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Parametric study of the resonant scattering process by narrow band whistler mode waves driven by temperature anisotropy

机译:温度各向异性驱动的窄带惠斯勒模式波共振散射过程的参数研究

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摘要

We study a combined effect of wave trapping due to oppositely propagating narrow band whistler mode waves and discuss its dependence on the background plasma density. In the case where forward and backward traveling whistler mode waves coexist, rapid scattering of resonant electrons occurs owing to the overlapping of diffusion curves of both waves. Simulation results show that the low-density plasma condition, where the electron plasma frequency is close to the electron gyrofrequency, is favorable for the significant resonant scattering of high energetic electrons. The results of the present study suggest that the combined effect plays an important role in energizing relativistic electrons in the equatorial region of the Earth's inner magnetosphere during the recovery phase of geomagnetic storms.
机译:我们研究了由于反向传播的窄带惠斯勒模式波而引起的波捕获的综合效应,并讨论了其对背景等离子体密度的依赖性。在前向和后向行进的惠斯勒模式波共存的情况下,由于两个波的扩散曲线重叠,所以共振电子迅速散射。仿真结果表明,电子等离子体频率接近电子陀螺频率的低密度等离子体条件有利于高能电子的明显共振散射。本研究的结果表明,在地磁风暴恢复阶段,组合效应在激发地球内部磁层赤道区域的相对论电子方面起着重要作用。

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