论文标题

火星和金星的银河宇宙射线:从小时到数十年的时间变化,作为车载微通道板的背景信号

Galactic Cosmic Rays at Mars and Venus: Temporal Variations from Hours to Decades Measured as the Background Signal of Onboard Micro-Channel Plates

论文作者

Futaana, Yoshifumi, Shimoyama, Manabu, Wieser, Martin, Karlsson, Stefan, Andersson, Herman, Nilsson, Hans, Wang, Xiao-Dong, Fedorov, Andrey, Andre, Nicolas, Holmström, Mats, Barabash, Stas

论文摘要

微通道板(MCP)是用于计数空间中颗粒的广泛使用的组件。使用MARS Express和Venus Express Orbiters在17年和8年内运行的MCP的背景计数,我们研究了内部太阳系中的银河系宇宙射线(GCR)特性。太阳周期时间尺度上的MCP背景在火星和金星上计数表现出与黑子数的明显抗相关性。我们得出的结论是,测得的MCP背景包含GCR信息。使用火星上的MCP背景测量的GCR特性显示出与太阳周期中地面测量值一致的特征。沿轨道记录的较短的后台数据(时间比例为几个小时)也显示出由于行星吸收GCR颗粒而导致的背景计数的耗尽。由于可见的行星尺寸沿轨道变化,因此,由于\ b {eta} -decay,GCR对MCP背景的贡献可以与内部贡献分开。我们对火星GCR吸收特征的统计分析表明,GCR颗粒的有效吸收大小比固体火星体的半径大于100 km。

A Micro-Channel Plate (MCP) is a widely used component for counting particles in space. Using the background counts of MCPs on Mars Express and Venus Express orbiters operated over 17 years and 8 years, respectively, we investigate the galactic cosmic ray (GCR) characteristics in the inner solar system. The MCP background counts at Mars and Venus on a solar cycle time scale exhibit clear anti-correlation to the sunspot number. We conclude that the measured MCP background contain the GCR information. The GCR characteristics measured using the MCP background at Mars show features that are consistent with the ground-based measurement in solar cycle 24. The time lag between the sunspot number and the MCP background at Mars is found ~9 months. The shorter-term background data recorded along the orbits (with a time scale of several hours) also show evident depletion of the background counts due to the absorption of the GCR particles by the planets. Thanks to the visible planetary size change along an orbit, the GCR contribution to the MCP background can be separated from the internal contribution due to the \b{eta}-decay. Our statistical analysis of the GCR absorption signatures at Mars implies that the effective absorption size of Mars for the GCR particles have a >100 km larger radius than the solid Martian body.

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