Title of article
Photochemical escape of oxygen from early Mars
Author/Authors
Zhao، نويسنده , , Jinjin and Tian، نويسنده , , Feng، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2015
Pages
5
From page
477
To page
481
Abstract
Photochemical escape is an important process for oxygen escape from present Mars. In this work, a 1-D Monte-Carlo Model is developed to calculate escape rates of energetic oxygen atoms produced from O2+ dissociative recombination reactions (DR) under 1, 3, 10, and 20 times present solar XUV fluxes. We found that although the overall DR rates increase with solar XUV flux almost linearly, oxygen escape rate increases from 1× to 10× present solar XUV conditions but decreases when increasing solar XUV flux further. Analysis shows that atomic species in the upper thermosphere of early Mars increases more rapidly than O2+ when increasing XUV fluxes. While the latter is the source of energetic O atoms, the former increases the collision probability and thus decreases the escape probability of energetic O. Our results suggest that photochemical escape be a less important escape mechanism than previously thought for the loss of water and/or CO2 from early Mars.
Keywords
Atmospheres , Evolution , Mars , Atmosphere , photochemistry
Journal title
Icarus
Serial Year
2015
Journal title
Icarus
Record number
2383912
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