Carnegie Mellon University, Stanford University, and the University of Illinois at Urbana-Champaign.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I am very honored to be selected to attend both the Heidelberg Laureate Forum and the Rising Stars in EECS Workshop,\u0026rdquo; said Das. \u0026ldquo;As a candidate excited about joining the academic job market this fall, both these events will offer me the extra-ordinary opportunity to learn from experts across multiple research domains about their thoughts on building a strong, impactful, and healthy research group.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDas is advised by Moinuddin Qureshi, professor in the College of Computing at Georgia Tech. She is the recipient of the Microsoft Research Ph.D Fellowship and received the 2022 Colonel Oscar P. Cleaver Award for most outstanding Ph.D. dissertation proposal in ECE for her research on architecture and software for reliable quantum computing.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"She will attend the Heidelberg Laureate Forum and Rising Stars in EECS."}],"uid":"36172","created_gmt":"2022-08-31 12:35:42","changed_gmt":"2022-08-31 12:35:42","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-31T00:00:00-04:00","iso_date":"2022-08-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660723":{"id":"660723","type":"image","title":"Poulami Das Fall 2022 Conferences","body":null,"created":"1661949176","gmt_created":"2022-08-31 12:32:56","changed":"1661949176","gmt_changed":"2022-08-31 12:32:56","alt":"Poulami Das, a Georgia Tech ECE Ph.D. candidate\u00a0","file":{"fid":"250337","name":"Das Selected Events this Fall_Graphic.png","image_path":"\/sites\/default\/files\/images\/Das%20Selected%20Events%20this%20Fall_Graphic.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Das%20Selected%20Events%20this%20Fall_Graphic.png","mime":"image\/png","size":780196,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Das%20Selected%20Events%20this%20Fall_Graphic.png?itok=pWOwkJjV"}}},"media_ids":["660723"],"related_links":[{"url":"https:\/\/sites.gatech.edu\/poulamidas\/","title":"Poulami Das"},{"url":"https:\/\/www.heidelberg-laureate-forum.org","title":"Heidelberg Laureate Forum"},{"url":"https:\/\/risingstars.utexas.edu","title":"Rising Stars in EECS"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42901","name":"Community"},{"id":"42911","name":"Education"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"181279","name":"Poulami Das"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"191199","name":"Heidelberg Laureate Forum (HLF)"},{"id":"175142","name":"rising stars in eecs"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660722":{"#nid":"660722","#data":{"type":"news","title":"Lim Becomes First ECE Faculty Member to Join DARPA as Program Manager","body":[{"value":"\u003Cp\u003EThis August, Georgia Tech professor Sung Kyu Lim joined the Defense Advanced Research Projects Agency (DARPA) as a program manager in the Microsystems Technology Office (MTO). Lim, the Motorola Solutions Foundation Professor in School of Electrical and Computer Engineering (ECE), is the first Georgia Tech ECE researcher to be recruited and serve as a DARPA program manager while teaching at Georgia Tech.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs a prominent researcher in very-large-scale integration\u0026nbsp;(VLSI) systems and design, Lim\u0026rsquo;s first program at DARPA, dubbed the \u0026ldquo;3D-EDA (3D Electronic Design Automation) Program,\u0026rdquo; will develop heterogeneous 3D integrated circuits (IC) design and simulation software to automatically co-optimize the underlying device, circuit, and architecture. The program will use 3D-EDA tools to demonstrate 10x shorter design turnaround time and 10x energy-efficiency improvement.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We are very proud of Sung Kyu\u0026rsquo;s appointment to DARPA\u0026rsquo;s Microsystems Technology Office,\u0026rdquo; said\u0026nbsp;Arijit Raychowdhury, ECE\u0026rsquo;s Steve W. Chaddick School Chair. \u0026ldquo;This is an important recognition of Sung Kyu\u0026rsquo;s standing in the VLSI field, and also shows how Georgia Tech ECE researchers are leading, on the national level, in developing advanced defense research projects.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe core mission of DARPA\u0026rsquo;s MTO is to develop high-performance intelligent microsystems and next-generation components to ensure U.S. dominance in the areas of Command, Control, Communications, Computing, Intelligence, Surveillance, and Reconnaissance (C4ISR), Electronic Warfare (EW), and Directed Energy (DE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAccording to DARPA, the office\u0026rsquo;s work in applying advanced capabilities in areas such as wide-band gap materials, phased array radars, high-energy lasers, complementary metal-oxide-semiconductor (CMOS) circuits, and infrared imaging has helped the U.S. establish and maintain technological superiority for more than two decades.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELim\u0026rsquo;s DARPA assignment is supported by the U.S. Department of Defense\u0026rsquo;s (DoD) Intergovernmental Personnel Act (IPA), which allows for the temporary assignment of skilled personnel between the Federal Government and state and local governments, colleges and universities, Indian tribal governments, federally funded research and development centers, and other eligible organizations.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe will serve for four years at the agency in Washington D.C. before returning to Georgia Tech. Lim\u0026rsquo;s GTCAD (Georgia Tech Computer-Aided Design) Lab will remain open during his 4-year DARPA term.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Lim\u2019s DARPA assignment is supported by the U.S. Department of Defense\u2019s (DoD) Intergovernmental Personnel Act (IPA)."}],"uid":"36172","created_gmt":"2022-08-31 12:28:47","changed_gmt":"2022-08-31 12:28:47","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-31T00:00:00-04:00","iso_date":"2022-08-31T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"657975":{"id":"657975","type":"image","title":"Sung-Kyu Lim 2022","body":null,"created":"1651706638","gmt_created":"2022-05-04 23:23:58","changed":"1651706638","gmt_changed":"2022-05-04 23:23:58","alt":"","file":{"fid":"249412","name":"Sung-Kyu Lim _72.jpg","image_path":"\/sites\/default\/files\/images\/Sung-Kyu%20Lim%20_72.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sung-Kyu%20Lim%20_72.jpg","mime":"image\/jpeg","size":322188,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sung-Kyu%20Lim%20_72.jpg?itok=bOuztOSq"}}},"media_ids":["657975"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim","title":"Sung Kyu Lim"},{"url":"https:\/\/www.darpa.mil","title":"Defense Advanced Research Projects Agency (DARPA)"},{"url":"https:\/\/www.darpa.mil\/about-us\/offices\/mto","title":"Microsystems Technology Office (MTO)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42901","name":"Community"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"171018","name":"Sung Kyu Lim"},{"id":"186338","name":"Defense Advanced Research Projects Agency (DARPA)"},{"id":"191195","name":"Microsystems Technology Office (MTO) School of Electrical and Computer Engineering (ECE)"},{"id":"191196","name":"very-large-scale integration"},{"id":"191197","name":"3D Electronic Design Automation"},{"id":"191198","name":"GTCAD (Georgia Tech Computer-Aided Design) Lab"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660541":{"#nid":"660541","#data":{"type":"news","title":"2021 TNANO Best Paper Award Goes to ECE Researchers Led by Shimeng Yu","body":[{"value":"\u003Cp\u003EA team of Georgia Tech researchers led by Shimeng Yu, associate professor in the School of Electrical and Computer Engineering, has won the 2021 IEEE Transactions on Nanotechnology (T-NANO)\u0026nbsp;Best Paper Award. Co-authors of the award-winning paper are Ph.D. candidate Yuan-chun Luo\u0026nbsp;and postdoctoral researcher Jae Hur.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEach year, T-NANO selects a paper that appeared in the Transactions publication during the previous calendar year for its Best Paper Award. Candidate papers are nominated by members of the editorial board. Evaluation is done by members of the senior editors panel, with criteria including technical merit, originality, potential impact on the field, clarity of presentation, and practical significance for applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Georgia Tech team\u0026rsquo;s paper, \u0026quot;\u003Ca href=\u0022https:\/\/ieeexplore.ieee.org\/document\/9380227\u0022 title=\u0022https:\/\/ieeexplore.ieee.org\/document\/9380227\u0022\u003EFerroelectric Tunnel Junction Based Crossbar Array Design for Neuro-Inspired Computing\u003C\/a\u003E,\u0026quot; appeared in volume 20, pp. 243-247 of the publication. It details a promising candidate for the implementation of low-power and area-efficient neuro-inspired computing called a ferroelectric tunnel junction (FTJ) based crossbar array. Past research has shown that the on-state current density is too low to realize a FTJ crossbar array for neuro-inspired computing. To overcome this problem, the team has proposed a stacked FTJ to increase the effective area so that desirable current level can be achieved. A HSPICE simulation with projected 1 nm thick FTJ based on the concept of stacked DRAM capacitor at 20 nm node was ran, and to make the distribution of on-state and off-state devices realistic within the array quantized weights of VGG-8 to the FTJ crossbar array were mapped. The evaluation of summed current, accuracy, and delay suggests that FTJ crossbar array should be a promising candidate for neuro-inspired computing.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe 2021\u0026nbsp;TNANO\u0026nbsp;Best Paper Award is the latest research from Yu\u0026rsquo;s Laboratory for Emerging Devices and Circuits to receive high recognition. This year, five papers were accepted by the IEEE Symposium on VLSI Technology and Circuits, one of the premier conferences in the microelectronics. Additionally, Yu was recognized with ECE\u0026rsquo;s 2022 Outstanding Mid-Career Faculty Award for his research in machine learning hardware design leveraging in-memory computing, as well his strong teaching record.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The 2021 TNANO Best Paper Award is the latest research from Yu\u2019s Laboratory for Emerging Devices and Circuits to receive high recognition. "}],"uid":"36172","created_gmt":"2022-08-25 15:23:58","changed_gmt":"2022-08-25 15:23:58","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-25T00:00:00-04:00","iso_date":"2022-08-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660540":{"id":"660540","type":"image","title":"Shimeng Yu, Yuan-chun Luo, Jae Hur","body":null,"created":"1661440885","gmt_created":"2022-08-25 15:21:25","changed":"1661440885","gmt_changed":"2022-08-25 15:21:25","alt":"Ph.D. candidate Yuan-chun Luo, ECE associate professor Shimeng Yu, and postdoctoral researcher Jae Hur. ","file":{"fid":"250293","name":"TNANO Award_Shimeng Group Graphic.jpg","image_path":"\/sites\/default\/files\/images\/TNANO%20Award_Shimeng%20Group%20Graphic.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/TNANO%20Award_Shimeng%20Group%20Graphic.jpg","mime":"image\/jpeg","size":888349,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/TNANO%20Award_Shimeng%20Group%20Graphic.jpg?itok=nLXsXrwy"}}},"media_ids":["660540"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/shimeng-yu","title":"Shimeng Yu"},{"url":"https:\/\/tnano.org","title":"IEEE Transactions on Nanotechnology (T-NANO)"},{"url":"https:\/\/shimeng.ece.gatech.edu","title":"Laboratory for Emerging Devices and Circuits"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"178857","name":"Shimeng Yu"},{"id":"191170","name":"Yuan-chun Luo"},{"id":"191171","name":"Jae Hur"},{"id":"191172","name":"IEEE Transactions on Nanotechnology (T-NANO)"},{"id":"191173","name":"ferroelectric tunnel junction"},{"id":"182048","name":"Laboratory for Emerging Devices and Circuits"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660094":{"#nid":"660094","#data":{"type":"news","title":"New Chip Could Make Treating Metastatic Cancer Easier and Faster","body":[{"value":"\u003Cp\u003ECancer spreads via circulating tumor cells (CTCs) that travel through the blood to other organs, and they are nearly impossible to track. Now, researchers at the Georgia Institute of Technology have found a detection method that could revolutionize cancer treatment by showing how cancers metastasize and what stage they are. This could lead to earlier and more targeted treatment, beginning with a simple blood test.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen a tumor starts metastasizing, it sheds its cell into the blood. An individual cell often doesn\u0026rsquo;t survive the bloodstream on its own, but clusters of cells are much more robust and can travel to other organs, effectively pushing the cancer to a metastatic state.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECTCs have proven difficult to study, let alone treat. Blood contains billions of cells per milliliter, and only a handful of those cells would be CTCs in a patient with metastatic cancer. Such intense filtration has been inaccessible using conventional lab methods. Most traditional filtration is too aggressive and would break the cluster back into single cells and ruin the ability to study the effect of a cluster.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;That\u0026rsquo;s what got engineers like me interested in this because we are really good at creating sensors, or small devices that actually do sensitive analysis,\u0026rdquo; said \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E Associate Professor \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/a-fatih-sarioglu\u0022\u003EFatih Sarioglu\u003C\/a\u003E. \u0026ldquo;We started developing technologies to catch these precious cells to help manage cancer better.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESarioglu presented the research in \u0026ldquo;\u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41467-022-31009-9\u0022\u003EHigh Throughput, Label-free Isolation of Circulating Tumor Cell Clusters in Meshed Microwells\u003C\/a\u003E,\u0026rdquo; recently published in \u003Cem\u003ENature\u003C\/em\u003E Co\u003Cem\u003Emmunications. \u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECreating the Cluster-Well \u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESarioglu\u0026rsquo;s lab invented a new type of chip called the Cluster-Well, combining the precision of microfluidic chips with the efficiency of membrane filtration to find CTC clusters. Using micron-sized features, microfluidic chips can precisely locate each cell in a blood sample and determine if it\u0026rsquo;s cancerous.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Microfluidic chips give you more control as a designer to actually ask whatever question that you want to ask those cells,\u0026rdquo; Sarioglu said. \u0026ldquo;It increases the precision and sensitivity, which is what you need for an application like this because you want to find that single cell out of many blood cells.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETo rapidly process a clinically relevant volume of blood, the researchers relied on membrane filtration to make the chip operation more scalable. In effect, the chip looks like a standard membrane filter, but under an electron microscope the microfluidic chip reveals its delicate structure used to capture clusters while letting other blood cells pass through.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EPracticality was just as important as functionality to the researchers. Although the chip is initially fabricated with silicon just like a central processing unit in a computer, it is later transferred to polymers to make it accessible, affordable, and single-use, while still retaining its delicacy and precision.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We really created only the traps that we need to have for recognizing the clusters with the microfluidic chip, and the rest is just a standard filter holder,\u0026rdquo; Sarioglu said. \u0026ldquo;Compared to a conventional microfluidic chip, you will get a much more practical assay with orders of magnitude improvement in throughput and a higher sensitivity.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EAnalyzing Patient Tumor Cell Clusters\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers used the chip to screen blood samples from patients with ovarian or prostate cancers through a partnership with the Emory and Northside Hospitals. They isolated CTC clusters ranging from two to 100 or more cells from prostate and ovarian cancer patients and used RNA sequencing to analyze a subset.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe chip\u0026rsquo;s unique design means CTC clusters are filtered in microwells and can later be accessed for further analysis. Even a single CTC can contain a significant amount of data on the patient and their specific cancer, which can be critical for managing the disease. For example, the researchers noted hundreds of CTCs in clusters in the blood of ovarian cancer patients, some still alive, a finding that could be consequential to the spread of the disease.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAlso, by sequencing the RNA in prostate CTC clusters isolated by the chip, the researchers identified specific genes expressed by these metastasizing cells. Importantly, CTC clusters from different patients were shown to express different genes, which can be potentially utilized to develop personalized, targeted therapies. Sarioglu envisions Cluster-Wells as being a routine part of the treatment process to determine what stage the cancer is at from a simple blood draw.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Finding these clusters was very elusive,\u0026rdquo; Sarioglu said. \u0026ldquo;But this is a technology that allows these precious circulating tumor cell clusters virtually in any cancer to be accessed with precision and practicality that has not been possible before.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ECITATION: Boya, M., Ozkaya-Ahmadov, T., Swain, B.E.