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首页> 外文期刊>Journal of geophysical research. Planets >Investigation of the possible effects of comet Encke's meteoroid stream on the Ca exosphere of Mercury
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Investigation of the possible effects of comet Encke's meteoroid stream on the Ca exosphere of Mercury

机译:调查彗星欧洲流星流对汞的Ca Exosphere的可能影响

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摘要

The MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) observations of the seasonal variability of Mercury's Ca exosphere are consistent with the general idea that the Ca atoms originate from the bombardment of the surface by particles from comet 2P/Encke. The generating mechanism is believed to be a combination of different processes including the release of atomic and molecular surface particles and the photodissociation of exospheric molecules. Considering different generation and loss mechanisms, we perform simulations with a 3-D Monte Carlo model based on the exosphere generation model by Mura et al. (2009). We present for the first time the 3-D spatial distribution of the CaO and Ca exospheres generated through the process of micrometeoroid impact vaporization, and we show that the morphology of the latter is consistent with the available MESSENGER/Mercury Atmospheric and Surface Composition Spectrometer observations. The results presented in this paper can be useful in the exosphere observations planning for BepiColombo, the upcoming European Space Agency-Japanese Aerospace Exploration Agency mission to Mercury.
机译:汞表面,空间环境,地球化学和范围(使者)观察汞的CA外层季节性变异性与一般观念一致,即CA原子源自Comet 2P/Encke的粒子对表面的轰击。人们认为生成机制是不同过程的组合,包括原子和分子表面颗粒的释放以及外流分子的光解离。考虑到不同的产生和损失机制,我们根据Mura等人的Exosphere生成模型进行了3-D Monte Carlo模型进行模拟。 (2009)。我们首次提出了通过微型度量撞击过程产生的CAO和CA外层的3-D空间分布,我们表明后者的形态与可用的Messenger/Mercury/Mercury大气和表面组成光谱仪的观察是一致的。本文介绍的结果对于即将到来的欧洲航天局 - 日本航空航天勘探局的Exosphere观测计划很有用。

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