首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Monte Carlo Simulations of the Interaction of Fast Proton and Hydrogen Atoms With the Martian Atmosphere and Comparison With In Situ Measurements
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Monte Carlo Simulations of the Interaction of Fast Proton and Hydrogen Atoms With the Martian Atmosphere and Comparison With In Situ Measurements

机译:蒙特卡罗模拟的相互作用快质子和氢原子与火星大气与原位和比较测量

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摘要

We present model results of the interaction of proton and hydrogen atom precipitation with the Martian atmosphere. We use a kinetic Monte Carlo model developed earlier for the analysis of the Analyzer of Space Plasmas and Energetic Atoms (ASPERA-3) Mars Express data. With the availability of Mars Atmosphere and Volatile Evolution Mission in situ measurements, not only the flux of protons incident on the atmosphere but also their degradation along the orbit may now be described. The comparison of the simulations with data collected with the Solar Wind Ion Analyzer shows that the Monte Carlo model reproduces some of the measured features. The results of comparison between simulations and measurements of the proton fluxes at low altitudes make it possible to infer the efficiency of charge exchange between solar wind and the extended hydrogen corona if the value of the magnetic field is measured simultaneously. We also find that the induced magnetic field plays a very important role in the formation of the backscattered flux and strongly controls its magnitude. At the same time, discrepancies between the modeled and the measured energy spectra of the backscattered protons are pointed out. We suggest that some of the physical processes controlling the upward flux are not fully understood or that the data processing of the measured backscattered proton flux should be improved.
机译:我们现在的模型之间的相互作用的结果质子和氢原子降水火星大气。模型的分析分析仪的空间等离子体原子和充满活力(ASPERA-3)火星快车数据。火星大气与挥发物的可用性进化的使命原位测量,不仅质子事件的通量的气氛沿着轨道可能也是他们退化现在被描述。模拟与数据收集太阳能风离子分析仪显示蒙特卡洛模型再现了一些测量特性。模拟和对比的结果测量质子通量较低高度可以推断出太阳风之间的电荷交换的效率和扩展的氢电晕的价值同时测量磁场。还发现,诱导磁场中在的形成非常重要的作用背散射通量和强烈控制自己大小。建模和测量之间的能量反散射光谱的质子指出出去了。过程控制上升通量则不是完全理解或数据处理的背散射测量质子通量改善。

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