\u0026nbsp;\u003Cem\u003Eet al.\u003C\/em\u003E\u0026nbsp;High throughput, label-free isolation of circulating tumor cell clusters in meshed microwells.\u0026nbsp;\u003Cem\u003ENat Commun\u003C\/em\u003E\u0026nbsp;\u003Cstrong\u003E13,\u0026nbsp;\u003C\/strong\u003E3385 (2022). https:\/\/doi.org\/10.1038\/s41467-022-31009-9\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Researchers at the Georgia Institute of Technology have found a detection method that could revolutionize cancer treatment by showing how cancers metastasize and what stage they are. "}],"uid":"34541","created_gmt":"2022-08-11 18:42:42","changed_gmt":"2022-08-25 00:29:45","author":"Tess Malone","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-11T00:00:00-04:00","iso_date":"2022-08-11T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660104":{"id":"660104","type":"image","title":"fabrication","body":null,"created":"1660250561","gmt_created":"2022-08-11 20:42:41","changed":"1660250561","gmt_changed":"2022-08-11 20:42:41","alt":"fabricating the microchip","file":{"fid":"250184","name":"Fatih Sarioglu-008.jpg","image_path":"\/sites\/default\/files\/images\/Fatih%20Sarioglu-008.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Fatih%20Sarioglu-008.jpg","mime":"image\/jpeg","size":473553,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Fatih%20Sarioglu-008.jpg?itok=kc92eLXt"}},"660102":{"id":"660102","type":"image","title":"tumor cell","body":null,"created":"1660248600","gmt_created":"2022-08-11 20:10:00","changed":"1660248600","gmt_changed":"2022-08-11 20:10:00","alt":"A tumor cell isolated from a prostate cancer blood sample","file":{"fid":"250182","name":"Fatih Sarioglu-003.jpg","image_path":"\/sites\/default\/files\/images\/Fatih%20Sarioglu-003.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Fatih%20Sarioglu-003.jpg","mime":"image\/jpeg","size":440697,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Fatih%20Sarioglu-003.jpg?itok=56rbvFsg"}},"660101":{"id":"660101","type":"image","title":"Microscope","body":null,"created":"1660247636","gmt_created":"2022-08-11 19:53:56","changed":"1660247636","gmt_changed":"2022-08-11 19:53:56","alt":"Man looks at tumor cells in micrscope","file":{"fid":"250181","name":"Fatih Sarioglu-002.jpg","image_path":"\/sites\/default\/files\/images\/Fatih%20Sarioglu-002.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Fatih%20Sarioglu-002.jpg","mime":"image\/jpeg","size":344816,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Fatih%20Sarioglu-002.jpg?itok=4KbeLVO2"}},"660103":{"id":"660103","type":"image","title":"Faith and Mert","body":null,"created":"1660249314","gmt_created":"2022-08-11 20:21:54","changed":"1660253429","gmt_changed":"2022-08-11 21:30:29","alt":"Faith and Mert","file":{"fid":"250183","name":"MicrosoftTeams-image (4).jpg","image_path":"\/sites\/default\/files\/images\/MicrosoftTeams-image%20%284%29.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MicrosoftTeams-image%20%284%29.jpg","mime":"image\/jpeg","size":1020901,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MicrosoftTeams-image%20%284%29.jpg?itok=eiy7HZ5N"}}},"media_ids":["660104","660102","660101","660103"],"groups":[{"id":"1214","name":"News Room"},{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[{"id":"71891","name":"Health and Medicine"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ETess Malone, Research Writer\/Editor\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["tess.malone@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659945":{"#nid":"659945","#data":{"type":"news","title":"Georgia Tech\u2019s New Aluminum Nitride-based Semiconductor is Poised to Transform the Industry","body":[{"value":"\u003Cp\u003E\u003Cem\u003EAlan Doolittle is doing what was once thought impossible: turning an electrical insulator into an ultra-wide bandgap semiconductor. The results have groundbreaking potential for high-power electronics, optoelectronics, and more.\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor the past 80 or so years, aluminum nitride (AlN) has been thought of as nothing but an electrical insulator. Because of its high electrical insulating and thermal conductivity properties, it is used frequently in electronic applications to dissipate heat quickly and maintain efficiency.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EResearchers at the Georgia Institute of Technology, led by professor\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/william-alan-doolittle\u0022\u003EAlan Doolittle\u003C\/a\u003E, are discovering that there is a lot more to AlN than meets the eye, and their promising research shows the material has the potential to transform the semiconductor industry. By leveraging the advantages of AlN, ultra-wide bandgap\u0026nbsp;(UWBG)\u0026nbsp;semiconductors\u0026nbsp;can\u0026nbsp;be used\u0026nbsp;at\u0026nbsp;high-power and high-temperature\u0026nbsp;levels\u0026nbsp;never seen before.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;It\u0026rsquo;s rare to see such encouraging early results,\u0026rdquo; said Doolittle, the\u0026nbsp;Joseph M. Pettit Professor in the School for Electrical and Computer Engineering (ECE). \u0026ldquo;To put things into perspective, AlN has the ability to handle over five times the voltage of other existing wide bandgap semiconductors. It really is the birth of a new semiconductor field.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor electrical devices, there are two types of semiconducting materials needed: one that carries positive charges (p-type) and one that carries negative charges (n-type). The Doolittle group was able to improve current conduction in p-type AlN by 30,000,000 times and n-type AlN by 6,000 times than prior best results.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe findings, recently published in\u0026nbsp;\u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/adma.202104497\u0022\u003EAdvanced Materials\u003C\/a\u003E\u0026nbsp;and the\u0026nbsp;\u003Ca href=\u0022https:\/\/aip.scitation.org\/jap\/info\/focus\u0022\u003EJournal of Applied Physics\u003C\/a\u003E, received the Most Valuable Contribution\u0026nbsp;Award\u0026nbsp;at the 2022 Workshop on Compound Semiconductor Materials \u0026amp; Devices, a premier workshop in the U.S. on high performance electronic materials.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EUltra-wide Bandgaps Equal Ultra-wide Applications\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech\u0026rsquo;s AlN-based semiconductor findings\u0026nbsp;represent an emerging new area of interdisciplinary research covering materials, physics, and devices with promising applications for future generations of high-power electronics and optoelectronics, as well as quantum electronics and harsh-environment applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESemiconductors can both conduct and insulate electricity, meaning they are necessary for all electronic appliances to operate. Scientists make semiconductor materials by using pure elements (most frequently silicon) and adding intentional impurities to make crystals with the desired electrical, thermal, and optical prosperities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe bandgap is one of the most important properties of a semiconductor, as it represents the minimum\u0026nbsp;energy required for electrical conduction. It is also the largest factor in determining the voltage at which a device fails (called breakdown), as well as represents the energy\/wavelength of light emanating from the semiconductor.\u0026nbsp;UWBG\u0026nbsp;semiconductors can operate at high temperatures, frequencies, and voltages, meaning less semiconductor devices are needed in high voltage circuits which increases performance and efficiency, while reducing costs. Doolittle\u0026rsquo;s AlN-based semiconductor has the highest bandgap ever demonstrated to have both p and n-type conduction needed for electronics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The new AlN-based semiconductor appears to have the ability to withstand voltages at incredibly high levels,\u0026rdquo; said Doolittle. \u0026ldquo;Levels that can even withstand some sections of the national utility grid, something no other semiconductor can do.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWith the ability to withstand high voltage and high frequency, AlN-based semiconductors can be utilized in power electronic devices found in automotive, industrial, and consumer applications. The technology could also allow utility grids to more effectively control how much power to transmit and where, a growing demand as old systems integrate with other smart grid innovations and renewable energy sources.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team used a much lower temperature to grow the AlN crystals than what is normally utilized to create semiconductor materials. The low heat process allows for more precise control of the material\u0026rsquo;s surface chemistry during creation and is potentially a groundbreaking innovation in its own right.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;That kind of out of the box solution caught a lot of people off guard,\u0026rdquo; said Doolittle. \u0026ldquo;It was thought that you couldn\u0026rsquo;t grow good quality material at this low of temperature, but we\u0026rsquo;ve shown that it\u0026rsquo;s possible and has broad applicability.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EAlN\u0026rsquo;s Impressive Optical Properties\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EUnlike an incandescent light bulb where a filament is heated to glow and produce light, light-emitting diodes (LEDs)\u0026nbsp;emit light when an electric current flows through a layered semiconductor device. The wide bandgap semiconductor material gallium nitride\u0026nbsp;(GaN) was used to create the first LED blue light in the early 1990s by Isamu Akasaki, Hiroshi Amano, and Shuji Nakamura (for which they won the 2014 Nobel Prize in Physics). Creating the high energy blue LED challenged scientist for decades, as it was the final piece needed to create white light and full-color LED displays that have now revolutionized lighting technology and is predicted to save nearly 20% in energy consumption in the U.S. when fully deployed.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELike GaN, AlN\u0026rsquo;s wide bandgap means it has enormous light energy which results in the short light wavelengths needed to produce high energy deep ultra-violet (DUV) light beyond the ability of the eye to see. Because AlN has an even larger bandgap than GaN, it produces a DUV light with a wavelength of only 203 nanometers (compared to GaN\u0026rsquo;s ~365 nm) \u0026ndash; nearly twice the energy as light from GaN.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We\u0026#39;re really excited about the optical properties of this material,\u0026rdquo; said Doolittle. \u0026ldquo;Researchers have been attempting to get LEDs under 270 nanometer wavelengths for a while now because it opens up an enormous range of applications.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOne such potential application for AlN-based LEDs is light disinfection, a growing focus in research and industry. Unlike current ultraviolet (UV) lights \u0026mdash; a light disinfectant plagued by power\/efficiency limitations \u0026mdash; DUV LEDs use higher energy electromagnetic radiation that is absorbed in the dead layers of human skin instead of being absorbed in live tissue.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This light gives us a pathway to make light emitters that can kill viruses and bacteria with significantly less \u0026mdash; if any \u0026mdash; damage to human skin and eyes.\u0026rdquo; said Doolittle.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ETime to Engineer\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWith the team\u0026rsquo;s encouraging early studies showing AlN having the potential to be a revolutionary semiconductor material, they now turn to prototyping and optimization. While the new technology is a leap forward and largely solves the most difficult science problems that have roadblocked using AlN as a semiconductor, engineering challenges remain.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESince such a wide bandgap semiconductor has never been created, a solution to make good electrical contact to the material (for electrical current to be transported to devices) is essential. All known metals are poorly suited to contact AlN,\u0026nbsp;so metal alloys and exotic contacts will be needed, according to Doolittle.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEarly prototypes have shown some resistance to current flow that must be improved if AlN is to reach the efficiencies it potentially can achieve. Likewise, thicker devices will need to be engineered to use in the high voltages needed to impact utility grids.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We have ideas as to how to push this forward and view most of these issues as engineering challenges requiring only time and resources, not fundamental science limitations,\u0026rdquo; said Doolittle.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E***\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECitation I:\u003C\/strong\u003E\u0026nbsp;H. Ahmad, J. Lindemuth, Z. Engel, C. M. Matthews, K. Motoki, W.\u0026nbsp;Alan\u0026nbsp;Doolittle, \u0026ldquo;Substantial P-type Conductivity of AlN Achieved via Beryllium Doping,\u0026rdquo; Advanced Materials 33 (42), 2104497, September 2021.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EDOI:\u003C\/strong\u003E\u0026nbsp;\u003Ca href=\u0022https:\/\/doi.org\/10.1002\/adma.202104497\u0022\u003Edoi.org\/10.1002\/adma.202104497\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECitation II:\u003C\/strong\u003E\u0026nbsp;H. Ahmad, Z. Engel,\u0026nbsp; C. M. Matthews, S. Lee, and\u0026nbsp; W.\u0026nbsp;Alan\u0026nbsp;Doolittle, \u0026ldquo;Realization of homojunction PN AlN diodes\u0026rdquo;, J. Appl. Phys. 131, 175701 (2022)\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EDOI:\u003C\/strong\u003E\u0026nbsp;\u003Ca href=\u0022https:\/\/aip.scitation.org\/doi\/full\/10.1063\/5.0086314\u0022\u003Edoi.org\/10.1063\/5.0086314\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EFunding:\u0026nbsp;\u003C\/strong\u003EThis work was supported by the Office of Naval Research (ONR) Multidisciplinary University Research Initiatives (MURI) Program entitled, \u0026ldquo;Leveraging a New Theoretical Paradigm to Enhance Interfacial Thermal Transport In Wide Bandgap Power Electronics\u0026rdquo; under Award No. N00014-17-S-F006 administered by Dr. Mark Spector and Lynn Petersen. This work was also in part supported by the Air Force Office of Scientific Research under Award number FA9550-21-1-0318 administered by Dr. Ali Sayir.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWriter\u003C\/strong\u003E: Dan Watson\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EPhotography\u003C\/strong\u003E: Marion Crowder\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EMedia Contact\u003C\/strong\u003E: Dan Watson |\u0026nbsp;\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003E\u003Cstrong\u003Edwatson@ece.gatech.edu\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003E###\u003C\/em\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Georgia Institute of Technology, or Georgia Tech, is a top 10 public research university developing leaders who advance technology and improve the human condition. The Institute offers business, computing, design, engineering, liberal arts, and sciences degrees. Its nearly 44,000 students, representing 50 states and 149 countries, study at the main campus in Atlanta, at campuses in France and China, and through distance and online learning. As a leading technological university, Georgia Tech is an engine of economic development for Georgia, the Southeast, and the nation, conducting more than $1 billion in research annually for government, industry, and society.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Alan Doolittle is doing what was once thought impossible: turning an electrical insulator into an ultra-wide bandgap semiconductor. "}],"uid":"36172","created_gmt":"2022-08-04 22:50:52","changed_gmt":"2022-08-22 17:36:48","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-04T00:00:00-04:00","iso_date":"2022-08-04T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659937":{"id":"659937","type":"image","title":"Alan Doolittle with Semiconductor Device","body":null,"created":"1659644793","gmt_created":"2022-08-04 20:26:33","changed":"1659644793","gmt_changed":"2022-08-04 20:26:33","alt":"ECE professor Alan Doolittle\u2019s AlN-based semiconductor findings represent an emerging new area of interdisciplinary research covering materials, physics, and devices.","file":{"fid":"250133","name":"Alan Doolittle with Semiconductor Device.jpg","image_path":"\/sites\/default\/files\/images\/Alan%20Doolittle%20with%20Semiconductor%20Device.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Alan%20Doolittle%20with%20Semiconductor%20Device.jpg","mime":"image\/jpeg","size":709178,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Alan%20Doolittle%20with%20Semiconductor%20Device.jpg?itok=GbwHu0io"}},"659938":{"id":"659938","type":"image","title":"Alan Doolitte\u0027s AlN Semiconductor device close up","body":null,"created":"1659644887","gmt_created":"2022-08-04 20:28:07","changed":"1659644887","gmt_changed":"2022-08-04 20:28:07","alt":"Georgia Tech\u2019s AlN-based semiconductor has the highest bandgap ever demonstrated to have both p and n-type conduction needed for electronics.","file":{"fid":"250134","name":"Alan Doolitte\u0027s AlN Semiconductor device close up.jpg","image_path":"\/sites\/default\/files\/images\/Alan%20Doolitte%27s%20AlN%20Semiconductor%20device%20close%20up.