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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Coherent nonlinear scattering of energetic electrons in the process of whistler mode chorus generation
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Coherent nonlinear scattering of energetic electrons in the process of whistler mode chorus generation

机译:相干非线性散射的精力充沛电子在惠斯勒的过程模式合唱一代

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Cyclotron resonant wave-particle interaction of whistler mode chorus emissions drives pitch angle scatterings of a wide range of energetic electrons in the magnetosphere. We study a coherent scattering process associated with generation of the whistler mode rising chorus emissions near the geomagnetic equator in a self-consistent electromagnetic fullparticle simulation. The simulation shows that coherent whistler mode rising chorus emissions scatter energetic electrons very effectively through formation of an electromagnetic electron hole. The nonlinear interaction induces acceleration of resonant electrons trapped by the wave and deceleration of untapped resonant electrons. When the frequency of a rising chorus element continuously increases in time from lower frequencies to higher frequencies, the parallel resonant velocity continuously decreases toward lower-velocity ranges resulting in significant scattering of resonant electrons. The lower limit of resonant parallel velocity is determined by the upper frequency limit of the rising chorus element. The unscattered electrons with low parallel velocities and the accelerated resonant electrons trapped by the wave result in the distribution clearly peaked at 90°. Successive generation of rising chorus elements can scatter resonant electrons in the same resonance velocity range. The repeated scatterings make the distribution much sharper at 90°, leading to formation of a pancake distribution function as observed in the inner magnetosphere.
机译:回旋共振波粒相互作用惠斯勒模式合唱排放驱动螺旋角计算范围广泛的精力充沛电子在磁气圈。相干散射过程联系在一起代的惠斯勒模式上升合唱排放的地磁赤道附近有条理的电磁fullparticle模拟。惠斯勒模式上升合唱排放分散高能电子非常有效地通过电磁电子空穴的形成。非线性相互作用引起的加速度共振电子波和困减速的尚未开发的共振电子。有那么多元素的频率不断增加的时间从较低频率更高频率,平行共振速度不断减小的方向流速低导致显著的范围共振散射的电子。共振速度是由平行上涨的频率上限合唱元素。平行速度和加速共振电子波导致所困分布明显的峰值为90°。代的合唱元素可以分散共振电子共振速度相同的范围内。分布更加清晰的显示在90°,导致组建一个煎饼分布函数观察到内部的磁场。

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