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Simulation of the energy distribution of relativistic electron precipitation caused by quasi-linear interactions with EMIC waves

机译:与EMIC波的准线性相互作用引起的相对论电子降水的能量分布模拟

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摘要

[1]Previous studies on electromagnetic ion cyclotron (EMIC) waves as a possible cause of relativistic electron precipitation (REP) mainly focus on the time evolution of the trapped electron flux. However, directly measured by balloons and many satellites is the precipitating flux as well as its dependence on both time and energy. Therefore, to better understand whether pitch angle scattering by EMIC waves is an important radiation belt electron loss mechanism and whether quasi-linear theory is a sufficient theoretical treatment, we simulate the quasi-linear wave-particle interactions for a range of parameters and generate energy spectra, laying the foundation for modeling specific events that can be compared with balloon and spacecraft observations. We show that the REP energy spectrum has a peaked structure, with a lower cutoff at the minimum resonant energy. The peak moves with time toward higher energies and the spectrum flattens. The precipitating flux, on the other hand, first rapidly increases and then gradually decreases. We also show that increasing wave frequency can lead to the occurrence of a second peak. In both single- and double-peak cases, increasing wave frequency, cold plasma density or decreasing background magnetic field strength lowers the energies of the peak(s) and causes the precipitation to increase at low energies and decrease at high energies at the start of the precipitation.
机译:[1]先前关于电磁离子回旋加速器(EMIC)波作为相对论性电子沉淀(REP)的可能原因的先前研究主要集中在被俘获电子通量的时间演化上。但是,气球和许多卫星直接测量的是降水通量及其对时间和能量的依赖性。因此,为了更好地了解EMIC波的俯仰角散射是否是重要的辐射带电子损耗机制以及准线性理论是否足够的理论处理,我们针对一系列参数模拟了准线性波-质相互作用,并产生了能量光谱,为建模特定事件奠定了基础,可以与气球和航天器的观测结果进行比较。我们表明,REP能谱具有峰结构,在最小谐振能量处具有较低的截止值。峰值随时间向更高能量移动,并且频谱趋于平坦。另一方面,沉淀通量首先迅速增大,然后逐渐减小。我们还表明,增加的波频率会导致出现第二个峰值。在单峰和双峰情况下,增加波频率,降低冷等离子体密度或降低背景磁场强度都会降低峰的能量,并导致在低能量开始时降水增加,而在高能量开始时降水减少。沉淀。

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