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Alan%20Doolitte%27s%20AlN%20Semiconductor%20device%20close%20up.jpg","mime":"image\/jpeg","size":801961,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Alan%20Doolitte%27s%20AlN%20Semiconductor%20device%20close%20up.jpg?itok=SfiYiTDE"}}},"media_ids":["659937","659938"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/william-alan-doolittle","title":"Alan Doolittle"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/callie-hao","title":"ECE"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"1159","name":"Alan Doolittle"},{"id":"191020","name":"Aluminum Nitride-based Semiconductor"},{"id":"191021","name":"ultra-wide bandgap (UWBG) semiconductors"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660116":{"#nid":"660116","#data":{"type":"news","title":"Ayazi Appointed First Regents\u2019 Entrepreneur by USG","body":[{"value":"\u003Cp\u003EThe University System of Georgia (USG) Board of Regents has named Farrokh Ayazi \u0026mdash; along with four other Georgia Tech scholars \u0026mdash; a Regents\u0026rsquo; Entrepreneur at the board\u0026rsquo;s Aug. 9\u0026nbsp;meeting. Ayazi is the Ken Byers Professor in Microsystems in Tech\u0026rsquo;s School of Electrical and Computer Engineering (ECE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe new Regents\u0026rsquo; Entrepreneur distinction was approved at the board\u0026rsquo;s February 2022 meeting and is granted to outstanding full-time tenured faculty members who have an established reputation as successful innovators and who have taken their research into a commercial setting. The Regents\u0026rsquo; Entrepreneur designation is bestowed by the board only upon the unanimous recommendation of the USG institution president, the chief academic officer, and the chancellor, and upon the approval of the Committee on Academic Affairs\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Farrokh is exceptionally deserving of being ECE\u0026rsquo;s first Regents\u0026rsquo; Entrepreneur,\u0026rdquo; said Arijit Raychowdhury, Steve W. Chaddick School Chair of ECE. \u0026ldquo;He has been a leader in establishing a culture within ECE \u0026mdash; following the Institute\u0026rsquo;s strategic goals \u0026mdash; that encourages entrepreneurship and technology transfer. I am thrilled that he has been chosen by the USG Board of Regents and the Georgia Tech administration to hold this title.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAyazi\u0026rsquo;s research, which focuses on MEMS and microsystems, has allowed him to establish two start-up companies based on intellectual property (IP) developed at Georgia Tech: Qualtr\u0026eacute; and StethX Microsystems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EQualtr\u0026eacute; commercialized a new class of acoustic microgyroscopes (\u0026lsquo;gyros\u0026rsquo;) integrated on a chip that operate in the ultrasonic frequency range with much improved small-scale accuracy. Applications include guidance, automotive, defense and personal navigation. Qualtr\u0026eacute; commercialized low-cost chip-scale gyroscopes for GPS-free navigation of autonomous cars and unmanned air vehicles before being acquired by Panasonic in December 2016.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAyazi also founded and serves as managing director of StethX Microsystems, which is commercializing a wearable micro-chip for long-term recording of mechano-acoustic cardiopulmonary signals. The data recorded can identify indications of asthma, COPD, and pneumonia.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition to Ayazi, four other Tech faculty members were bestowed the Regents\u0026rsquo; Entrepreneur designation, including four in the College of Engineering (CoE). They include Kirk Bowman, professor, Sam Nunn School of International Affairs; Andrei Fedorov, Neely Chair and professor, Woodruff School of Mechanical Engineering and the Petit Institute for Bioengineering and Biosciences; Mark Prausnitz, Regents\u0026rsquo; Professor, J. Erskine Love Jr. Chair, School of Chemical and Biomolecular Engineering; and Gleb Yushin, professor, School of Materials Science and Engineering. In total,\u0026nbsp;\u003Ca href=\u0022https:\/\/coe.gatech.edu\/news\/2022\/08\/six-faculty-honored-regents-titles\u0022\u003Esix CoE faculty members were honored with Regents\u0026rsquo; titles.\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/news.gatech.edu\/news\/2022\/08\/11\/tech-faculty-tapped-regents-awards\u0022\u003ERead the press release about this year\u0026rsquo;s Regents\u0026rsquo; Professors, Researchers, and Entrepreneurs.\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The new Regents\u2019 Entrepreneur distinction is granted to faculty members who have an established reputation as successful innovators."}],"uid":"36172","created_gmt":"2022-08-12 15:34:42","changed_gmt":"2022-08-12 15:34:50","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-12T00:00:00-04:00","iso_date":"2022-08-12T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660115":{"id":"660115","type":"image","title":"Farrokh Ayazi, Regents\u2019 Entrepreneur","body":null,"created":"1660318162","gmt_created":"2022-08-12 15:29:22","changed":"1660318162","gmt_changed":"2022-08-12 15:29:22","alt":"Farrokh Ayazi, Regents\u2019 Entrepreneur","file":{"fid":"250190","name":"Farrokh Ayazi.png","image_path":"\/sites\/default\/files\/images\/Farrokh%20Ayazi.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Farrokh%20Ayazi.png","mime":"image\/png","size":541770,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Farrokh%20Ayazi.png?itok=-9m5t-on"}}},"media_ids":["660115"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/farrokh-ayazi","title":"Farrokh Ayazi"},{"url":"https:\/\/www.usg.edu","title":"University System of Georgia"},{"url":"https:\/\/www.usg.edu\/regents\/","title":"University System of Georgia Board of Regents"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"132","name":"Institute Leadership"},{"id":"135","name":"Research"},{"id":"144","name":"Energy"}],"keywords":[{"id":"12106","name":"Farrokh Ayazi"},{"id":"171841","name":"University System of Georgia Board of Regents"},{"id":"191054","name":"Regents\u2019 Entrepreneur"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"660086":{"#nid":"660086","#data":{"type":"news","title":"Top Prize Awarded to Lim, Agnesina for 3D IC Design Methodology Research","body":[{"value":"\u003Cp\u003EThe award-winning article proposes a novel hierarchical physical design flow enabling the building of high-density and commercial-quality two-tier face-to-face-bonded hierarchical 3D ICs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech professor Sung Kyu Lim and recent Ph.D. graduate Anthony Agnesina have won the top paper award at the 2022 International Symposium on Low Power Electronics and Design (ISLPED) for their research entitled, \u0026ldquo;Hier-3D: A Hier archical Physical Design Methodology for Face-to-Face-Bonded 3D ICs.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELim is a Motorola Solutions Foundation Professor in Tech\u0026rsquo;s School of Electrical and Computer Engineering (ECE) and Agnesina is currently a research scientist at NVIDIA and was advised by Lim while at Georgia Tech. Co-authors include eight researchers from the Interuniversity Microelectronics Centre\u0026nbsp;(IMEC), the University of Bremen, ETH Zurich, and the University of Bologna.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe award-winning article proposes a novel hierarchical physical design flow enabling the building of high-density and commercial-quality two-tier face-to-face-bonded hierarchical 3D ICs. Hierarchical very-large-scale integration (VLSI) flows are an understudied yet critical approach to achieving design closure at giga-scale complexity and gigahertz frequency targets.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe authors significantly reduced the associated manufacturing cost compared to existing 3D IC implementation flows and, for the first time, achieved cost competitiveness against the 2D reference in large modern designs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EExperimental results on complex industrial and open manycore processors demonstrate in two advanced nodes that the proposed flow provides major power, performance, and area\/cost (PPAC) improvements of 1.2 to 2.2\u0026times; compared with commercial 2D ICs, where all metrics are improved simultaneously, including up to 20% power savings.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EISLPED was held at the Boston University Electrical and Computer Engineering Department \/ Photonics Center on August 1-2, 2022. The symposium is the premier forum for presentation of innovative research in all aspects of low power electronics and design, ranging from process technologies and analog\/digital circuits, simulation and synthesis tools, system-level design, and optimization, to system software and applications.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The award-winning article proposes a novel hierarchical physical design flow enabling the building of high-density and commercial-quality two-tier face-to-face-bonded hierarchical 3D ICs. "}],"uid":"36172","created_gmt":"2022-08-11 14:46:59","changed_gmt":"2022-08-11 15:27:29","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-11T00:00:00-04:00","iso_date":"2022-08-11T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"660089":{"id":"660089","type":"image","title":"Georgia Tech professor Sung Kyu Lim and recent Ph.D. graduate Anthony Agnesina ","body":null,"created":"1660231620","gmt_created":"2022-08-11 15:27:00","changed":"1660231620","gmt_changed":"2022-08-11 15:27:00","alt":"Georgia Tech professor Sung Kyu Lim and recent Ph.D. graduate Anthony Agnesina ","file":{"fid":"250178","name":"GRAPHIC_Lim Agnesina_best paper.jpg","image_path":"\/sites\/default\/files\/images\/GRAPHIC_Lim%20Agnesina_best%20paper.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/GRAPHIC_Lim%20Agnesina_best%20paper.jpg","mime":"image\/jpeg","size":783719,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/GRAPHIC_Lim%20Agnesina_best%20paper.jpg?itok=dIGbBwAY"}}},"media_ids":["660089"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim","title":"Sung Kyu Lim"},{"url":"https:\/\/sites.gatech.edu\/agnesina\/","title":"Anthony Agnesina"},{"url":"https:\/\/www.islped.org\/2022\/","title":"International Symposium on Low Power Electronics and Design"},{"url":"https:\/\/cpn-us-w2.wpmucdn.com\/sites.gatech.edu\/dist\/8\/1385\/files\/2022\/07\/anthony_islped22_final.pdf","title":"Hier-3D: A Hier archical Physical Design Methodology for Face-to-Face-Bonded 3D ICs"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"171018","name":"Sung Kyu Lim"},{"id":"191050","name":"Anthony Agnesina"},{"id":"191051","name":"3D IC Design"},{"id":"191052","name":"International Symposium on Low Power Electronics and Design"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659659":{"#nid":"659659","#data":{"type":"news","title":"Georgia Tech Faculty and Students Win Awards, Present Research at Design Automation Conference","body":[{"value":"\u003Cp\u003EThe 59\u003Csup\u003Eth\u003C\/sup\u003E\u0026nbsp;Design Automation Conference (DAC), a premier event devoted to the design and design automation of electronic chips and systems, was held in San Francisco on July 10-14.\u0026nbsp;The conference offers training, education, exhibits, and networking opportunities for designers, researchers, tool developers and vendors. It is sponsored by the Association for Computing Machinery (ACM) and the Institute of Electrical and Electronics Engineers (IEEE), and is supported by ACM\u0026#39;s Special Interest Group on Design Automation (SIGDA)\u0026nbsp;and IEEE\u0026#39;s Council on Electronic Design Automation (CEDA).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn the span of five days, DAC provided over 300 technical presentations and sessions that were selected by a committee of electronic design and university research experts offering information on recent developments and trends, management practices and new products, methodologies, and technologies in the electronics industry.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;DAC brings together researchers across the computing stack \u0026mdash; technology, circuits, design-automation and computer architecture \u0026mdash; enabling a confluence of ideas and cross-stack research,\u0026quot;\u0026nbsp;said associate professor Tushar Krishna in the Georgia Tech School of Electrical and Computer Engineering. \u0026ldquo;It provides a multitude of opportunities for researchers, students, and industry experts to collaborate and influence tomorrow\u0026rsquo;s innovations, making it a highly exciting and effective conference.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFaculty members and students in ECE were presented with multiple awards and participated in research talks and technical sessions. ECE\u0026rsquo;s DAC awards and contributions are listed below:\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EAwards:\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003EProfessor Sung Kyu Lim and his students Bon Woong Ku (currently at Synopsys) and Kyungwook Chang (currently at Sungkyunkwan University)\u0026nbsp;\u003Ca href=\u0022https:\/\/ece.gatech.edu\/news\/658676\/lim-and-team-win-2022-transactions-computer-aided-design-best-paper-award\u0022\u003Ereceived the 2022 Donald O. Pederson Best Paper Award\u003C\/a\u003E\u0026nbsp;for their paper \u0026ldquo;Compact-2D: A Physical Design Methodology to Build Two-Tier Gate-Level 3D ICs\u0026rdquo; published in IEEE TCAD.\u0026rdquo;\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EPh.D. candidate Poulami Das (supervised by professor Moin Qureshi)\u0026nbsp;\u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/659573\/phd-research-poulami-das-wins-top-award-design-automation-conference\u0022\u003Ewon the \u0026ldquo;Best Research Award\u0026rdquo;\u003C\/a\u003E\u0026nbsp;during the Ph.D. Forum.\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EPh.D. candidate Rishov Sarkar (supervised by assistant professor Callie Hao) won the third place in the \u0026ldquo;University Demo Best Demonstration.\u0026rdquo;\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EPh.D. candidates Foroozan Karimzadeh (supervised by ECE chair Arijit Raychowdhury), Zishen Wan (supervised by Raychowdhury), and Anurag Kar (supervised by professor Hyesoon Kim in Tech\u0026rsquo;s School of Computer Science) were named 2022 DAC Young Fellows and presented on their respective research during the DAC Young Fellows Program workshop.\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EEngineering Talks, Tutorials, Workshops, Panels\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003EHao gave an invited talk entitled, \u0026ldquo;3U-EdgeAI: Ultra-Low Memory Training, Ultra-Low Bitwidth Quantization, and Ultra-Low Latency Acceleration\u0026rdquo; during the Fifth International Workshop on Design Automation for Cyber-Physical Systems (DACPS).\u0026rdquo;\u003Cbr \/\u003E\r\n\t\u003Cbr \/\u003E\r\n\tHao, along with Hyoukun Kwon (a recent Ph.D. graduate supervised by Krishna and now at Meta), presented the tutorial \u0026ldquo;A Journey to SW\/HW Co-design in Machine Learning: Fundamental, Advancement, and Application.\u0026rdquo; They presented twice on the same day due to tutorial\u0026rsquo;s popularity.\u003Cbr \/\u003E\r\n\t\u003Cbr \/\u003E\r\n\tHao was also the co-organizer of the Early Career Workshop for junior faculty and senior Ph.D. students interested in academia.\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EKrishna presented an invited talk entitled, \u0026ldquo;Formalizing Design-space Exploration for Flexible AI Accelerators\u0026rdquo; during the Silicon Integration Initiative Low-Power Forum.\u0026rdquo;\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003ELim presented at the engineering track Machine Learning and EDA: The Productivity Cycle and organized the research panel \u0026ldquo;Heterogeneous 3D or Monolithic 3D, Which Direction to Go?\u0026rdquo;\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ETechnical Sessions\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cul\u003E\r\n\t\u003Cli\u003EAnanda Samajdar (recent Ph.D. graduate supervised by Krishna and now at IBM) presented his work \u0026ldquo;Self-Adaptive Reconfigurable Arrays (SARA): Learning Flexible GEMM Accelerator Configuration and Mapping-space using ML.\u0026rdquo;\u0026nbsp;\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EPh.D. candidate Brian Crafton (supervised by Raychowdhury) presented his work \u0026ldquo;Improving Compute In-Memory ECC Reliability with Successive Correction\u0026rdquo;.\u003Cbr \/\u003E\r\n\t\u0026nbsp;\u003C\/li\u003E\r\n\t\u003Cli\u003EHao presented her work \u0026ldquo;H2H: Heterogeneous Model to Heterogeneous System Mapping with Computation and Communication Awareness\u0026rdquo;.\u003C\/li\u003E\r\n\u003C\/ul\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.dac.com\/\u0022\u003ELearn more about the Design Automation Conference\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"DAC is a premier event devoted to the design and design automation of electronic chips and systems."}],"uid":"36172","created_gmt":"2022-07-26 01:53:30","changed_gmt":"2022-08-11 12:05:35","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-25T00:00:00-04:00","iso_date":"2022-07-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659654":{"id":"659654","type":"image","title":"ECE at the 59th Design Automation Conference (DAC)","body":null,"created":"1658799310","gmt_created":"2022-07-26 01:35:10","changed":"1658799310","gmt_changed":"2022-07-26 01:35:10","alt":"Members of the Georgia Tech School of Electrical and Computer were well-represented at the 59th Design Automation Conference (DAC), a premier event devoted to the design and design automation of electronic chips and systems, was held in San Francisco on July 10-14. ","file":{"fid":"250025","name":"Group w: banner.png","image_path":"\/sites\/default\/files\/images\/Group%20w%3A%20banner.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Group%20w%3A%20banner.png","mime":"image\/png","size":1249193,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Group%20w%3A%20banner.png?itok=NOA_f_-W"}},"659657":{"id":"659657","type":"image","title":"DAC ECE Awardees","body":null,"created":"1658799589","gmt_created":"2022-07-26 01:39:49","changed":"1658799589","gmt_changed":"2022-07-26 01:39:49","alt":"L-R: Zishen Wan (Ph.D. candidate), Callie Hao (assistant professor), Rishov Sarkar (Ph.D. candidate), Poulami Das (Ph.D. candidate), and Anurag Kar (Ph.D. candidate) all won awards at DAC.","file":{"fid":"250028","name":"Group of 5.png","image_path":"\/sites\/default\/files\/images\/Group%20of%205.