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Related papers: A massive primordial atmosphere on early Mars

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Latest research in planet formation indicate that Mars formed within a few million years (Myr) and remained a planetary embryo that never grew to a more massive planet. It can also be expected from dynamical models, that most of Mars'…

Earth and Planetary Astrophysics · Physics 2015-06-16 N. V. Erkaev , H. Lammer , L. Elkins-Tanton , A. Stökl , P. Odert , E. Marcq , E. A. Dorfi , K. G. Kislyakova , Yu. N. Kulikov , M. Leitzinger , M. Güdel

The climate of Mars likely evolved from a warmer, wetter early state to the cold, arid current state. However, no solutions for this evolution have previously been found to satisfy the observed geological features and isotopic measurements…

Earth and Planetary Astrophysics · Physics 2015-12-03 Renyu Hu , David M. Kass , Bethany L. Ehlmann , Yuk L. Yung

The ratio of nitrogen isotopes in the Martian atmosphere is a key constraint on the planet's atmospheric evolution. However, enrichment of the heavy isotope expected due to atmospheric loss from sputtering and photochemical processes is…

Earth and Planetary Astrophysics · Physics 2022-02-11 Renyu Hu , Trent B. Thomas

We examine the history of the loss and replenishment of the Martian atmosphere using elemental and isotopic compositions of nitrogen and noble gases. The evolution of the atmosphere is calculated by taking into consideration various…

Earth and Planetary Astrophysics · Physics 2017-09-13 Hiroyuki Kurokawa , Kosuke Kurosawa , Tomohiro Usui

Recent detection of exoplanets with Earth-like insolation attracts growing interest in how common Earth-like aqua planets are beyond the solar system. While terrestrial planets are often assumed to capture icy or water-rich planetesimals, a…

Earth and Planetary Astrophysics · Physics 2020-07-01 Tadahiro Kimura , Masahiro Ikoma

The Martian isotopic record displays a dichotomy in volatile compositions. Interior volatiles from the mantle record a chondritic heritage (e.g., H, N, Kr, Xe) whereas the atmospheric reservoir of Kr and Xe - which do not currently…

Earth and Planetary Astrophysics · Physics 2025-02-24 Kaveh Pahlevan , Laura Schaefer , Don Porcelli

It is not yet entirely clear whether Mars began as a warm and wet planet that evolved towards the present-day cold and dry body or if it always was cold and dry with just some sporadic episodes of liquid water on its surface. An important…

Earth and Planetary Astrophysics · Physics 2021-02-12 M. Scherf , H. Lammer

Present-day Mars is cold and dry, but mineralogical and morphological evidence shows that liquid-water existed on the surface of ancient Mars. In order to explain this evidence and assess ancient Mars's habitability, one must understand the…

Earth and Planetary Astrophysics · Physics 2023-02-09 Trent B. Thomas , Renyu Hu , Daniel Y. Lo

The nature of the early Martian climate is one of the major unanswered questions of planetary science. Key challenges remain, but a new wave of orbital and in situ observations and improvements in climate modeling have led to significant…

Earth and Planetary Astrophysics · Physics 2016-07-06 Robin Wordsworth

The decay of the martian atmosphere - which is dominated by carbon dioxide - is a component of the long-term environmental change on Mars from a climate that once allowed rivers to flow to the cold and dry conditions of today. The minimum…

Earth and Planetary Astrophysics · Physics 2017-12-12 Edwin S. Kite , Jean-Pierre Williams , Antoine Lucas , Oded Aharonson

The climate of early Mars remains a topic of intense debate. Ancient terrains preserve landscapes consistent with stream channels, lake basins, and possibly even oceans, and thus the presence of liquid water flowing on the Martian surface 4…

Earth and Planetary Astrophysics · Physics 2018-10-05 Ramses M. Ramirez , Robert A. Craddock

Mars today has no active volcanism and its atmosphere is oxidizing, dominated by the photochemistry of CO2 and H2O. Using a one-dimensional photochemical model, we consider whether plausible volcanic gas fluxes could have switched the…

Earth and Planetary Astrophysics · Physics 2021-03-25 Steven F. Sholes , Megan L. Smith , Mark W. Claire , Kevin J. Zahnle , David C. Catling

Intense bombardment of solar system planets in the immediate aftermath of protoplanetary disk dissipation has played a key role in their atmospheric evolution. During this epoch, energetic collisions will have removed significant masses of…

Earth and Planetary Astrophysics · Physics 2024-09-13 Oliver Shorttle , Homa Saeidfirozeh , Paul Rimmer , Vojtĕch Laitl , Petr Kubelík , Lukáš Petera , Martin Ferus

The evolution and escape of the martian atmosphere and the planet's water inventory can be separated into an early and late evolutionary epoch. The first epoch started from the planet's origin and lasted $\sim$500 Myr. Because of the high…

The deuterium-to-hydrogen (D/H or 2H/1H) ratio of Martian atmospheric water (~6x standard mean ocean water, SMOW) is higher than that of known sources, requiring planetary enrichment. A recent measurement by NASA's Mars Science Laboratory…

Earth and Planetary Astrophysics · Physics 2022-09-23 Kaveh Pahlevan , Laura Schaefer , Linda T. Elkins-Tanton , Steven J. Desch , Peter R. Buseck

Martian atmospheric neon (Ne) has been detected by Viking and also found as trapped gas in Martian meteorites, though its abundance and isotopic composition have not been well determined. Because the timescale of Ne loss via atmospheric…

Earth and Planetary Astrophysics · Physics 2021-09-15 H. Kurokawa , Y. N. Miura , S. Sugita , Y. Cho , F. Leblanc , N. Terada , H. Nakagawa

We compare estimates of atmospheric precipitation during the Martian Noachian-Hesperian boundary 3.8 Gyr ago as calculated in a radiative-convective column model of the atmosphere with runoff values estimated from a geomorphological…

Earth and Planetary Astrophysics · Physics 2015-06-23 P. von Paris , A. Petau , J. L. Grenfell , E. Hauber , D. Breuer , R. Jaumann , H. Rauer , D. Tirsch

On the basis of geological evidence, it is often stated that the early martian climate was warm enough for liquid water to flow on the surface thanks to the greenhouse effect of a thick atmosphere. We present 3D global climate simulations…

The composition of an atmosphere has integrated the geological history of the entire planetary body. However, the long-term evolutions of the atmospheres of the terrestrial planets are not well documented. For Earth, there were until…

Earth and Planetary Astrophysics · Physics 2020-03-26 Guillaume Avice , Bernard Marty

All three terrestrial planets with atmospheres support O3 layers of some thickness. While currently only that of Earth is substantial enough to be climatically significant, we hypothesize that ancient Mars may also have supported a thick O3…

Earth and Planetary Astrophysics · Physics 2013-03-18 Justin Deighan , Robert E Johnson
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