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Interaction between terrestrial plasma sheet electrons and the lunar surface: SELENE (Kaguya) observations

机译:地面等离子体薄层电子与月球表面之间的相互作用:SELENE(Kaguya)观测

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摘要

Analysis of the data obtained by SELENE (Kaguya) revealed a partial loss in the electron velocity distribution function due to the "gyro-loss effect", namely gyrating electrons being absorbed by the lunar surface. The Moon enters the Earth's magnetosphere for a few days around full moon, where plasma conditions are significantly different from those in the solar wind. When the magnetic field is locally parallel to the lunar surface, relatively high-energy electrons in the terrestrial plasma sheet with Larmor radii greater than SELENE's orbital height strike the lunar surface and are absorbed before they can be detected. This phenomenon can be observed as an empty region in the electron distribution function, which is initially isotropic in the plasma sheet, resulting in a non-gyrotropic distribution. We observed the expected characteristic electron distributions, as well as an empty region that was consistent with the presence of a relatively strong electric field (∼10 mV/m) around the Moon when it is in the plasma sheet.
机译:对由SELENE(Kaguya)获得的数据的分析表明,由于“陀螺损耗效应”,电子速度分布函数出现了部分损失,即,旋转的电子被月球表面吸收。月亮在满月附近进入地球磁层几天,那里的等离子体条件与太阳风中的等离子体条件明显不同。当磁场局部平行于月球表面时,拉莫尔半径大于SELENE轨道高度的地球等离子体片中相对较高能量的电子撞击月球表面,并在被检测到之前被吸收。可以在电子分布函数中的空白区域观察到这种现象,该区域在等离子片中最初是各向同性的,从而导致非旋涡分布。我们观察到了预期的特征电子分布,以及一个空的区域,该区域与等离子板中月球周围存在相对较强的电场(〜10 mV / m)一致。

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