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Group%20of%205.png","mime":"image\/png","size":1371969,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Group%20of%205.png?itok=9Ew5kQky"}},"659655":{"id":"659655","type":"image","title":"Rishov Sarkar and Callie Hao","body":null,"created":"1658799441","gmt_created":"2022-07-26 01:37:21","changed":"1658837243","gmt_changed":"2022-07-26 12:07:23","alt":"Ph.D. candidate Rishov Sarkar (right) won third place in \u201cUniversity Demo Best Demonstration.\u201d He is supervised by ECE assistant professor Callie Hao (left).","file":{"fid":"250026","name":"Callie and Rishov.png","image_path":"\/sites\/default\/files\/images\/Callie%20and%20Rishov.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Callie%20and%20Rishov.png","mime":"image\/png","size":1044272,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Callie%20and%20Rishov.png?itok=91NCh31W"}},"659656":{"id":"659656","type":"image","title":"Callie Hao presenting at DAC","body":null,"created":"1658799512","gmt_created":"2022-07-26 01:38:32","changed":"1658799512","gmt_changed":"2022-07-26 01:38:32","alt":"ECE assistant professor Callie Hao presenting the popular tutorial \u201cA Journey to SW\/HW Co-design in Machine Learning: Fundamental, Advancement, and Application.\u201d ","file":{"fid":"250027","name":"Callie Speaking.png","image_path":"\/sites\/default\/files\/images\/Callie%20Speaking.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Callie%20Speaking.png","mime":"image\/png","size":945905,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Callie%20Speaking.png?itok=Jc3KcwPh"}},"659658":{"id":"659658","type":"image","title":"Professor Sung Kyu Lim (right) and his former student Bon Woong Ku (middle) receiving the 2022 Donald O. Pederson Best Paper Award ","body":null,"created":"1658799665","gmt_created":"2022-07-26 01:41:05","changed":"1658799665","gmt_changed":"2022-07-26 01:41:05","alt":"Professor Sung Kyu Lim (right) and his former student Bon Woong Ku (middle) receiving the 2022 Donald O. Pederson Best Paper Award for their paper \u201cCompact-2D: A Physical Design Methodology to Build Two-Tier Gate-Level 3D ICs\u201d published in IEEE TCAD.\u201d  ","file":{"fid":"250029","name":"Sung Kyu and student receiving award.png","image_path":"\/sites\/default\/files\/images\/Sung%20Kyu%20and%20student%20receiving%20award.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sung%20Kyu%20and%20student%20receiving%20award.png","mime":"image\/png","size":1196779,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sung%20Kyu%20and%20student%20receiving%20award.png?itok=gPKSDWLC"}},"659574":{"id":"659574","type":"image","title":"Ph.D. candidate Poulami Das won the \u201cBest Research Award\u201d during the Ph.D. Forum at  DAC.","body":null,"created":"1658434444","gmt_created":"2022-07-21 20:14:04","changed":"1658798973","gmt_changed":"2022-07-26 01:29:33","alt":"Ph.D. candidate Poulami Das won the \u201cBest Research Award\u201d during the Ph.D. Forum at  DAC.","file":{"fid":"249980","name":"Poulami_Poster_DAC.jpeg","image_path":"\/sites\/default\/files\/images\/Poulami_Poster_DAC.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Poulami_Poster_DAC.jpeg","mime":"image\/jpeg","size":3678651,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Poulami_Poster_DAC.jpeg?itok=JbDVTkxF"}}},"media_ids":["659654","659657","659655","659656","659658","659574"],"related_links":[{"url":"https:\/\/www.dac.com","title":"Design Automation Conference"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/callie-hao","title":"Callie Hao"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/tushar-krishna","title":"Tushar Krishna"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim","title":"Sung Kyu Lim"},{"url":"https:\/\/faculty.cc.gatech.edu\/~moin\/","title":"Moin Qureshi"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/arijit-raychowdhury","title":"Arijit Raychowdhury"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"42911","name":"Education"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"}],"keywords":[{"id":"178486","name":"Design Automation Conference"},{"id":"1925","name":"Electrical and Computer Engineering"},{"id":"171018","name":"Sung Kyu Lim"},{"id":"190971","name":"Moin Qureshi"},{"id":"190972","name":"Callie Hao"},{"id":"139771","name":"Arijit Raychowdhury"},{"id":"173453","name":"Tushar Krishna"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659935":{"#nid":"659935","#data":{"type":"news","title":"Ghosh Wins Top Award for Memristors Research","body":[{"value":"\u003Cp\u003EGeorgia Tech Ph.D. candidate Aheli Ghosh has won the Best Poster Award at the 23rd International Conference on Solid State Ionics (SSI-23). SSI-23\u0026rsquo;s highly competitive poster competition featured nearly 750 participants. Ghosh is advised by Alan Doolittle, the Joseph M. Pettit Professor in Tech\u0026rsquo;s School of Electrical and Computer Engineering (ECE).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGhosh\u0026rsquo;s research has shown how a novel oxide material, lithium niobite, can use design rules similar to CMOS (complementary metal-oxide semiconductor) technology to engineer brain-like memristive synapses, tuning both statically and dynamically the resistance and temporal response. Memristive devices have extraordinary potential in neuromorphic computing \u0026mdash; a computing paradigm that mimics the biological brain.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe findings are part of the CEREBRAL (Cross-disciplinary Electronic-ionic Research Enabling Biologically Realistic Autonomous Learning) research project funded by the Department of Defense to facilitate key device innovations in implementing brain inspired low-power neuromorphic circuits. The program, launched in 2017, has expanded work on new metal oxide materials that buzz electronically at the nanoscale to emulate the way human neural networks buzz with electric potential on a cellular level.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGhosh\u0026rsquo;s research has already been utilized by fellow ECE Ph.D. candidate Bill Zivasatienraj to model new memristor-based network architectures that show remarkable lifelong self-learning properties.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ESSI-23 was held July 17-22 in Boston. The conference is a major event in the field, attracting a worldwide audience every two years. It provides an unparalleled opportunity to gather leading international scientists and engineers, top-level industrial, management and business executives, as well as students and young scientists, to discuss all aspects of the science, technology and applications of ion-conducting materials.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Ghosh\u2019s research has shown how a novel oxide material, lithium niobite, can use design rules similar to CMOS."}],"uid":"36172","created_gmt":"2022-08-04 19:37:29","changed_gmt":"2022-08-04 19:37:29","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-04T00:00:00-04:00","iso_date":"2022-08-04T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659934":{"id":"659934","type":"image","title":"Ph.D. candidate Aheli Ghosh ","body":null,"created":"1659641647","gmt_created":"2022-08-04 19:34:07","changed":"1659641647","gmt_changed":"2022-08-04 19:34:07","alt":"Ph.D. candidate Aheli Ghosh ","file":{"fid":"250132","name":"Aheli Ghosh.jpg","image_path":"\/sites\/default\/files\/images\/Aheli%20Ghosh.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Aheli%20Ghosh.jpg","mime":"image\/jpeg","size":3334145,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Aheli%20Ghosh.jpg?itok=sfh5-I82"}}},"media_ids":["659934"],"related_links":[{"url":"https:\/\/rh.gatech.edu\/news\/593815\/brain-mimicking-nanomaterials-ai-retina-receive-7-million-research-grant","title":"Cross-disciplinary Electronic-ionic Research Enabling Biologically Realistic Autonomous Learning"},{"url":"https:\/\/www.mrs.org\/ssi-23","title":"International Conference on Solid State Ionics (SSI-23)"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"191016","name":"Aheli Ghosh"},{"id":"1159","name":"Alan Doolittle"},{"id":"191017","name":"Cross-disciplinary Electronic-ionic Research Enabling Biologically Realistic Autonomous Learning"},{"id":"191018","name":"International Conference on Solid State Ionics (SSI-23)"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022mailto:dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u200b\u200b\u200b\u200b\u200b\u200b\u200b\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659883":{"#nid":"659883","#data":{"type":"news","title":"Researchers 3D Print First High-Performance Nanostructured Alloy That\u2019s Both Ultrastrong and Ductile","body":[{"value":"\u003Cp\u003EA team of researchers at the University of Massachusetts Amherst and the Georgia Institute of Technology has 3D printed a dual-phase, nanostructured high-entropy alloy that exceeds the strength and ductility of other state-of-the-art additively manufactured materials, which could lead to higher-performance components for applications in aerospace, medicine, energy and transportation. The \u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41586-022-04914-8\u0022\u003Eresearch\u003C\/a\u003E, led by \u003Ca href=\u0022https:\/\/mie.umass.edu\/faculty\/wen-chen\u0022\u003EWen Chen\u003C\/a\u003E, assistant professor of mechanical and industrial engineering at UMass, and \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/faculty\/zhu-1?\u0022\u003ETing Zhu\u003C\/a\u003E, professor of \u003Ca href=\u0022https:\/\/www.me.gatech.edu\/\u0022\u003Emechanical engineering\u003C\/a\u003E at Georgia Tech, was published in the August issue of the journal \u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41586-022-04914-8\u0022\u003E\u003Cem\u003ENature\u003C\/em\u003E\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOver the past 15 years, high entropy alloys (HEAs) have become increasingly popular as a new paradigm in materials science. Comprised of five or more elements in near-equal proportions, they offer the ability to create a near-infinite number of unique combinations for alloy design. Traditional alloys, such as brass, carbon steel, stainless steel and bronze, contain a primary element combined with one or more trace elements.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditive manufacturing, also called 3D printing, has recently emerged as a powerful approach of material development. The laser-based 3D printing can produce large temperature gradients and high cooling rates that are not readily accessible by conventional routes. However, \u0026ldquo;the potential of harnessing the combined benefits of additive manufacturing and HEAs for achieving novel properties remains largely unexplored,\u0026rdquo; says Zhu.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EChen and his team in the \u003Ca href=\u0022https:\/\/blogs.umass.edu\/wenchen\/?_gl=1%2Ajzu2ka%2A_ga%2AMTI0MzYyNjY3NS4xNjU1MzA3ODMw%2A_ga_21RLS0L7EB%2AMTY1NjUxMzEzMS4xOC4xLjE2NTY1MTQwNjguMA..\u0026amp;_ga=2.2862392.943704952.1656338286-1243626675.1655307830\u0022\u003EMultiscale Materials and Manufacturing Laboratory\u003C\/a\u003E combined an HEA with a state-of-the-art 3D printing technique called laser powder bed fusion to develop new materials with unprecedented properties. Because the process causes materials to melt and solidify very rapidly as compared to traditional metallurgy, \u0026ldquo;you get a very different microstructure that is far-from-equilibrium\u0026rdquo; on the components created, Chen says. This microstructure looks like a net and is made of alternating layers known as face-centered cubic (FCC) and body-centered cubic (BCC) nanolamellar structures embedded in microscale eutectic colonies with random orientations. The hierarchical nanostructured HEA enables co-operative deformation of the two phases.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This unusual microstructure\u0026rsquo;s atomic rearrangement gives rise to ultrahigh strength as well as enhanced ductility, which is uncommon, because usually strong materials tend to be brittle,\u0026rdquo; Chen says. Compared to conventional metal casting, \u0026ldquo;we got almost triple the strength and not only didn\u0026rsquo;t lose ductility, but actually increased it simultaneously,\u0026rdquo; he says. \u0026ldquo;For many applications, a combination of strength and ductility is key. Our findings are original and exciting for materials science and engineering alike.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The ability to produce strong and ductile HEAs means that these 3D printed materials are more robust in resisting applied deformation, which is important for lightweight structural design for enhanced mechanical efficiency and energy saving,\u0026rdquo; says Jie Ren, Chen\u0026rsquo;s Ph.D. student and first author of the paper.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.zhugroup.gatech.edu\/\u0022\u003EZhu\u0026rsquo;s group at Georgia Tech\u003C\/a\u003E led the computational modeling for the research. He developed dual-phase crystal plasticity computational models to understand the mechanistic roles played by both the FCC and BCC nanolamellae and how they work together to give the material added strength and ductility.\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Our simulation results show the surprisingly high strength yet high hardening responses in the BCC nanolamellae, which are pivotal for achieving the outstanding strength-ductility synergy of our alloy. This mechanistic understanding provides an important basis for guiding the future development of 3D printed HEAs with exceptional mechanical properties,\u0026rdquo; Zhu says.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition, 3D printing offers a powerful tool to make geometrically complex and customized parts. In the future, harnessing 3D printing technology and the vast alloy design space of HEAs opens ample opportunities for the direct production of end-use components for biomedical and aerospace applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdditional research partners on the paper include Texas A\u0026amp;M University, the University of California Los Angeles, Rice University, and Oak Ridge and Lawrence Livermore national laboratories.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EStory by \u003Ca href=\u0022mailto: melindarose@umass.edu\u0022\u003EMelinda Rose\u003C\/a\u003E, Associate News Editor at UMass Amherst.\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":[{"value":"Components could have aerospace, medical, energy and automotive applications"}],"field_summary":[{"value":"\u003Cp\u003EA team of researchers at the University of Massachusetts Amherst and the Georgia Institute of Technology has 3D printed a dual-phase, nanostructured high-entropy alloy that exceeds the strength and ductility of other state-of-the-art additively manufactured materials.\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Researchers at UMass Amherst and Georgia Tech have 3D printed a dual-phase, nanostructured high-entropy alloy that exceeds the strength and ductility of other state-of-the-art additively manufactured materials."}],"uid":"36123","created_gmt":"2022-08-03 15:25:54","changed_gmt":"2022-08-03 20:04:54","author":"Catherine Barzler","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-08-03T00:00:00-04:00","iso_date":"2022-08-03T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659884":{"id":"659884","type":"image","title":"Ting Zhu EHEA","body":null,"created":"1659541942","gmt_created":"2022-08-03 15:52:22","changed":"1659542011","gmt_changed":"2022-08-03 15:53:31","alt":"A strong and ductile high-entropy alloy","file":{"fid":"250111","name":"EHEA.jpg","image_path":"\/sites\/default\/files\/images\/EHEA.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/EHEA.jpg","mime":"image\/jpeg","size":555721,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/EHEA.jpg?itok=7GXM5eq1"}},"659885":{"id":"659885","type":"image","title":"Ting Zhu outside headshot","body":null,"created":"1659542335","gmt_created":"2022-08-03 15:58:55","changed":"1659542335","gmt_changed":"2022-08-03 15:58:55","alt":"Ting Zhu, Woodruff Professor in the George W. Woodruff School of Mechanical Engineering at Georgia Tech","file":{"fid":"250112","name":"ting headshot.png","image_path":"\/sites\/default\/files\/images\/ting%20headshot.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/ting%20headshot.png","mime":"image\/png","size":5699171,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/ting%20headshot.png?itok=Hoz0i0ff"}}},"media_ids":["659884","659885"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"187915","name":"go-researchnews"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39461","name":"Manufacturing, Trade, and Logistics"},{"id":"39471","name":"Materials"}],"news_room_topics":[{"id":"71881","name":"Science and Technology"}],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003ECatherine Barzler, Georgia Tech\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["catherine.barzler@gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659652":{"#nid":"659652","#data":{"type":"news","title":"Rinc\u00f3n-Mora Publishes New Book on Power IC Design","body":[{"value":"\u003Cp\u003EGabriel Alfonso Rinc\u0026oacute;n-Mora has published a new textbook entitled \u0026ldquo;Switched Inductor Power IC Design.\u0026rdquo;\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nRinc\u0026oacute;n-Mora is a \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/news\/657977\/rincon-mora-appointed-motorola-solutions-foundation-professor\u0022\u003EMotorola Solutions Foundation Professor\u003C\/a\u003E in the Georgia Tech School of Electrical and Computer Engineering (ECE). He is a fellow of the National Academy of Inventors, a fellow of the Institute of Electrical and Electronics Engineers (IEEE), and a fellow of the Institution of Engineering and Technology (IET). The IEEE Circuits and Systems Society (CAS) selected him IEEE Distinguished Lecturer in 2009\u0026ndash;2010, 2018\u0026ndash;2019, and 2022\u0026ndash;2023.\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nThe new 524-page textbook, published by Springer Nature, evolved from the material Rinc\u0026oacute;n-Mora developed for ECE 6445 Power IC Design course, which he derived from field and research experience. The book uses design insight, real-life examples, illustrative figures, easy-to-follow equations, and simple SPICE code to show how semiconductor devices (diodes, bipolar-junction transistors (BJTs), and metal\u0026ndash;oxide\u0026ndash;semiconductor (MOS) field-effect transistors (FETs)) work independently and collectively in switched-inductor power supplies; how these power supplies transfer power, consume power, and react and respond across frequency; how feedback loops switch, control, and stabilize them; and how the building blocks that comprise them are implemented and designed.