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首页> 外文期刊>Journal of geophysical research. Planets >Chandrayaan-1 observations of backscattered solar wind protons from the lunar regolith: Dependence on the solar wind speed
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Chandrayaan-1 observations of backscattered solar wind protons from the lunar regolith: Dependence on the solar wind speed

机译:Chandrayaan-1观察到月球雷隆的反向散射太阳风质子:依赖太阳风速

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摘要

We study the backscattering of solar wind protons from the lunar regolith using the Solar Wind Monitor of the Sub-keV Atom Reflecting Analyzer on Chandrayaan-1. Our study focuses on the component of the backscattered particles that leaves the regolith with a positive charge. We find that the fraction of the incident solar wind protons that backscatter as protons, i.e., the proton-backscattering efficiency, has an exponential dependence on the solar wind speed that varies from ~0.01% to ~1% for solar wind speeds of 250 km/s to 550 km/s. We also study the speed distribution of the backscattered protons in the fast (~550km/s) solar wind case and find both a peak speed at ~80% of the solar wind speed and a spread of ~85km/s. The observed flux variations and speed distribution of the backscattered protons can be explained by a speed-dependent charge state of the backscattered particles.
机译:我们使用Chandrayaan-1的子驱动原子反射分析仪的太阳风监测仪研究了月球岩石的太阳风质子的反向散射。 我们的研究重点是反向散射颗粒的组成部分,这些颗粒使岩石石的正电荷留有正电荷。 我们发现,入射太阳风质子的比例是质子,即质子 - 散射效率,对太阳风速的指数依赖性从约0.01%到〜1%,太阳能风速为250 km /s至550 km/s。 我们还研究了在快速(约550 km/s)的太阳风箱中反向散射质子的速度分布,并在太阳风速的〜80%处找到了峰值速度和约85 km/s的传播。 可以通过反向散射颗粒的速度依赖电荷状态来解释观察到的磁通变化和反向散射质子的速度分布。

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