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首页> 外文期刊>Journal of geophysical research. Planets >Escape and evolution of Mars's CO_2 atmosphere: Influence of suprathermal atoms
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Escape and evolution of Mars's CO_2 atmosphere: Influence of suprathermal atoms

机译:Mars的Co_2氛围的逃避和演变:上班原子的影响

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摘要

With a Monte Carlo model we investigate the escape of hot oxygen and carbon from the Martian atmosphere for four points in time in its history corresponding to 1, 3, 10, and 20 times the present solar EUV flux. We study and discuss different sources of hot oxygen and carbon atoms in the thermosphere and their changing importance with the EUV flux. The increase of the production rates due to higher densities resulting from the higher EUV flux competes against the expansion of the thermosphere and corresponding increase in collisions. We find that the escape due to photodissociation increases with increasing EUV level. However, for the escape via some other reactions, e.g., dissociative recombination of O_2~+ , this is only true until the EUV level reaches 10 times the present EUV flux and then the rates start to decrease. Furthermore, our results show that Mars could not have had a dense atmosphere at the end of the Noachian epoch, since such an atmosphere would not have been able to escape until today. In the pre-Noachian era, most of the magma ocean and volcanic activity-related outgassed CO_2 atmosphere could have been lost thermally until the Noachian epoch, when nonthermal loss processes such as suprathermal atom escape became dominant. Thus, early Mars could have been hot and wet during the pre-Noachian era with surface CO_2 pressures larger than 1 bar during the first 300 Myr after the planet's origin.
机译:通过蒙特卡罗模型,我们研究了热氧气和碳从火星氛围的逃避,其历史在其历史上与当前太阳能EUV通量的1,3,10和20倍相对应的历史。我们研究并讨论热氧气和碳原子中的不同来源,与EUV通量变化变化。由于较高的EUV通量导致的较高密度导致的生产率的增加竞争激增热圈的扩展和碰撞的相应增加。我们发现由于越来越多的EUV水平而导致的光度脱落增加。然而,对于通过其他一些反应的逃逸,例如,O_2〜+的分离重组,这仅是真实,直到EUV水平达到目前的EUV通量的10倍,然后速率开始减少。此外,我们的结果表明,火星在Noachian Enoch的尽头没有茂密的氛围,因为这样的气氛直到今天才能逃脱。在前町时代,大多数岩浆海洋和火山运动相关的偏见CO_2氛围可能会导热直到Noachian Enoch,当时的非热丢失过程如上前奏炎逃脱变得主导。因此,早期的火星在前Noachian时代可能已经热潮湿,表面CO_2在行星起源后的前300多个中大于1巴的表面CO_2压力。

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  • 作者单位

    Space Research Institute Austrian Academy of Sciences Graz Austria;

    Lunar and Planetary Laboratory University of Arizona Tucson Arizona USA;

    Space Research Institute Austrian Academy of Sciences Graz Austria;

    Space Research Institute Austrian Academy of Sciences Graz Austria;

    Ministry of Education Key Laboratory for Earth System Modeling Center for Earth System Science Tsinghua University Beijing China;

    Royal Observatory of Belgium Brussels Belgium;

    Space Research Institute Austrian Academy of Sciences Graz Austria;

    Department of Astrophysics University of Vienna Vienna Austria;

    Department of Astrophysics University of Vienna Vienna Austria;

    Department of Astrophysics University of Vienna Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 行星、卫星、彗星、流星、陨星;
  • 关键词

    escape; Martian; present;

    机译:逃生;火星;现在;

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