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Properties of Intense Field-Aligned Lower-Band ChorusWaves: Implications for NonlinearWave-Particle Interactions

机译:属性的Field-Aligned Lower-BandChorusWaves:影响NonlinearWave-Particle交互

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Resonant interactions between electrons and chorus waves are responsible for a wide range of phenomena in near-Earth space (e.g., diffuse aurora and acceleration of > 1 MeV electrons). Although quasi-linear diffusion is believed to be the primary paradigm for describing such interactions, an increasing number of investigations suggest that nonlinear effects are also important in controlling the rapid dynamics of electrons. However, present models of nonlinear wave-particle interactions, which have been successfully used to describe individual short-term events, are not directly applicable for a statistical evaluation of nonlinear effects and the long-term dynamics of the outer radiation belt, because they lack information on the properties of intense (nonlinearly resonating with electrons) chorus waves. In this paper, we use the Time History of Events and Macroscale Interactions during Substorms and Van Allen Probes data sets of field-aligned chorus waveforms to study two key characteristics of these waves: effective amplitude B_w (nonlinear interaction can occur when B_w >2) and wave packet length β (the number of wave periods within it). While as many as 10-15% of chorus wave packets are sufficiently intense (B_w >2-3) to interact nonlinearly with relativistic electrons, most of them are short (β < 10) reducing the efficacy of such interactions. Revised models of nonlinear interactions are thus needed to account for the long-term effects of these common, intense but short chorus wave packets. We also discuss the dependence of B_w, β on location (MLT and L-shell) and on the properties of the suprathermal electron population.
机译:共振相互作用电子和合唱负责各种现象在近地空间(例如,分散> 1的极光和加速度兆电子伏电子)。虽然准线性扩散被认为是描述的主要范式交互,越来越多的调查表明,非线性效应在控制快速动力学也很重要的电子。非线性波粒相互作用,被成功地用于描述个体短期事件,不直接适用统计评价的非线性效应和长期的动态外辐射带,因为他们缺乏信息属性的(非线性产生共鸣电子)合唱。利用这段时间的历史事件和宏观尺度在亚暴和Van Allen交互探测数据集的field-aligned合唱波形研究的两个关键特征这些波:有效振幅B_w(非线性相互作用可以发生在当B_w > 2)和波数据包长度β(波周期的数量内)。波包足够强烈(B_w > 2 - 3)与相对论的非线性相互作用电子,它们中的大多数都是短(β< 10)减少交互的功效。修正模型的非线性相互作用是如此需要考虑的长期影响这些常见的激烈,但短合唱波包。在(MLT和l层)和位置suprathermal电子的性质人口。

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