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Photochemical depletion of heavy CO isotopes in the Martian atmosphere
by
Baggio, Lucio
, Trokhimovskiy, Alexander
, Montmessin, Franck
, Mason, Jon P
, Patrakeev, Andrey
, Lefèvre, Franck
, Rajendran, Kylash
, Alday, Juan
, Holmes, James A
, Olsen, Kevin S
, Patel, Manish R
, Shakun, Alexey
, Belyaev, Denis A
, Fedorova, Anna A
, Korablev, Oleg
in
Atmosphere
/ Atmospheric chemistry
/ Fractionation
/ Mars
/ Photochemicals
/ Photochemistry
/ Upper atmosphere
2023
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Photochemical depletion of heavy CO isotopes in the Martian atmosphere
by
Baggio, Lucio
, Trokhimovskiy, Alexander
, Montmessin, Franck
, Mason, Jon P
, Patrakeev, Andrey
, Lefèvre, Franck
, Rajendran, Kylash
, Alday, Juan
, Holmes, James A
, Olsen, Kevin S
, Patel, Manish R
, Shakun, Alexey
, Belyaev, Denis A
, Fedorova, Anna A
, Korablev, Oleg
in
Atmosphere
/ Atmospheric chemistry
/ Fractionation
/ Mars
/ Photochemicals
/ Photochemistry
/ Upper atmosphere
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Photochemical depletion of heavy CO isotopes in the Martian atmosphere
by
Baggio, Lucio
, Trokhimovskiy, Alexander
, Montmessin, Franck
, Mason, Jon P
, Patrakeev, Andrey
, Lefèvre, Franck
, Rajendran, Kylash
, Alday, Juan
, Holmes, James A
, Olsen, Kevin S
, Patel, Manish R
, Shakun, Alexey
, Belyaev, Denis A
, Fedorova, Anna A
, Korablev, Oleg
in
Atmosphere
/ Atmospheric chemistry
/ Fractionation
/ Mars
/ Photochemicals
/ Photochemistry
/ Upper atmosphere
2023
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Photochemical depletion of heavy CO isotopes in the Martian atmosphere
Journal Article
Photochemical depletion of heavy CO isotopes in the Martian atmosphere
2023
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Overview
The atmosphere of Mars is enriched in heavy isotopes with respect to Earth as a result of the escape of the atmosphere to space over billions of years. Estimating this enrichment requires a rigorous understanding of all atmospheric processes that contribute to the evolution of isotopic ratios between the lower and upper atmosphere, where escape processes take place. We combine measurements of CO vertical profiles obtained by the Atmospheric Chemistry Suite on board the ExoMars Trace Gas Orbiter with the predictions of a photochemical model and find evidence of a process of photochemistry-induced fractionation that depletes the heavy isotopes of C and O in CO (δ13C = −160 ± 90‰ and δ18O = −20 ± 110‰). In the upper atmosphere, accounting for this process reduces the escape fractionation factor by ~25%, suggesting that less C has escaped from the atmosphere of Mars than previously thought. In the lower atmosphere, incorporation of this 13C-depleted CO fractionation into the surface could support the abiotic origin of recently found Martian organics.Measurements by the ExoMars Trace Gas Orbiter reveal a depletion of heavy CO isotopes in Mars’s atmosphere caused by photochemistry-induced fractionation. The observed depletion in heavy C has implications for our understanding of C escape to space and the formation of organic material on Mars’s surface.
Publisher
Nature Publishing Group
Subject
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