<node id="672524">
  <nid>672524</nid>
  <type>external_news</type>
  <uid>
    <user id="34434"><![CDATA[34434]]></user>
  </uid>
  <created>1706542774</created>
  <changed>1706542774</changed>
  <title><![CDATA[Inferring chemical disequilibrium biosignatures for Proterozoic Earth-like exoplanets]]></title>
  <body><![CDATA[<p>Chemical disequilibrium quantified using the available free energy has previously been proposed as a potential biosignature. However, researchers remotely sensing exoplanet biosignatures have not yet investigated how observational uncertainties impact the ability to infer a life-generated available free energy. This study's researchers pair an atmospheric retrieval tool to a thermodynamics model to assess the detectability of chemical disequilibrium signatures of Earth-like exoplanets, focusing on the Proterozoic eon when the atmospheric abundances of oxygen–methane disequilibrium pairs may have been relatively high. One of the study's authors is <a href="https://eas.gatech.edu/people/reinhard-dr-chris">Chris Reinhard</a>, associate professor in the <a href="https://eas.gatech.edu">School of Earth and Atmospheric Sciences</a>.&nbsp;</p>
]]></body>
  <field_article_url>
    <item>
      <url><![CDATA[https://www.nature.com/articles/s41550-023-02145-z]]></url>
      <title><![CDATA[]]></title>
    </item>
  </field_article_url>
  <field_publication>
    <item>
      <value><![CDATA[ Nature Astronomy  ]]></value>
    </item>
  </field_publication>
  <field_dateline>
    <item>
      <value>2024-01-22</value>
      <timezone></timezone>
    </item>
  </field_dateline>
  <field_media>
        </field_media>
  <og_groups>
          <item>1278</item>
          <item>364801</item>
      </og_groups>
  <og_groups_both>
          <item><![CDATA[College of Sciences]]></item>
          <item><![CDATA[School of Earth and Atmospheric Sciences (EAS)]]></item>
      </og_groups_both>
    <field_userdata><![CDATA[]]></field_userdata>
</node>
