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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evolution of Electron Distribution Driven by Nonlinear ResonancesWith Intense Field-Aligned ChorusWaves
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Evolution of Electron Distribution Driven by Nonlinear ResonancesWith Intense Field-Aligned ChorusWaves

机译:电子分布受的进化非线性ResonancesWith强烈Field-Aligned

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摘要

Resonant electron interaction with whistler mode chorus waves is recognized as one of the main drivers of radiation belt dynamics. For moderate wave intensity, this interaction is well described by quasi-linear theory. However, recent statistics of parallel propagating chorus waves have demonstrated that 5–20% of the observed waves are sufficiently intense to interact nonlinearly with electrons. Such interactions include phase trapping and phase bunching (nonlinear scattering) effects not described by quasi-linear diffusion. For sufficiently long (large) wave packets, these nonlinear effects can result in very rapid electron acceleration and scattering. In this paper we introduce a method to include trapping and nonlinear scattering into the kinetic equation describing the evolution of the electron distribution function. We use statistics of Van Allen Probes and Time History of Events and Macroscale Interactions during Substorms observations to determine the probability distribution of intense, long wave packets as a function of power and frequency. Then we develop an analytical model of individual particle resonance with an intense chorus wave packet and derive the main properties of this interaction: probability of electron trapping, energy change due to trapping and nonlinear scattering. These properties are combined in a nonlocal operator acting on the electron distribution function. When multiple waves are present, we average the obtained operator over the observed distributions of waves and examine solutions of the resultant kinetic equation. We also examine energy conservation and its implications in systems with nonlinear wave-particle interaction.
机译:共振与惠斯勒电子交互模式合唱是公认的一个主要司机辐射带的动力学。波强度,这种交互描述了准线性理论。统计平行传播合唱已经证明,5 - 20%的观察波足够强烈的互动非线性与电子。包括捕获和聚束阶段(非线性散射)不被影响准线性扩散。(大)波包,这些非线性效应导致电子加速和快速散射。包括捕获和非线性散射动力学方程描述的进化电子分布函数。范艾伦辐射探测器和时间历史的统计数据和宏观尺度相互作用的事件亚暴的观察来确定概率分布的长波数据包作为功率和频率的函数。然后我们开发个人的分析模型以强烈的合唱波粒子共振包和获得的主要属性互动:电子捕获概率,由于捕获和非线性能量变化散射。非局部算子作用于电子分布函数。现在,我们平均获得的运营商观察到的波的分布和检查合成动力学方程的解决方案。也检查节能影响在非线性系统中波粒相互作用。

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