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首页> 外文期刊>Journal of geophysical research. Planets >Charged particle spectra obtained with the Mars Science Laboratory Radiation Assessment Detector (MSL/RAD) on the surface of Mars
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Charged particle spectra obtained with the Mars Science Laboratory Radiation Assessment Detector (MSL/RAD) on the surface of Mars

机译:使用火星科学实验室辐射评估检测器(MSL / RAD)在火星表面获得的带电粒子光谱

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摘要

The Radiation Assessment Detector (RAD)-situated inside the Mars Science Laboratory's Curiosity rover-is the first ever instrument to measure the energetic particle radiation environment on the surface of Mars. To fully understand the influence of this surface radiation field in terms of potential hazard to life, a detailed knowledge of its composition is necessary. Charged particles are a major component of this environment, both galactic cosmic rays propagating to the Martian surface and secondary particles created by interactions of these cosmic rays with the atoms of the Martian atmosphere and soil. Here we present particle fluxes for a wide range of ion species, providing detailed energy spectra in the low-energy range (up to several hundred MeVucleon particle energy), and integral fluxes for higher energies. In addition to being crucial for the understanding of the hazards of this radiation to possible future manned missions to Mars, the data reported here provide valuable input for evaluating and validating particle transport models currently used to estimate the radiation environment on Mars and elsewhere in space. It is now possible for the first time to compare model results for expected surface particle fluxes with actual ground-based measurements.
机译:位于火星科学实验室好奇号流动站内的辐射评估探测器(RAD)是有史以来第一台测量火星表面高能粒子辐射环境的仪器。为了完全了解该表面辐射场对生命的潜在危害,需要对其组成进行详细了解。带电粒子是该环境的主要组成部分,既有银河宇宙射线传播到火星表面,又有次级粒子通过这些宇宙射线与火星大气层和土壤原子的相互作用而产生。在这里,我们介绍了各种离子种类的粒子通量,提供了低能范围内的详细能谱(高达数百MeV /核子粒子能),以及了更高能量的积分通量。除了对于理解这种辐射对未来可能载人的火星飞行的危害至关重要之外,此处报告的数据还为评估和验证目前用于估算火星和太空其他地方辐射环境的粒子传输模型提供了宝贵的信息。现在有可能第一次将预期的表面粒子通量的模型结果与实际的地面测量结果进行比较。

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