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首页> 外文期刊>Geophysical Research Letters >Photoemission and electrostatic potentials on the dayside lunar surface in the terrestrial magnetotail lobes
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Photoemission and electrostatic potentials on the dayside lunar surface in the terrestrial magnetotail lobes

机译:陆地磁船裂片中的天空电影表面上的照片和静电势

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摘要

Despite the need to accurately predict and assess the lunar electrostatic environment in all ambient conditions that the Moon encounters, photoemission and electrostatic potentials on the dayside lunar surface in the terrestrial magnetotail lobes remain poorly characterized. We study characteristics and variabilities of lunar photoelectron energy spectra by utilizing Acceleration, Reconnection, Turbulence, and Electrodynamics of the Moon's Interaction with the Sun (ARTEMIS) and Apollo measurements in combination with the Flare Irradiance Spectral Model (FISM). We confirm that the photoelectron spectral shapes are consistent between ARTEMIS and Apollo and that the photoelectron flux is linearly correlated with the FISM solar photon flux. We develop an observation-based model of lunar photoelectron energy distributions, thereby deriving the current balance surface potential. The model predicts that dayside lunar surface potentials in the tail lobes (typically tens of volts) could increase by a factor of 2-3 during strong solar flares.
机译:尽管需要准确地预测和评估在所有环境条件下月球静电环境,月球遭遇,光电子和静电势在地面磁尾瓣的向阳面月球表面保持特征较差。我们研究的特点和利用月球加速光电子能谱的变率,重新连接,湍流,月亮与太阳(ARTEMIS)和阿波罗测量结合的火炬光谱辐照度模型(FISM)相互作用的电动力学。我们确认,在光电子光谱形状ARTEMIS和Apollo之间以及光电子通量线性地FISM太阳光子通量相关一致。我们开发月球光电子能量分布的基于观察的模型,从而导出电流平衡表面电势。该模型预测,在所述尾瓣向阳面月球表面电位(通常为数十伏)可通过的2-3倍时强太阳耀斑增加。

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