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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Effects of protons reflected by lunar crustalmagnetic fields on the global lunar plasma environment
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Effects of protons reflected by lunar crustalmagnetic fields on the global lunar plasma environment

机译:月球地壳磁场反射质子对全球月球等离子体环境的影响

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Solar wind plasma interaction with lunar crustal magnetic fields is different than that of magnetized bodies like the Earth. Lunar crustal fields are, for typical solar wind conditions, not strong enough to form a (bow)shock upstream but rather deflect and perturb plasma and fields. Here we study the global effects of protons reflected from lunar crustal magnetic fields on the lunar plasma environment when the Moon is in the unperturbed solar wind. We employ a three-dimensional hybrid model of plasma and an observed map of reflected protons from lunar magnetic anomalies over the lunar farside. We observe that magnetic fields and plasma upstream over the lunar crustal fields compress to nearly 120% and 160% of the solar wind, respectively. We find that these disturbances convect downstream in the vicinity of the lunar wake, while their relative magnitudes decrease. In addition, solar wind protons are disturbed and heated at compression regions and their velocity distribution changes from Maxwellian to a non-Maxwellian. Finally, we show that these features persists, independent of the details of the ion reflection by the magnetic fields.
机译:太阳风等离子体与月球地壳磁场的相互作用不同于地球等磁化体的相互作用。在典型的太阳风条件下,月球地壳的强度不足以在上游形成(弓形)电击,而是使等离子体和磁场偏转和扰动。在这里,我们研究了月球处于不受干扰的太阳风中时,月球地壳磁场反射的质子对月球等离子体环境的整体影响。我们采用等离子的三维混合模型,并从月球远端的月球磁异常中观察到的质子反射图。我们观察到月球地壳上游的磁场和等离子体分别压缩到太阳风的近120%和160%。我们发现这些扰动在月球尾流附近对流对流,而它们的相对大小减小。此外,太阳风质子在压缩区域受到干扰和加热,其速度分布从麦克斯韦式变为非麦克斯韦式。最后,我们证明了这些特征仍然存在,与磁场对离子的反射细节无关。

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