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Verification of a Monte-Carlo planetary surface radiation environment model using γ-ray data from Lunar Prospector and 2001 Mars Odyssey

机译:使用Lunar Prospector和2001 Mars Odyssey的γ射线数据验证蒙特卡洛行星表面辐射环境模型

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Characterising a planetary radiation environment is important to: (1) assess the habitability of a planetary body for indigenous life; (2) assess the risks associated with manned exploration missions to a planetary body and (3) predict/interpret the results that remote sensing instrumentation may obtain from a planetary body (e.g. interpret the γ-ray emissions from a planetary surface produced by radioactive decay or via the interaction of galactic cosmic rays to obtain meaningful estimates of the concentration of certain elements on the surface of a planet). The University of Leicester is developing instrumentation for geophysical applications that include γ-ray spectroscopy, γ-ray densitometry and radiometric dating. This paper describes the verification of a Monte-Carlo planetary radiation environment model developed using the MCNPX code. The model is designed to model the radiation environments of Mars and the Moon, but is applicable to other planetary bodies, and will be used to predict the performance of the instrumentation being developed at Leicester. This study demonstrates that the modelled γ-ray data is in good agreement with γ-ray data obtained by the γ-ray spectrometers on 2001 Mars Odyssey and Lunar Prospector, and can be used to accurately model geophysical instrumentation for planetary science applications.
机译:表征行星辐射环境对以下方面很重要:(1)评估行星体对土著生命的可居住性; (2)评估与载人探索任务对行星体有关的风险,并且(3)预测/解释遥感仪器可能从行星体获得的结果(例如,解释由放射性衰变产生的行星表面的γ射线发射)或通过银河系宇宙射线的相互作用来获得对行星表面上某些元素的浓度的有意义的估计)。莱斯特大学正在开发用于地球物理应用的仪器,包括γ射线光谱学,γ射线光密度测定法和辐射测年法。本文介绍了使用MCNPX代码开发的蒙特卡洛行星辐射环境模型的验证。该模型旨在模拟火星和月球的辐射环境,但适用于其他行星体,并将用于预测莱斯特正在开发的仪器的性能。这项研究表明,建模的γ射线数据与2001年Mars Odyssey和Lunar Prospector上的γ射线光谱仪获得的γ射线数据非常吻合,可用于为地球科学应用准确地模拟地球物理仪器。

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