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Transport of solar wind plasma onto the lunar nightside surface

机译:太阳风等离子在月球夜表面的传输

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We present first measurements of energetic neutral atoms that originate from solar wind plasma having interacted with the lunar nightside surface. We observe two distinct energetic neutral atom (ENA) distributions parallel to the terminator, the spectral shape, and the intensity of both of which indicate that the particles originate from the bulk solar wind flow. The first distribution modifies the dayside ENA flux to reach approximate to 6 degrees into the nightside and is well explained by the kinetic temperature of the solar wind protons. The second distribution, which was not predicted, reaches from the terminator to up to 30 degrees beyond the terminator, with a maximum at approximate to 102 degrees in solar zenith angle. As most likely wake transport processes for this second distribution we identify acceleration by the ambipolar electric field and by the negatively charged lunar nightside surface. In addition, our data provide the first observation indicative of a global solar zenith angle dependence of positive dayside surface potentials.
机译:我们目前对高能中性原子的首次测量,这些中性原子源自与月球夜侧表面相互作用的太阳风等离子体。我们观察到平行于终止子的两个不同的高能中性原子(ENA)分布,光谱形状和强度都表明粒子来自大量太阳风。第一个分布将白天的ENA通量修改为达到黑夜大约6度,这可以用太阳风质子的运动温度很好地解释。无法预测的第二个分布从终止点到终止点之外最多30度,最大太阳天顶角约为102度。作为第二种分布最可能的尾流传输过程,我们确定了双极性电场和带负电荷的月夜表面的加速。此外,我们的数据提供了第一个观测值,该观测值指示了正日面表面电势的全球太阳天顶角依赖性。

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