\u003Cbr \/\u003E\r\n\u003Cbr \/\u003E\r\nTo learn more about the book, visit\u0026nbsp;\u003Ca href=\u0022https:\/\/link.springer.com\/book\/10.1007\/978-3-030-95899-2\u0022 title=\u0022https:\/\/link.springer.com\/book\/10.1007\/978-3-030-95899-2\u0022\u003Ehttps:\/\/link.springer.com\/book\/10.1007\/978-3-030-95899-2\u003C\/a\u003E.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The new 524-page textbook, published by Springer Nature, evolved from the material Rinc\u00f3n-Mora developed for ECE 6445 Power IC Design course."}],"uid":"36172","created_gmt":"2022-07-26 00:17:38","changed_gmt":"2022-07-26 00:38:35","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-25T00:00:00-04:00","iso_date":"2022-07-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659653":{"id":"659653","type":"image","title":"ECE professor Gabriel Alfonso Rinc\u00f3n-Mora has published \u201cSwitched Inductor Power IC Design.\u201d","body":null,"created":"1658795802","gmt_created":"2022-07-26 00:36:42","changed":"1658795802","gmt_changed":"2022-07-26 00:36:42","alt":"ECE professor Gabriel Alfonso Rinc\u00f3n-Mora has published \u201cSwitched Inductor Power IC Design.\u201d","file":{"fid":"250024","name":"Rinc\u00f3n-Mora_Publishes New Book on Power IC Design.jpg","image_path":"\/sites\/default\/files\/images\/Rinc%C3%B3n-Mora_Publishes%20New%20Book%20on%20Power%20IC%20Design.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Rinc%C3%B3n-Mora_Publishes%20New%20Book%20on%20Power%20IC%20Design.jpg","mime":"image\/jpeg","size":665143,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Rinc%C3%B3n-Mora_Publishes%20New%20Book%20on%20Power%20IC%20Design.jpg?itok=2ypvGu2M"}}},"media_ids":["659653"],"related_links":[{"url":"https:\/\/rincon-mora.gatech.edu","title":"Gabriel Alfonso Rinc\u00f3n-Mora"},{"url":"https:\/\/link.springer.com\/book\/10.1007\/978-3-030-95899-2","title":"Switched Inductor Power IC Design"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"42911","name":"Education"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"176719","name":"Gabriel Alfonso Rinc\u00f3n-Mora"},{"id":"190969","name":"Switched Inductor Power IC Design"},{"id":"188079","name":"Springer Nature"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659565":{"#nid":"659565","#data":{"type":"news","title":"Georgia Tech Postdoc, Jinhwan Kim, Receives Prestigious NIH Award","body":[{"value":"\u003Cp\u003EPostdoctoral fellow Jinhwan Kim has been awarded the Pathway to Independence Award (K99\/R00)\u0026nbsp;by the National Institutes of Health (NIH). Jinhwan is a researcher in the Georgia Tech School of Electrical and Computer Engineer (ECE), the Wallace H. Coulter\u0026nbsp;Department of Biomedical Engineering\u0026nbsp;(BME) at Georgia Tech and Emory University, and the Emory School of Medicine.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe is a member of the Ultrasound Imaging and Therapeutics Research Laboratory directed by ECE and BME professor and Georgia Research Alliance Eminent Scholar, Stanislav Emelianov. The research group utilizes a combination of ultrasound and other imaging techniques to solve complementary challenges in biomedical imaging, image-guided therapy, and bionanotechnology.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe significant K99\/R00 award is, \u0026ldquo;intended to foster the development of a creative, independent research scientist who can establish and sustain a strong, independent research program.\u0026rdquo; It is expected that the awardee\u0026rsquo;s \u0026ldquo;Research Plan\u0026rdquo; be based on original ideas and\/or hypotheses.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I am very honored to have received this prestigious award,\u0026rdquo; said Jinhwan. \u0026ldquo;The opportunity will foster my transition from an investigator with a foundation in nanomaterials to one with a broader vision of applications to cell engineering and medical imaging.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe multidisciplinary knowledge gained during the overall research and career training funded by the award will provide a foundation for Jinhwan to develop advanced applications of nanotechnology in innovative therapeutic approaches to treat cancer and other diseases. Through the award he will develop an image-guided therapy and activity monitoring\/controlling system based on the combination of nanotechnology, ultrasound and photoacoustic imaging, and cell engineering to increase treatment precision and decrease side effects.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe K99\/R00 Pathway award provides support for up to two-year postdoctoral mentored phase and a successive three-year independent phase as a principal investigator. The competitive award is a great complement for prospective faculty candidates. Current Georgia Tech faculty members who have won this award include Costas Arvanitis (Mechanical Engineering),\u0026nbsp;Leslie Chan (BME), and\u0026nbsp;Peter Kottke (Mechanical Engineering).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJinhwan studied at Pohang University of Science and Technology (POSTECH), South Korea, where he earned his Ph.D. in chemistry and bioengineering. During his Ph.D. studies, he developed theranostic nanomaterials that respond to specific stimuli, such as light, pH, and redox potential, thereby achieving high efficacy with low side effects. To further advance his scientific career he moved to Georgia Tech in 2018, implementing nanotechnology and exploiting nanomaterials\u0026rsquo; functionalities for clinical translation.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The K99\/R00 Pathway award provides support for up to two-year postdoctoral mentored phase and a successive three-year independent phase as a principal investigator. "}],"uid":"36172","created_gmt":"2022-07-21 15:25:34","changed_gmt":"2022-07-22 20:30:08","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-21T00:00:00-04:00","iso_date":"2022-07-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659564":{"id":"659564","type":"image","title":"Postdoctoral fellow Jinhwan Kim ","body":null,"created":"1658416938","gmt_created":"2022-07-21 15:22:18","changed":"1658416938","gmt_changed":"2022-07-21 15:22:18","alt":"Postdoctoral fellow Jinhwan Kim","file":{"fid":"249978","name":"Kim_Jinhwan-8552.jpeg","image_path":"\/sites\/default\/files\/images\/Kim_Jinhwan-8552.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Kim_Jinhwan-8552.jpeg","mime":"image\/jpeg","size":296777,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Kim_Jinhwan-8552.jpeg?itok=Wnkfpadx"}}},"media_ids":["659564"],"related_links":[{"url":"https:\/\/www.nigms.nih.gov\/training\/careerdev\/Pages\/PathwayIndependence.aspx","title":"Pathway to Independence Award (K99\/R00) "},{"url":"https:\/\/www.nih.gov","title":"National Institutes of Health"},{"url":"https:\/\/www.med.emory.edu","title":"Emory School of Medicine"},{"url":"https:\/\/bme.gatech.edu\/bme\/","title":"Wallace H. Coulter Department of Biomedical Engineering"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/stanislav-emelianov","title":"Stanislav Emelianov"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"190964","name":"Jinhwan Kim"},{"id":"190965","name":"Pathway to Independence Award (K99\/R00)"},{"id":"2270","name":"National Institutes of Health"},{"id":"2435","name":"ECE"},{"id":"177467","name":"Emory School of Medicine"},{"id":"3264","name":"Wallace H. Coulter Department of Biomedical Engineering"},{"id":"171473","name":"Stanislav Emelianov"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659573":{"#nid":"659573","#data":{"type":"news","title":"Ph.D. Research by Poulami Das Wins Top Award at Design Automation Conference","body":[{"value":"\u003Cp\u003EPoulami Das, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE), has won the \u0026ldquo;Best Research Award\u0026rdquo; at the Ph.D. Forum during this year\u0026rsquo;s Design Automation Conference (DAC).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe Ph.D. Forum at DAC\u0026nbsp;is a poster session hosted by the Association for Computing Machinery Special Interest Group on Design Automation (ACM\u0026nbsp;SIGDA) for Ph.D. students to present and discuss their dissertation research. It has become one of the premier forums for Ph.D. students in design automation to get feedback on their research and for industry to see academic work in progress. Participation in the forum is competitive with acceptance rate of around 30%.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDas was recognized for her Ph.D. thesis research, \u0026ldquo;Architecture and Software for Reliable Quantum Computing.\u0026rdquo; Quantum computers promise substantial speedup for many important applications, but high-error rates of qubit devices limit running quantum programs with high fidelity.\u0026nbsp;Das\u0026rsquo; research bridges this gap by developing compiler optimizations to mitigate errors in the near-term and architecture\/system-level solutions to enable fault-tolerance in the long run.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDas is advised by Moinuddin Qureshi, professor in the College of Computing at Georgia Tech. She is the recipient of the Microsoft Research Ph.D Fellowship and received this year\u0026rsquo;s Colonel Oscar P. Cleaver Award for most outstanding Ph.D. dissertation proposal in ECE.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe 59\u003Csup\u003Eth\u003C\/sup\u003E\u0026nbsp;annual DAC was held July 10-14, 2022, in San Francisco. The conference is recognized as the premier event for the design and design automation of electronic chips to systems. It is sponsored by the Association for Computing Machinery (ACM) and the Institute of Electrical and Electronics Engineers (IEEE) and is supported by ACM\u0026#39;s Special Interest Group on Design Automation (SIGDA)\u0026nbsp;and IEEE\u0026#39;s Council on Electronic Design Automation (CEDA).\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Das was recognized for her Ph.D. thesis research, \u201cArchitecture and Software for Reliable Quantum Computing.\u201d "}],"uid":"36172","created_gmt":"2022-07-21 20:11:33","changed_gmt":"2022-07-21 20:19:16","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-21T00:00:00-04:00","iso_date":"2022-07-21T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659574":{"id":"659574","type":"image","title":"Ph.D. candidate Poulami Das won the \u201cBest Research Award\u201d during the Ph.D. Forum at  DAC.","body":null,"created":"1658434444","gmt_created":"2022-07-21 20:14:04","changed":"1658798973","gmt_changed":"2022-07-26 01:29:33","alt":"Ph.D. candidate Poulami Das won the \u201cBest Research Award\u201d during the Ph.D. Forum at  DAC.","file":{"fid":"249980","name":"Poulami_Poster_DAC.jpeg","image_path":"\/sites\/default\/files\/images\/Poulami_Poster_DAC.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Poulami_Poster_DAC.jpeg","mime":"image\/jpeg","size":3678651,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Poulami_Poster_DAC.jpeg?itok=JbDVTkxF"}},"659575":{"id":"659575","type":"image","title":"Poulami Das at DAC Ph.D. Forum","body":null,"created":"1658434511","gmt_created":"2022-07-21 20:15:11","changed":"1658434511","gmt_changed":"2022-07-21 20:15:11","alt":"The 59th annual DAC was held July 10-14, 2022, in San Francisco. Das won the \u201cBest Research Award\u201d at the Ph.D. Forum.","file":{"fid":"249981","name":"Poulami_DAC.jpeg","image_path":"\/sites\/default\/files\/images\/Poulami_DAC.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Poulami_DAC.jpeg","mime":"image\/jpeg","size":796145,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Poulami_DAC.jpeg?itok=KHSJtYvO"}}},"media_ids":["659574","659575"],"related_links":[{"url":"https:\/\/sites.gatech.edu\/poulamidas\/","title":"Poulami Das"},{"url":"https:\/\/www.dac.com","title":"Design Automation Conference"},{"url":"https:\/\/www.dac.com\/Attend\/Students-Scholarships\/PhD-Forum","title":"DAC Ph.D. Forum"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"181279","name":"Poulami Das"},{"id":"178486","name":"Design Automation Conference"},{"id":"4359","name":"quantum computing"},{"id":"171788","name":"Moinuddin Qureshi"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"658910":{"#nid":"658910","#data":{"type":"news","title":"Researchers Develop Wideband Millimeter Wave Transmit\/Receive Module","body":[{"value":"\u003Cp\u003EResearchers at the Georgia Institute of Technology are developing a wideband four-channel millimeter wave transmit-receive (T\/R) module based on silicon-germanium (SiGe) technology that will support active electronically-scanned arrays (AESA) for potential military applications.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDesigned to operate between 18 GHz and 50 GHz, the module could help address threat systems operating at millimeter wave frequencies and provide to military applications many of the advantages that millimeter wave technology is bringing to commercial applications such as 5G wireless, internet-of-things devices, and radar-based vehicle collision avoidance systems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;The goal is to demonstrate small size, weight, power, and cost in a wideband millimeter wave T\/R module,\u0026rdquo; said Paul Jo, a Georgia Tech Research Institute (GTRI) research engineer who is leading the project. \u0026ldquo;This would be a major module at the front of the AESA system, right behind the radiator element to process signals.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKnown as Millimeter Wave Active Electronically Scanned Array using Silicon-Germanium Transmit\/Receive Modules (MAESTRO), the project represents a collaboration of GTRI and SiGe specialists in Georgia Tech\u0026rsquo;s \u003Ca href=\u0022http:\/\/www.ece.gatech.edu\u0022\u003ESchool of Electrical and Computer Engineering\u003C\/a\u003E. The use of SiGe helps support the high level of integration necessary for the miniaturization required by the module\u0026rsquo;s high-frequency operation.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;When it comes to millimeter wave frequencies, the AESA element lattice is less than one centimeter in size, and at 50 GHz, it\u0026rsquo;s three millimeters, which is very challenging to work with,\u0026rdquo; Jo noted. \u0026ldquo;That forces an extreme level of integration and miniaturization for this T\/R system, which we are addressing through design and fabrication of the small SiGe monolithic microwave integrated circuit (MMIC) die.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers recently completed the fabrication and packaging of a core channel T\/R module die, and are designing an evaluation board to demonstrate performance of the module. Also completed is the fabrication of a stand-alone radiator board for wideband and high-frequency applications; that evaluation board also is under test.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWideband AESAs are an enabling technology for current and future military radar and communications systems by providing rapid beam steering, graceful degradation, electronic production, and low probability of intercept. The atmospheric attenuation of radio-frequency (RF) signals at millimeter wave frequencies is much greater than at microwave frequencies. As a result, high-gain directional apertures such as AESAs are required to propagate energy over tactically relevant distances.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBeyond the high level of integration, the system presents technical challenges related to manufacturing, packaging, and thermal management. For packaging MAESTRO, the research team is evaluating a Flip-Chip Ball Grid Array (FCBGA) solution to reduce the signal path from the die to the printed circuit board.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEarlier in the four-year project, the research team designed and fabricated single-channel and four-channel T\/R modules and measured the RF performance of a chip-on-board (CoB)-assembled single-channel T\/R module. The measured results confirmed that the designed digital control circuitry works for both Tx and Rx modes \u0026ndash; attenuation and true-time delay \u0026ndash; and that the time delay was consistent across the target bandwidth.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe MAESTRO program is a collaboration between GTRI and the research team of \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/john-d-cressler\u0022\u003EJohn Cressler\u003C\/a\u003E, a Regents Professor at the Georgia Tech School of Electrical and Computer Engineering. Cressler\u0026rsquo;s team specializes in SiGe for heterojunction bipolar devices designed to provide high-frequency performance in mixed-signal circuit and analog circuit ICs.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Silicon is a standard technology that industry is using to integrate very complicated systems,\u0026rdquo; Jo noted. \u0026ldquo;Since we needed to integrate the whole T\/R module system into a very small lattice spacing, we decided to use SiGe to integrate all the discrete components.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EDuring testing of the T\/R module, the researchers realized that the receive mode of their system could operate at even lower frequencies \u0026ndash; down to 5 GHz \u0026ndash; giving it an operating range of 5 GHz to 50 GHz. Efforts are underway to expand the range of the transmit mode to accommodate a similarly wider frequency band.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe MAESTRO project is part of a GTRI initiative to use SiGe semiconductor technology for a variety of RF applications. The SiGe Multifunction IC for Radio Frequency (SMIRF) program is developing a wideband, multichannel, reconfigurable radio frequency transceiver integrated circuit using the SiGe technology. The goal is to enable element-level digital beamforming of an AESA for RF-converged multifunction systems to support concurrent operating modes such as radar, communications, electronic warfare, positioning, and signals intelligence (SIGINT).