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Evaluation of whistler mode chorus amplification during an injection event observed on CRRES

机译:在CRREs上观察注射事件期间哨声模式共鸣放大的评估

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摘要

The excitation of nightside whistler mode chorus emissions in the low-density region outside the plasmapause is investigated during an injection of plasma sheet electrons into the inner magnetosphere. CRRES data of the electron phase space density (PSD) over the LEPA energy range between 0.1 keV and 30 keV are used to develop an analytical model for the distribution function of injected low-energy electrons. The path-integrated growth of chorus waves is then evaluated with the HOTRAY code by tracing unducted whistler mode chorus waves in a hot magnetized plasma. The results indicate that newly injected electrons are responsible for the intensification of lower-band whistler mode chorus. However, slightly higher electron anisotropy than that obtained from the 5 min-averaged electron PSD data is required to reproduce the observed wave intensity during an injection event. We suggest that the injected electron anisotropy is reduced due to pitch angle scattering by the enhanced chorus waves within the 5-min interval over which the CRRES data are analyzed.
机译:在等离子体薄层电子注入内部磁层的过程中,研究了等离子体暂停外部低密度区域的夜间啸叫模式合唱发射的激发。在0.1 keV和30 keV之间的LEPA能量范围内,电子相空间密度(PSD)的CRRES数据用于建立注入的低能量电子的分布函数的分析模型。然后,通过在热磁化等离子体中跟踪未传导的惠斯勒模式合唱波,使用HOTRAY代码评估合唱波的路径积分生长。结果表明,新注入的电子引起了低频带的惠斯勒模式合唱的增强。但是,为了重现注入过程中观察到的波强度,需要比从5分钟平均电子PSD数据获得的电子各向异性稍高的电子各向异性。我们建议,由于在5分钟间隔内分析CRRES数据的增强合唱波的俯仰角散射,降低了注入的电子各向异性。

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