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Influence of dust loading on atmospheric ionizing radiation on Mars

机译:尘埃加载大气电离的影响火星上的辐射

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Measuring the radiation environment at the surface of Mars is the primary goal of the Radiation Assessment Detector on the NASA Mars Science Laboratory’s Curiosity rover. One of the conditions that Curiosity will likely encounter is a dust storm. The objective of this paper is to compute the cosmic ray ionization in different conditions, including dust storms, as these various conditions are likely to be encountered by Curiosity at some point. In the present work, the Nowcast of Atmospheric Ionizing Radiation for Aviation Safety model, recently modified for Mars, was used along with the Badhwar & O’Neill 2010 galactic cosmic ray model. In addition to galactic cosmic rays, five different solar energetic particle event spectra were considered. For all input radiation environments, radiation dose throughout the atmosphere and at the surface was investigated as a function of atmospheric dust loading. It is demonstrated that for galactic cosmic rays, the ionization depends strongly on the atmosphere profile. Moreover, it is shown that solar energetic particle events strongly increase the ionization throughout the atmosphere, including ground level, and can account for the radio blackout conditions observed by the Mars Advanced Radar for Subsurface and Ionospheric Sounding instrument on the Mars Express spacecraft. These results demonstrate that the cosmic rays’ influence on the Martian surface chemistry is strongly dependent on solar and atmospheric conditions that should be taken into account for future studies.
机译:测量表面的辐射环境火星的主要目标是辐射科学评估美国宇航局的火星探测器实验室的好奇心探测车。好奇心可能会遇到的条件是一个沙尘暴。计算在不同的宇宙射线电离这些条件,包括沙尘暴可能会遇到的各种条件的好奇心。的短时预测大气电离辐射需要美国所有企业提供航空安全模型,最近修改的火星,与Badhwar和奥尼尔一起使用2010年银河宇宙射线模型。银河宇宙射线,五个不同的太阳能高能粒子事件光谱被认为是。对于所有输入的辐射环境,辐射在表面的大气和剂量研究了大气的函数灰尘加载。银河宇宙射线的电离强烈的大气剖面。表明太阳高能粒子事件吗强烈增加电离的大气,包括地面,可以占收音机停电条件观察到火星先进雷达地下和电离层探测仪器火星快车号宇宙飞船。证明了宇宙射线的影响火星表面化学反应强烈依靠太阳能和大气条件应该考虑未来研究。

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