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMAESTRO has been supported by GTRI\u0026rsquo;s Independent Research and Development program.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWriter: John Toon (John.Toon@gtri.gatech.edu)\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGTRI Communications\u003C\/p\u003E\r\n\r\n\u003Cp\u003EGeorgia Tech Research Institute\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAtlanta, Georgia USA\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe\u0026nbsp;\u003Ca href=\u0022https:\/\/gtri.gatech.edu\/\u0022\u003E\u003Cstrong\u003EGeorgia Tech Research Institute (GTRI)\u003C\/strong\u003E\u003C\/a\u003E\u0026nbsp;is the nonprofit, applied research division of the Georgia Institute of Technology (Georgia Tech).\u202fFounded in 1934 as the Engineering Experiment Station, GTRI has grown to more than 2,800 employees, supporting eight laboratories in over 20 locations around the country and performing more than $700 million of problem-solving research annually for government and industry.\u202fGTRI\u0026#39;s renowned researchers combine science, engineering, economics, policy, and technical expertise to solve complex problems for the U.S. federal government, state, and industry.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Researchers at the Georgia Institute of Technology are developing a wideband four-channel millimeter wave transmit-receive (T\/R) module for potential military applications."}],"uid":"35832","created_gmt":"2022-06-15 14:54:10","changed_gmt":"2022-07-07 14:27:29","author":"Michelle Gowdy","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-06-15T00:00:00-04:00","iso_date":"2022-06-15T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"658908":{"id":"658908","type":"image","title":"GTRI researcher Paul Jo ","body":null,"created":"1655304476","gmt_created":"2022-06-15 14:47:56","changed":"1655304476","gmt_changed":"2022-06-15 14:47:56","alt":"","file":{"fid":"249764","name":"MAESTRO_19.jpg","image_path":"\/sites\/default\/files\/images\/MAESTRO_19.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MAESTRO_19.jpg","mime":"image\/jpeg","size":517239,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MAESTRO_19.jpg?itok=VzcjKKui"}},"658909":{"id":"658909","type":"image","title":"Flip-chip ball grid array (FCBGA) quad-channel T\/R module","body":null,"created":"1655304581","gmt_created":"2022-06-15 14:49:41","changed":"1655304581","gmt_changed":"2022-06-15 14:49:41","alt":"","file":{"fid":"249765","name":"MAESTRO_13.jpg","image_path":"\/sites\/default\/files\/images\/MAESTRO_13.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/MAESTRO_13.jpg","mime":"image\/jpeg","size":905345,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/MAESTRO_13.jpg?itok=3A0Ap-0H"}}},"media_ids":["658908","658909"],"groups":[{"id":"1276","name":"Georgia Tech Research Institute (GTRI)"},{"id":"1188","name":"Research Horizons"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"147","name":"Military Technology"}],"keywords":[{"id":"416","name":"GTRI"},{"id":"365","name":"Research"},{"id":"187915","name":"go-researchnews"},{"id":"166902","name":"science and technology"},{"id":"190803","name":"receive module"},{"id":"190804","name":"Wideband Millimeter Wave Transmit"},{"id":"924","name":"national defense"},{"id":"169398","name":"SiGe"},{"id":"190805","name":"process signals"},{"id":"166855","name":"School of Electrical and Computer Engineering"},{"id":"190806","name":"AESA MAESTRO"},{"id":"7141","name":"IRAD"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"},{"id":"39471","name":"Materials"},{"id":"39481","name":"National Security"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E(Interim) Director of Communications\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMichelle Gowdy\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMichelle.Gowdy@gtri.gatech.edu\u003C\/p\u003E\r\n\r\n\u003Cp\u003E404-407-8060\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["michelle.gowdy@gtri.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"659294":{"#nid":"659294","#data":{"type":"news","title":"Droplet Toolbox Opens New Possibilities for Genetic and Drug Screening of Small Animals","body":[{"value":"\u003Cp\u003EGenetic screens and drug screens play an essential role in the understanding of gene functions and the development of therapeutics. Genetic screens can identify genes contributing to a defect or disease state, while drug screens search for treatments that can restore normal function.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ETraditionally, large-scale screens have been performed on single cells because of their small size and cost-efficiency, but with the limitation of missing the complexity of whole animals.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EScreening animals allows for tackling phenotypes more relevant to human diseases, in particular dynamic phenotypes such as brain activity, muscle activity, or behavior. Such screens present huge benefits for the study of neuropsychological disorders and behavioral disorders. However, the challenge is that handling animals is far more challenging than handling single cells\u0026nbsp;\u0026nbsp;\u0026ndash;\u0026nbsp;especially when the need is to scale up to the thousands.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EA team of researchers led by \u003Ca href=\u0022https:\/\/research.gatech.edu\/hang-lu\u0022\u003E\u003Cstrong\u003EHang Lu\u003C\/strong\u003E\u003C\/a\u003E, a professor in Georgia Tech\u0026rsquo;s School of Chemical and Biomolecular Engineering, published a\u0026nbsp;\u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/smll.202200319?af=R\u0022 style=\u0022box-sizing: border-box; color: rgb(26, 13, 171); text-decoration: none;\u0022\u003Epaper\u003C\/a\u003E\u0026nbsp;in the journal\u0026nbsp;\u003Cem\u003ESmall\u003C\/em\u003E\u0026nbsp;on a technological platform that would solve this bottleneck using droplet microfluidics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EEncapsulating microscopic animals in tiny droplets transposes the problem into a different perspective. Instead of manipulating animals directly, one now aims at handling a \u0026ldquo;passive\u0026rdquo; object containing an animal, Lu said. Working with droplets also has several advantages: no cross contamination, small volumes, and a gentle way of trapping and transporting the animal.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Using droplet microfluidics allows for processing animals faster, user bias-free, and with nanoliter amounts of reagents. This platform is ideal to study the animal reactions to dynamic alterations of its chemical environment,\u0026rdquo; Lu said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EStudying\u0026nbsp;\u003Cem\u003EC. elegans\u003C\/em\u003E\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAs a proof of application, the team worked with\u0026nbsp;\u003Cem\u003EC. elegans\u003C\/em\u003E, a freely living nematode that varies in size from a couple hundred microns at the larval stage to one millimeter once adult.\u0026nbsp;\u003Cem\u003EC. elegans\u003C\/em\u003E\u0026nbsp;is a widely used model organism in genetics that was first introduced in the 1960s. Several Nobel Prizes have been rewarded to researchers working on this model.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EBesides having its genome fully sequenced and connectome fully determined, this mainly-hermaphroditic nematode has a large progeny, short reproduction cycle, and is inexpensive to maintain. Altogether, these attributes have established\u0026nbsp;\u003Cem\u003EC. elegans\u003C\/em\u003E\u0026nbsp;as a key organism for large-scale screens. Traditionally, the screens have been performed manually and required months, if not years, of graduate student time and been often limited to somewhat simple animal responses.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe droplet platform may speed up that process as well as broaden the scope of assays performed on the animals. \u0026ldquo;We have developed a droplet toolbox that allows us to manipulate the animals and their environment and perform elaborate automated protocols\u0026rdquo; explained Guillaume Aubry, a research scientist in the Lu lab.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team members first created an animal encapsulation system where each animal is packaged in an aqueous droplet. Then they created various droplet manipulators to alter the animal\u0026rsquo;s environment. In particular, a liquid exchanger allows researchers to swap the animal from one droplet to another. Finally, they established a method for programming protocols and performing tasks automatically.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EIncreased Throughput, Applications\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe researchers demonstrated a throughput of more than a hundred animals per hour for cases of observing the animal behavior in response to a chemical stimulant. They also showed that this platform can be used to monitor brain activity simultaneously, which opens countless applications in neuroscience to decipher neuronal circuitry, dynamics, and correlate brain activity with behavior.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe team explained that the platform is adaptable to other small animals in the micro- to millimetric range. Because the design principle relies on droplets, the system is scalable to accommodate the animal size. As an example, the team scaled down the system to work with the first larval stage of\u0026nbsp;\u003Cem\u003EC. elegans\u003C\/em\u003E, which is considerably smaller, and demonstrated monitoring the larvae\u0026rsquo;s neuronal activity to a sudden change of chemical environment.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Ultimately this platform will help to bridge the gap between environment, genotype, and phenotype,\u0026rdquo; Aubry said. \u0026ldquo;The platform opens up exciting possibilities in particular for the study of neurodevelopmental disorders\u003Cstrong\u003E.\u003C\/strong\u003E\u0026nbsp;With this scalable tool, one can envision monitoring the development of single individuals and assessing their behavioral and neuronal activities over time. Another exciting avenue is to take further advantage of the nanoliter volumes to pursue drug screens, for example on the effect of neuronal activity.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EFunding\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe authors acknowledge National Institute of Health (NIH R21NS117066, R01NS096581, and R01AG056436) for funding. This work was performed in part at the Georgia Tech Institute for Electronics and Nanotechnology, a member of the National Nanotechnology Coordinated Infrastructure (NNCI), which is supported by the National Science Foundation (Grant ECCS-1542174).\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003ECitation\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EG. Aubry, M. Milisavljevic, and Hang Lu \u0026ldquo;Automated and Dynamic Control of Chemical Content in Droplets for Scalable Screens of Small Animals\u0026rdquo; Small\u0026nbsp;\u003Cstrong\u003E18\u003C\/strong\u003E, 2200319 (2022) DOI: 10.1002\/smll.202200319\u0026nbsp;\u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/smll.202200319?af=R\u0022 style=\u0022box-sizing: border-box; color: rgb(26, 13, 171); text-decoration: none;\u0022\u003Ehttps:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/smll.202200319\u003C\/a\u003E\u0026nbsp;(Supplemental Movie 5 and Supplemental Movie 7 of the Supporting Information of the paper)\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Genetic screens and drug screens play an essential role in the understanding of gene functions and the development of therapeutics."}],"uid":"34760","created_gmt":"2022-07-07 14:23:30","changed_gmt":"2022-07-07 14:23:30","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-06-15T00:00:00-04:00","iso_date":"2022-06-15T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659293":{"id":"659293","type":"image","title":"C. elegans","body":null,"created":"1657203042","gmt_created":"2022-07-07 14:10:42","changed":"1657203042","gmt_changed":"2022-07-07 14:10:42","alt":"C. elegans","file":{"fid":"249898","name":"droplet-toolbox-nanoscope.png","image_path":"\/sites\/default\/files\/images\/droplet-toolbox-nanoscope.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/droplet-toolbox-nanoscope.png","mime":"image\/png","size":535908,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/droplet-toolbox-nanoscope.png?itok=xk24oen-"}}},"media_ids":["659293"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"190913","name":"Genetic screens"},{"id":"14566","name":"Gene Therapy"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:brad.dixon@chbe.gatech.edu\u0022\u003EBrad Dixon\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"659229":{"#nid":"659229","#data":{"type":"news","title":"Cleanroom User Spotlight: Alex Weidenbach","body":[{"value":"\u003Cp\u003EAlex Weidenbach is a graduate research assistant and Ph.D. student at Georgia Tech working with W. Alan Doolittle. In the following Q\u0026amp;A, Weidenbach briefly discusses his work in the IEN cleanroom and gives advice to current and future users.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EHow long have you been using the IEN Cleanroom? \u0026nbsp;\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EI was hired as an intern at the Institute for Electronics and Nanotechnology (IEN) in 2014 during my undergraduate studies at Georgia Tech. In this role, I worked with both the processing and equipment teams and gained a wide range of skills in just about every aspect of cleanroom work. Those skills ultimately led to a job at Axion Biosystems, a local BioMEMS company, upon graduation. While at Axion, I continued to work in the inorganic cleanroom on proprietary research on microelectrode arrays (MEAs). I also developed some new fabrication processes to increase Axion\u0026rsquo;s manufacturing throughput. I returned to Georgia Tech to pursue my Ph.D., and I am currently in my fifth year of Ph.D. studies under \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/william-alan-doolittle\u0022\u003EProfessor W. Alan Doolittle\u003C\/a\u003E. All in all, I have been working in the inorganic cleanroom for the past seven years, and I have done everything from tool maintenance to consulting to academic research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat tools do you use when you are in the cleanroom and what are you doing?\u0026nbsp;\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EI primarily use the Denton Discovery 2 sputterer to co-deposit lithium-containing films to make memristive devices for neuromorphic computing applications. To make these films into devices, I frequently use a plethora of tools in the IEN cleanroom which includes the \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=407\u0026amp;DepartmentId=2\u0022\u003ESCS G3P8 Spinner\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=446\u0026amp;DepartmentId=2\u0022\u003EKarl Suss TSA MA-6 Mask aligner\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=1296\u0026amp;DepartmentId=2\u0022\u003EHeidelberg MLA 150\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=370\u0026amp;DepartmentId=2\u0022\u003EVision RIE\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=554\u0026amp;DepartmentId=2\u0022\u003EPlasma Therm ICP\u003C\/a\u003E, \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=3\u0026amp;DepartmentId=2\u0022\u003ECtrLayer AET RTP\u003C\/a\u003E, and the \u003Ca href=\u0022https:\/\/sums.gatech.edu\/SUMS_React\/View_Equipment_React?ToolId=400\u0026amp;DepartmentId=2\u0022\u003ESSI RTP\u003C\/a\u003E. I regularly need photolithography, dry etching, and rapid thermal annealing to finish my devices.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat is\/has been your favorite project you have worked on in the IEN cleanroom? \u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMy own research on memristive devices has been the most rewarding work I\u0026rsquo;ve done in the IEN cleanroom, though I\u0026rsquo;m not sure there has been a project that I did not enjoy. I find fabrication to be mentally satisfying and personally fulfilling, so I find enjoyment in the cleanroom work itself. I especially enjoy interacting with other users, recommending tools, and trying to help improve their process flows.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat advice do you have for people thinking about using a tool in the IEN cleanroom? \u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMy advice to future cleanroom users is to make sure you get trained on multiple tools that can perform the same process. Having backup tools ready in case your favorite tool goes down or you run into issues is an absolute must, and it will save you countless hours in the future. Plan ahead and get trained on as many tools as possible. Also, take care to understand how the tool works and what exactly the tool is doing rather than just learning how to operate it. By knowing what is going on inside the chamber of the tool you are using you can more easily debug your process when you inevitably run into problems or challenges with your devices.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cstrong\u003EWhat is your favorite thing about the IEN Cleanroom?\u0026nbsp;\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EMy favorite things about the IEN cleanroom are the number of tool options and the amount of space available to quickly prototype new devices and explore fabrication processes. There are not many general-use cleanrooms set up to do what IEN does at the scope in which it operates. Having so many tools available really makes exploring new fabrication techniques and replicating research easier.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Weidenbach is a Graduate Research Assistant working on memristive devices in the IEN Cleanroom"}],"uid":"34760","created_gmt":"2022-07-05 13:01:17","changed_gmt":"2022-07-05 13:01:17","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-05T00:00:00-04:00","iso_date":"2022-07-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659228":{"id":"659228","type":"image","title":"IEN Cleanroom User Alex Weidenbach","body":null,"created":"1657024748","gmt_created":"2022-07-05 12:39:08","changed":"1657024748","gmt_changed":"2022-07-05 12:39:08","alt":"Alex Weidenbach","file":{"fid":"249888","name":"Alex Weidenbach-nanoscope.png","image_path":"\/sites\/default\/files\/images\/Alex%20Weidenbach-nanoscope.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Alex%20Weidenbach-nanoscope.png","mime":"image\/png","size":142076,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Alex%20Weidenbach-nanoscope.png?itok=pd5yeLoD"}}},"media_ids":["659228"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"190904","name":"cleanroom user spotlight"},{"id":"190905","name":"memristive devices"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"659227":{"#nid":"659227","#data":{"type":"news","title":"Growing Nanowires to Create Functional Devices for On-Demand Nanoelectronics","body":[{"value":"\u003Cp\u003E\u003Ca href=\u0022https:\/\/research.gatech.edu\/michael-filler\u0022\u003EMichael Filler\u003C\/a\u003E, associate director for research programs in Georgia Tech\u0026rsquo;s Institute for Electronics and Nanotechnology (IEN), was recently featured on the \u0026ldquo;Stories from the NNI\u0026rdquo; podcast. In the episode, Filler discusses balancing functionality and manufacturing scale during the process of making nanowires, his vision for on-demand nanoelectronics, and the benefits of interdisciplinary research.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen it comes to on-demand electronics, Filler and his team are working to develop a process that allows circuits to be built anywhere, without the need for expensive facilities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;There are a lot of folks out there who have built on-demand platforms for circuit boards,\u0026rdquo; Filler explains. \u0026ldquo;But, in terms of nano, in terms of building chips in an on-demand fashion, we don\u0026rsquo;t have that technology.\u0026rdquo; Filler and his team are building a platform to do just that.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EListen to the entire podcast \u003Ca href=\u0022https:\/\/www.youtube.com\/watch?v=z_pOTJ6xGhc\u0022\u003Ehere\u003C\/a\u003E.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELearn more about Filler\u0026rsquo;s work in the \u003Ca href=\u0022http:\/\/www.fillerlab.com\/\u0022\u003EFiller Lab\u003C\/a\u003E at Georgia Tech.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"Michael Filler, associate director for research programs in Georgia Tech\u2019s Institute for Electronics and Nanotechnology, was recently featured on the \u201cStories from the NNI\u201d podcast."}],"uid":"34760","created_gmt":"2022-07-05 11:48:27","changed_gmt":"2022-07-05 11:52:48","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-05T00:00:00-04:00","iso_date":"2022-07-05T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"654488":{"id":"654488","type":"image","title":"IEN Associate Director Michael A. Filler","body":null,"created":"1642513854","gmt_created":"2022-01-18 13:50:54","changed":"1642513854","gmt_changed":"2022-01-18 13:50:54","alt":"Michael FIller","file":{"fid":"248211","name":"filler_headshot.jpg","image_path":"\/sites\/default\/files\/images\/filler_headshot.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/filler_headshot.jpg","mime":"image\/jpeg","size":9773,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/filler_headshot.jpg?itok=Bb-Ck3cc"}}},"media_ids":["654488"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"7074","name":"nanowires"},{"id":"190903","name":"on-demand electronics"},{"id":"107","name":"Nanotechnology"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@gmail.com\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"659222":{"#nid":"659222","#data":{"type":"news","title":"Georgia Tech Researchers Share Knowledge at 20th Hilton Head Workshop","body":[{"value":"\u003Cp\u003EHundreds of researchers gathered in Hilton Head, SC, from June 5-9, for the \u003Ca name=\u0022_Hlk107579741\u0022\u003E\u003C\/a\u003E\u003Ca href=\u0022https:\/\/www.hh2022.org\/\u0022\u003E2022 Hilton Head Solid-State Sensors, Actuators, and Microsystems Workshop\u003C\/a\u003E. This was the 20\u003Csup\u003Eth\u003C\/sup\u003E meeting of the biennial event, which is known as one of the premier workshops for researchers to discuss recent advances in microelectromechanical systems (MEMS).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe workshop started in 1984 and draws attendees from academia, industry, and government organizations with diverse backgrounds in engineering and science. It opened to international attendees in 2020 and provides a forum for knowledge exchange and collaboration. This year\u0026rsquo;s theme was \u0026quot;Preparation and Prevention: Tackling our Grand Challenges.\u0026quot;\u003C\/p\u003E\r\n\r\n\u003Cp\u003ENine papers from Georgia Tech researchers in the \u003Ca href=\u0022https:\/\/research.gatech.edu\/nano\u0022\u003EInstitute for Electronics and Nanotechnology\u003C\/a\u003E (IEN) were accepted to the conference. The paper, \u003Cem\u003EA Microtip Equipped Bidirectional Microrobot for Navigating on and Penetrating a Leaf Surface\u003C\/em\u003E, presented by \u003Cstrong\u003ETony H. Wang\u003C\/strong\u003E, \u003Cstrong\u003EDea Gyu Kim\u003C\/strong\u003E, \u003Cstrong\u003EZhijian Hao\u003C\/strong\u003E, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/azadeh-ansari\u0022\u003E\u003Cstrong\u003EAzadeh Ansari\u003C\/strong\u003E\u003C\/a\u003E, won the \u003Ca href=\u0022https:\/\/www.hh2022.org\/awards\/best_paper_and_poster.html\u0022\u003ESpringer Nature Best Poster Award\u003C\/a\u003E. In addition, the paper \u003Cem\u003EWafer-Level High-Aspect-Ratio Deep Reactive Ion Etching of 4h-Silicon Carbide on Insulator Substrates\u003C\/em\u003E presented by \u003Cstrong\u003EArdalan Lotfi\u003C\/strong\u003E, \u003Cstrong\u003EMicheal P. Hardin\u003C\/strong\u003E, \u003Cstrong\u003EZhenming Liu\u003C\/strong\u003E, Alex Wood, Chris Bolton, Kevin Riddell, Huma Ashraf, Joanne Carpenter, and \u003Ca href=\u0022https:\/\/research.gatech.edu\/farrokh-ayazi\u0022\u003E\u003Cstrong\u003EFarrokh Ayazi\u003C\/strong\u003E\u003C\/a\u003E, was one of two runners up in the category.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;I consider this the flagship North American conference for MEMS researchers,\u0026rdquo; said IEN Executive Director \u003Ca href=\u0022https:\/\/research.gatech.edu\/oliver-brand\u0022\u003E\u003Cstrong\u003EOliver Brand\u003C\/strong\u003E\u003C\/a\u003E. \u0026ldquo;It is a highly interactive workshop and a great opportunity for our graduate students to learn about the newest research and mingle with their peers from the top MEMS research groups across the country.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn addition to Georgia Tech\u0026rsquo;s strong presence in paper presentations, IEN Principal Research Scientist \u003Ca href=\u0022https:\/\/research.gatech.edu\/paul-joseph\u0022\u003E\u003Cstrong\u003EPaul Joseph\u003C\/strong\u003E\u003C\/a\u003E ran a \u003Ca href=\u0022https:\/\/nnci.net\/\u0022\u003ENational Nanotechnology Coordinated Infrastructure\u003C\/a\u003E (NNCI) booth to spread the word about the initiative, which the National Science Foundation funds. Ansari, Brand, Ayazi, and \u003Ca href=\u0022https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/nima-ghalichechian\u0022\u003E\u003Cstrong\u003ENima Ghalichechian\u003C\/strong\u003E\u003C\/a\u003E also served on the local organizing committee, and IEN sponsored the workshop.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe other papers presented at the workshop are listed below:\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EPower Handling Challenges of High K\u003Cstrong\u003E\u003Csub\u003ET\u003C\/sub\u003E\u003Csup\u003E2\u003C\/sup\u003E\u003C\/strong\u003E AlScN Lamb Wave Resonators\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003EMingyo Park\u003C\/strong\u003E, \u003Cstrong\u003EYue Zheng\u003C\/strong\u003E, and \u003Cstrong\u003EAzadeh Ansari\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EExploiting Nonlinear Properties of VO\u003Csub\u003E2\u003C\/sub\u003E in a mmWave Antenna-Coupled Sensor\u003C\/em\u003E\u003Cbr \/\u003E\r\nShangyi Chen, Mark Lust, and \u003Cstrong\u003ENima Ghalichechian\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EA High-Q Solid Disk BAW Gyroscope in Monocrystalline 4h Silicon-Carbide with Sub-PPM As-Born Frequency Split\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003EZhenming\u003C\/strong\u003E \u003Cstrong\u003ELiu\u003C\/strong\u003E, \u003Cstrong\u003EArdalan Lotfi\u003C\/strong\u003E, \u003Cstrong\u003EMichael P. Hardin\u003C\/strong\u003E, and \u003Cstrong\u003EFarrokh Ayazi\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EUtilization of Varying Transient Response Times in Gravimetric and Impedimetric Multivariate Gas Sensor with Single Polymeric Sensing Film for Enhanced Selectivity\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003ESteven A. Schwartz\u003C\/strong\u003E, \u003Cstrong\u003ELuke A. Beardslee\u003C\/strong\u003E, and \u003Cstrong\u003EOliver Brand\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EAn Out-of-Plane Wide Bandwidth Micro-G FM Accelerometer with Differential Output\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003ESeungyong Shin\u003C\/strong\u003E, \u003Cstrong\u003ETanya Chauhan\u003C\/strong\u003E, \u003Cstrong\u003EJustin Matthews\u003C\/strong\u003E, Haoran Wen, and \u003Cstrong\u003EFarrokh Ayazi\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EEnhancement of Q and K\u003Csup\u003E2\u003C\/sup\u003E in AL\u003Csub\u003E0.8\u003C\/sub\u003ESC\u003Csub\u003E0.2\u003C\/sub\u003EN\/GAN\/Sapphire Surface Acoustic Wave Resonators Using Semiconductor Ground Contact\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003EYue Zheng\u003C\/strong\u003E, \u003Cstrong\u003EJialin Wang\u003C\/strong\u003E, \u003Cstrong\u003EMingyo Park\u003C\/strong\u003E, Ping Wang, Ding Wang, Zetian Mi, and \u003Cstrong\u003EAzadeh Ansari\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EPiezoresistive Micro-Pillar Sensor for In-Plane Force Sensing for Biological Applications\u003C\/em\u003E\u003Cbr \/\u003E\r\n\u003Cstrong\u003EIsha Lodhi\u003C\/strong\u003E, \u003Cstrong\u003EDurga Gajula\u003C\/strong\u003E, \u003Cstrong\u003EDevin K. Brown\u003C\/strong\u003E, \u003Cstrong\u003EWilbur A. Lam\u003C\/strong\u003E, \u003Cstrong\u003EDavid R. Myers\u003C\/strong\u003E, and \u003Cstrong\u003EOliver Brand\u003C\/strong\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Ca href=\u0022https:\/\/www.hh2022.org\/about\/workshop_info.html\u0022\u003E\u003Cstrong\u003ELearn more about the Hilton Head Workshop\u003C\/strong\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"This was the 20th meeting of the biennial event, which is known as one of the premier workshops for researchers to discuss recent advances in microelectromechanical systems."}],"uid":"34760","created_gmt":"2022-07-01 19:26:20","changed_gmt":"2022-07-01 20:32:15","author":"Laurie Haigh","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-07-01T00:00:00-04:00","iso_date":"2022-07-01T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659221":{"id":"659221","type":"image","title":"Georgia Tech faculty, students, and alumni gather at the 2022 Hilton Head Solid-State Sensors, Actuators, and Microsystems Workshop.","body":null,"created":"1656703202","gmt_created":"2022-07-01 19:20:02","changed":"1656703202","gmt_changed":"2022-07-01 19:20:02","alt":"Georgia Tech faculty, students, and alumni gather at the 2022 Hilton Head Solid-State Sensors, Actuators, and Microsystems Workshop.","file":{"fid":"249887","name":"HH2022.png","image_path":"\/sites\/default\/files\/images\/HH2022.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/HH2022.png","mime":"image\/png","size":570694,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/HH2022.png?itok=S-UfYo-Y"}}},"media_ids":["659221"],"groups":[{"id":"197261","name":"Institute for Electronics and Nanotechnology"}],"categories":[],"keywords":[{"id":"187433","name":"go-ien"},{"id":"190898","name":"nanotechnology conference"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Ca href=\u0022mailto:laurie.haigh@research.gatech.edu\u0022\u003ELaurie Haigh\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":[],"slides":[],"orientation":[],"userdata":""}},"659193":{"#nid":"659193","#data":{"type":"news","title":"Zheng Receives 3rd Place Best Student Paper Award at International Microwave Symposium ","body":[{"value":"\u003Cp\u003ETing Zheng, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE), has received the 3rd\u0026nbsp;place Best Student Paper Award from IEEE International Microwave Symposium (IMS).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn Zheng\u0026rsquo;s paper entitled, \u0026ldquo;Fused-Silica Stitch-Chips with Compressible Microinterconnects for Embedded RF\/mm-Wave Chiplets,\u0026rdquo; a fused-silica stitch-chip technology is proposed for seamless heterogeneous integration of commercial off-the-shelf (COTS)\u0026nbsp;RF\/mm-wave (radio frequency\/millimeter)-wave chiplets. A chiplet is part of a processing module that allows manufacturers to use multiple smaller chips to make up a larger integrated circuit. Zheng\u0026rsquo;s proposed\u0026nbsp;stitch-chips design has exhibited superior RF\/mm-wave performance compared to conventional wire-bonds; stitch-chips directly interconnect two neighboring active die using low-loss and impedance optimized transitions thereby circumventing typical packaging losses and discontinuities. The technology features several other benefits, including\u0026nbsp;compressible microinterconnects (CMIs), which are mechanically flexible off-chip I\/Os (input\/output) and are utilized to interface the stitch-chips with the COTS chiplets to enable unique assembly capabilities.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIMS\u0026rsquo;s Student Paper Competition is held every year to identify and recognize outstanding technical contributions from individual students. The symposium is the flagship event in a week dedicated to all things microwaves and RF.\u0026nbsp;This year\u0026rsquo;s symposium was held 19-24 June 2022 in Denver, Colo., and also included the IEEE MTT-S Radio Frequency Integrated Circuits Symposium (RFIC) and the Automatic Radio Frequency Techniques Group (ARFTG).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EZheng is advised by Muhannad S. Bakir, Dan Fielder Professor in ECE.\u0026nbsp;The Bakir lab has received more than 30 best publication awards,\u0026nbsp;including six from the IEEE Electronic Components and Technology Conference (ECTC), four from the IEEE International Interconnect Technology Conference (IITC), one (best invited paper) from the IEEE Custom Integrated Circuits Conference (CICC), and two from the IEEE Transactions on Components Packaging and Manufacturing Technology (TCPMT).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis work is supported by the United States Air Force under Contract FA8650-20-C-1003, and performed in part at the Georgia Tech Institute for Electronics and Nanotechnology, a member of the National Nanotechnology Coordinated Infrastructure (NNCI), which is supported by the National Science Foundation under Grant ECCS-2025462.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"IMS\u2019s Student Paper Competition is held every year to identify and recognize outstanding technical contributions from individual students. "}],"uid":"36172","created_gmt":"2022-06-30 17:56:06","changed_gmt":"2022-06-30 17:56:06","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-06-30T00:00:00-04:00","iso_date":"2022-06-30T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"659191":{"id":"659191","type":"image","title":"Ting Zheng, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE)","body":null,"created":"1656611606","gmt_created":"2022-06-30 17:53:26","changed":"1656611606","gmt_changed":"2022-06-30 17:53:26","alt":"Ting Zheng, a Ph.D. candidate in the Georgia Tech School of Electrical and Computer Engineering (ECE)","file":{"fid":"249873","name":"Ting Zheng.jpeg","image_path":"\/sites\/default\/files\/images\/Ting%20Zheng.jpeg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Ting%20Zheng.jpeg","mime":"image\/jpeg","size":425431,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Ting%20Zheng.jpeg?itok=CEXApz8J"}}},"media_ids":["659191"],"related_links":[{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/muhannad-s-bakir","title":"Muhannad S. Bakir "},{"url":"https:\/\/ims-ieee.org","title":"IEEE International Microwave Symposium "}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"8862","name":"Student Research"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"190874","name":"Ting Zheng"},{"id":"99661","name":"Muhannad S. Bakir"},{"id":"38431","name":"IEEE International Microwave Symposium"},{"id":"190875","name":"stitch-chips"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"658523":{"#nid":"658523","#data":{"type":"news","title":"3D in a Snap: Jia Lab Develops Next Generation System for Imaging Organoids","body":[{"value":"\u003Cp\u003EBiomedical researchers develop and use organoids as a tool for studying human development and disease. These little lab-grown cultures mimic human organs and provide a sharp view of tissue development, drug interaction, and other biochemical functions, offering an innovative approach to personalized medicine.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Getting detailed 3D images of these miniature models of organs, and getting a good look at how they change under different conditions or stimulation, can tell us a lot about how the body works,\u0026rdquo; said Shuichi Takayama, professor and Price Gilbert Jr. Chair in Regenerative Engineering and Medicine in the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University. \u0026ldquo;It can tell us how diseases progress, or how mechanical forces and certain drugs may change or affect cellular behavior.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe trick is in getting those detailed images. Fluorescence 3D microscopy has helped transform the study of organoids at the cellular and subcellular levels \u0026mdash; though with a few drawbacks. Conventional methods are time consuming and don\u0026rsquo;t adequately capture the fast, dynamic, sometimes unpredictable cellular and tissue processes of these model systems.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ENow, a team of Georgia Tech researchers has\u0026nbsp;built a better system to quickly produce high-resolution 3D images in real time, providing a quantitative analysis of organoids. Led by Coulter BME Assistant Professor Shu Jia, their custom-built microscope can reconstruct a comprehensive 3D representation with a single camera image.\u0026nbsp;\u003Ca href=\u0022https:\/\/doi.org\/10.1016\/j.bios.2022.114201\u0022\u003EThey described their system in the journal\u0026nbsp;\u003Cem\u003EBiosensors and Bioelectronics.\u003C\/em\u003E\u003C\/a\u003E\u003C\/p\u003E\r\n\r\n\u003Cp\u003EJia\u0026rsquo;s new system builds on his lab\u0026rsquo;s growing body of work in\u0026nbsp;\u003Ca href=\u0022https:\/\/sites.google.com\/site\/thejialab\/\u0022\u003Enext-generation imaging systems.\u003C\/a\u003E\u0026nbsp;\u0026nbsp;Conventional 3D imaging technologies rely on time-consuming, redundant scanning-based techniques, which can result in damaged cells and compromised images. Jia\u0026rsquo;s team has pioneered a faster light-field system that provides greater resolution and minimizes photo damage. Their new system does all of that and more.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;This latest system is novel because it is entirely custom-built for imaging at the tissue and animal scale,\u0026rdquo; said Jia, who earlier this year received a\u0026nbsp;\u003Ca href=\u0022https:\/\/bme.gatech.edu\/bme\/news\/shu-jia-building-next-gen-imaging-live-cells-nsf-career-award\u0022\u003ECAREER award from the National Science Foundation\u003C\/a\u003E. \u0026ldquo;We built everything from scratch on an optical table.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EAdding a hybrid point-spread function to the new system allows researchers to capture scanning-free recordings of intact organoids in all of their dynamic glory in milliseconds instead of minutes or even hours using conventional methods. With a single camera image, Jia\u0026rsquo;s system can reconstruct a time-lapse observation of the 3D volume of the samples.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We can look \u0026mdash; cell by cell \u0026mdash; throughout the entire organoid, in high spatial and time resolution, and see from multiple angles what happens as a result of an external perturbation, or a response to a specific drug, or any change in the overall environment,\u0026rdquo; Jia said.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHe said the imaging systems coming out of his lab have the potential to transform conventional 3D microscopy.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;Because this is a custom-built system, it\u0026rsquo;s very flexible and adaptive,\u0026rdquo; he added. \u0026ldquo;It works with organoids, but similarly, it can work with animal models. I think we can extend this method to different areas of research. There are a number of potential collaborations we are exploring.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u003Cem\u003EThis research was supported by the\u0026nbsp;National Institutes of Health (grant Nos. R35GM124846 and AI116482) and the National Science Foundation (grant Nos. EFMA1830941 and 2145235). Any opinions, findings, and conclusions or recommendations expressed in this material are those of the authors and do not necessarily reflect the views of any funding agency.\u003C\/em\u003E\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"3D in a Snap: Jia Lab Develops Next Generation System for Imaging Organoids"}],"uid":"28153","created_gmt":"2022-05-25 23:54:37","changed_gmt":"2022-06-27 13:06:59","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-05-25T00:00:00-04:00","iso_date":"2022-05-25T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"658520":{"id":"658520","type":"image","title":"Jia research photo","body":null,"created":"1653521863","gmt_created":"2022-05-25 23:37:43","changed":"1653521863","gmt_changed":"2022-05-25 23:37:43","alt":"","file":{"fid":"249630","name":"Jia-Liu-Colon-Organoid-SI7-3x2-h.png","image_path":"\/sites\/default\/files\/images\/Jia-Liu-Colon-Organoid-SI7-3x2-h_1.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Jia-Liu-Colon-Organoid-SI7-3x2-h_1.png","mime":"image\/png","size":479193,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Jia-Liu-Colon-Organoid-SI7-3x2-h_1.png?itok=BzNFMIAY"}},"658522":{"id":"658522","type":"image","title":"Jia organoid","body":null,"created":"1653522287","gmt_created":"2022-05-25 23:44:47","changed":"1653522287","gmt_changed":"2022-05-25 23:44:47","alt":"","file":{"fid":"249632","name":"Jia-Liu-Colon-Organoid-with-cell-inset-sq.png","image_path":"\/sites\/default\/files\/images\/Jia-Liu-Colon-Organoid-with-cell-inset-sq_0.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Jia-Liu-Colon-Organoid-with-cell-inset-sq_0.png","mime":"image\/png","size":940400,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Jia-Liu-Colon-Organoid-with-cell-inset-sq_0.png?itok=f2FUDtGO"}},"658521":{"id":"658521","type":"image","title":"Jia and Takayama","body":null,"created":"1653522212","gmt_created":"2022-05-25 23:43:32","changed":"1653522212","gmt_changed":"2022-05-25 23:43:32","alt":"","file":{"fid":"249631","name":"jia takayama.jpg","image_path":"\/sites\/default\/files\/images\/jia%20takayama.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/jia%20takayama.jpg","mime":"image\/jpeg","size":426261,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/jia%20takayama.jpg?itok=ltK-tV_X"}}},"media_ids":["658520","658522","658521"],"groups":[{"id":"1188","name":"Research Horizons"}],"categories":[],"keywords":[{"id":"190685","name":"3d imaging"},{"id":"189364","name":"organoids"},{"id":"190686","name":"colon cancer"},{"id":"187915","name":"go-researchnews"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003EWriter:\u003Ca href=\u0022mailto:jerry.grillo@ibb.gatech.edu\u0022\u003E Jerry Grillo\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["Jerry.grillo@ibb.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"658676":{"#nid":"658676","#data":{"type":"news","title":"Lim and Team Win 2022 Transactions on Computer-Aided Design Best Paper Award","body":[{"value":"\u003Cp\u003EProfessor Sung Kyu Lim and his research team have won the 2022 Donald O. Pederson Best Paper Award for their paper\u0026nbsp;\u003Ca href=\u0022https:\/\/gtcad.gatech.edu\/www\/papers\/08894429.pdf\u0022\u003E\u0026ldquo;Compact-2D: A\u0026nbsp;Physical\u0026nbsp;Design\u0026nbsp;Methodology\u0026nbsp;to\u0026nbsp;Build\u0026nbsp;Two-Tier\u0026nbsp;Gate-Level\u0026nbsp;3D\u0026nbsp;ICs.\u0026rdquo;\u003C\/a\u003E\u0026nbsp;The prestigious award recognizes the best paper published in IEEE\u0026rsquo;s Transactions on Computer-Aided Design of Integrated Circuits and Systems (IEEE TCAD), the flagship journal of the IEEE Council on Electronic Design Automation (CEDA).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe paper presents a physical design tool named Compact-2D that automatically builds high-density and commercial-quality monolithic three-dimensional integrated circuits\u0026nbsp;(3D ICs). Compact-2D offers first-of-its-kind algorithms and methodologies in partitioning, floorplanning, placement, routing, and timing closure, all targeting 3D ICs under stringent power, performance, and area optimization goals.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe pioneering design leverages the commercial tools readily available for the conventional 2D ICs and extends their capabilities while adding key missing tools to produce 3D IC designs. These extensions include new and better algorithms for physical design automation that simultaneously optimize x, y, and z-dimensions in the design space. With Compact-2D, the team produced 3D IC designs that outperform commercial-quality 2D IC designs for the first time and paved the way for widescale 3D IC proliferation.\u003C\/p\u003E\r\n\r\n\u003Cp\u003ELim, Motorola Solutions Foundation Professor in the Georgia Tech School of Electrical and Computer Engineer (ECE), co-wrote the paper with Bon Woong Ku (former ECE Ph.D. student currently at Synopsys) and Kyungwook Chang (former ECE Ph.D. student currently teaching at Sungkyunkwan University).\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe award, sponsored by the IEEE Council on Electronic Design Automation (CEDA), is based on the overall quality, the originality, the level of contribution, the subject matter, and the timeliness of the research. It will be presented to the Georgia Tech team at this year\u0026rsquo;s Design Automation Conference (DAC) taking place in July 10-14 in San Francisco.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"The paper presents a physical design tool named Compact-2D that automatically builds high-density and commercial-quality monolithic three-dimensional integrated circuits (3D ICs). "}],"uid":"36172","created_gmt":"2022-06-02 23:37:24","changed_gmt":"2022-06-23 13:34:38","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-06-02T00:00:00-04:00","iso_date":"2022-06-02T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"657975":{"id":"657975","type":"image","title":"Sung-Kyu Lim 2022","body":null,"created":"1651706638","gmt_created":"2022-05-04 23:23:58","changed":"1651706638","gmt_changed":"2022-05-04 23:23:58","alt":"","file":{"fid":"249412","name":"Sung-Kyu Lim _72.jpg","image_path":"\/sites\/default\/files\/images\/Sung-Kyu%20Lim%20_72.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sung-Kyu%20Lim%20_72.jpg","mime":"image\/jpeg","size":322188,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sung-Kyu%20Lim%20_72.jpg?itok=bOuztOSq"}},"658696":{"id":"658696","type":"image","title":"Sungkyu Lim Circuit","body":null,"created":"1654273444","gmt_created":"2022-06-03 16:24:04","changed":"1654273444","gmt_changed":"2022-06-03 16:24:04","alt":"2-Tier Logic-on-Memory 3D IC Physical Design obtained with Compact-2D","file":{"fid":"249686","name":"Sungkyu Lim Circuit.jpg","image_path":"\/sites\/default\/files\/images\/Sungkyu%20Lim%20Circuit.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Sungkyu%20Lim%20Circuit.jpg","mime":"image\/jpeg","size":306107,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Sungkyu%20Lim%20Circuit.jpg?itok=cM3AGiUW"}},"658688":{"id":"658688","type":"image","title":"Sungkyu Lim Compact-2D","body":null,"created":"1654259998","gmt_created":"2022-06-03 12:39:58","changed":"1654271197","gmt_changed":"2022-06-03 15:46:37","alt":"","file":{"fid":"249680","name":"Lim_Compact 2D Design.png","image_path":"\/sites\/default\/files\/images\/Lim_Compact%202D%20Design.png","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/Lim_Compact%202D%20Design.png","mime":"image\/png","size":206450,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Lim_Compact%202D%20Design.png?itok=GhMVgFPi"}}},"media_ids":["657975","658696","658688"],"related_links":[{"url":"https:\/\/gtcad.gatech.edu\/www\/papers\/08894429.pdf","title":"Compact-2D: A\u00a0Physical\u00a0Design\u00a0Methodology\u00a0to\u00a0Build\u00a0Two-Tier\u00a0Gate-Level\u00a03D\u00a0ICs"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/sung-kyu-lim","title":"Sung Kyu Lim"},{"url":"https:\/\/ieee-ceda.org\/awards\/ieee-transactions-computer-aided-design-donald-o-pederson-best-paper-award","title":"2022 Donald O. Pederson Best Paper Award"},{"url":"https:\/\/ieee-ceda.org\/publication\/ieee-transactions-computer-aided-design-integrated-circuits-systems-tcad","title":"IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems: "},{"url":"https:\/\/ieee-ceda.org","title":"IEEE Council on Electronic Design Automation"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"134","name":"Student and Faculty"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"},{"id":"149","name":"Nanotechnology and Nanoscience"}],"keywords":[{"id":"171018","name":"Sung Kyu Lim"},{"id":"190740","name":"Bon Woong Ku"},{"id":"190741","name":"Kyungwook Chang"},{"id":"190742","name":"2022 Donald O. Pederson Best Paper Award"},{"id":"190743","name":"Compact-2D"},{"id":"180826","name":"3D ICs"},{"id":"190744","name":"IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems"},{"id":"190745","name":"Electronic Design Automation"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}},"658710":{"#nid":"658710","#data":{"type":"news","title":"Krishna Inducted into HPCA Hall of Fame","body":[{"value":"\u003Cp\u003EWith his eighth and ninth papers published in this year\u0026rsquo;s IEEE International Symposium on High-Performance Computer Architecture (HPCA), Tushar Krishna has been inducted into the organization\u0026rsquo;s Hall of Fame. Only 10 members of the HPCA community were inducted to the Hall of Fame this year \u0026mdash; a significant distinction reserved for researchers with eight or more papers appearing in the proceedings of the symposium.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe 28th HPCA Symposium took place virtually April 2-6, 2022, where Krishna, an associate professor in Georgia Tech\u0026rsquo;s School of Electrical and Computer Engineering (ECE),\u0026nbsp;was honored. The Symposium is hosted by IEEE (Institute of Electrical and Electronics Engineers) and provides a high-quality forum for scientists and engineers to present their latest research findings in the rapidly changing field.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKrishna had two papers at HPCA 2022. The first was titled \u0026ldquo;MAGMA: An Optimization Framework for Mapping Multiple DNNs on Multiple Accelerator Cores\u0026rdquo;. ECE Ph.D. student Sheng-Chun Kao co-authored the paper. It presented a software scheduler for efficiently mapping multiple Deep Neural Networks (DNN) on emerging hardware platforms that include multiple AI accelerators. An AI Accelerator refers to specialized hardware optimized for running AI workloads.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe second paper, \u0026ldquo;Stay in your Lane: A NoC with Low-overhead Multi-packet Bypassing\u0026rdquo; was co-authored with collaborators from University of Toronto, Texas A\u0026amp;M University, and University of Wisconsin-Madison. It presented a technique for packets stuck at routers in networks on chip (NoC) due to congestion or deadlocks to progress to their destination via high-priority bypass paths.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EHis research team in Synergy Lab at Georgia Tech won the Best Paper Award at the 26th HPCA Symposium in 2020. The team\u0026rsquo;s award-winning paper, \u0026quot;SIGMA: A Sparse and Irregular GEMM Accelerator with Flexible Interconnects for DNN Training,\u0026rdquo; showcased SIGMA, a flexible and scalable AI Accelerator that offers high utilization of all its processing elements for Deep learning (DL) \u0026mdash; the premier algorithmic technique for analyzing data across multiple domains, especially in visual understanding, speech perception, and automated reasoning.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EKrishna has been an ECE faculty member since 2015 with an adjunct appointment in the School of Computer Science. He held the ON Semiconductor Junior Professorship in ECE from 2019-2021. He serves as an associate director for the Center for Research into Novel Computing Hierarchies (CRNCH). Krishna\u0026rsquo;s research spans computer architecture, interconnection networks, networks-on-chip (NoC), and deep learning accelerators \u0026ndash; with a focus on optimizing data movement in modern computing systems. His research is funded via multiple awards from NSF, DARPA, IARPA, Department of Energy, Intel, Google, Facebook, Qualcomm and TSMC. His papers have been cited over 11,000 times. Three of his papers have been selected for IEEE Micro\u0026rsquo;s Top Picks from Computer Architecture, one more received an honorable mention, and four have won best paper awards. He received the \u0026ldquo;Class of 1940 Course Survey Teaching Effectiveness\u0026rdquo; Award from Georgia Tech in 2018 and the \u0026ldquo;Roger P. Webb Outstanding Junior Faculty Award\u0026rdquo; from the School of ECE in Georgia Tech in 2021.\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":"","field_summary":"","field_summary_sentence":[{"value":"A significant distinction reserved for researchers with eight or more papers appearing in the proceedings of the symposium."}],"uid":"36172","created_gmt":"2022-06-06 14:13:41","changed_gmt":"2022-06-23 13:31:57","author":"dwatson71","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2022-06-06T00:00:00-04:00","iso_date":"2022-06-06T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"628639":{"id":"628639","type":"image","title":"Assistant Professor Tushar Krishna","body":null,"created":"1573005071","gmt_created":"2019-11-06 01:51:11","changed":"1573005071","gmt_changed":"2019-11-06 01:51:11","alt":"Assistant Professor Tushar Krishna","file":{"fid":"239419","name":"codesign-005.jpg","image_path":"\/sites\/default\/files\/images\/codesign-005.jpg","image_full_path":"http:\/\/hg.gatech.edu\/\/sites\/default\/files\/images\/codesign-005.jpg","mime":"image\/jpeg","size":488782,"path_740":"http:\/\/hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/codesign-005.jpg?itok=6J_kOLpr"}}},"media_ids":["628639"],"related_links":[{"url":"https:\/\/hpca-conf.org\/2022\/","title":"IEEE International Symposium on High-Performance Computer Architecture"},{"url":"https:\/\/www.ece.gatech.edu\/faculty-staff-directory\/tushar-krishna","title":"Tushar Krishna"}],"groups":[{"id":"1255","name":"School of Electrical and Computer Engineering"}],"categories":[{"id":"129","name":"Institute and Campus"},{"id":"135","name":"Research"},{"id":"145","name":"Engineering"}],"keywords":[{"id":"190750","name":"IEEE International Symposium on High-Performance Computer Architecture"},{"id":"2435","name":"ECE"},{"id":"173453","name":"Tushar Krishna"},{"id":"178072","name":"Deep Neural Networks"},{"id":"187433","name":"go-ien"}],"core_research_areas":[{"id":"39431","name":"Data Engineering and Science"},{"id":"39451","name":"Electronics and Nanotechnology"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[{"value":"\u003Cp\u003E\u003Cstrong\u003EDan Watson\u003C\/strong\u003E\u003Cbr \/\u003E\r\n\u003Ca href=\u0022http:\/\/dwatson@ece.gatech.edu\u0022\u003Edwatson@ece.gatech.edu\u003C\/a\u003E\u003C\/p\u003E\r\n","format":"limited_html"}],"email":["dwatson@ece.gatech.edu"],"slides":[],"orientation":[],"userdata":""}}}