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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Bounce-averaged advection and diffusion coefficients for monochromatic electromagnetic ion cyclotron wave: Comparison between test-particle and quasi-linear models
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Bounce-averaged advection and diffusion coefficients for monochromatic electromagnetic ion cyclotron wave: Comparison between test-particle and quasi-linear models

机译:Bounce-averaged平流和扩散系数为单色电磁离子回旋波:对比试验粒子和准线性模型

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The electromagnetic ion cyclotron (EMIC) wave has long been suggested to be responsible for the rapid loss of radiation belt relativistic electrons. The test-particle simulations are performed to calculate the bounce-averaged pitch angle advection and diffusion coefficients for parallel-propagating monochromatic EMIC waves. The comparison between test-particle (TP) and quasi-linear (QL) transport coefficients is further made to quantify the influence of nonlinear processes. For typical EMIC waves, four nonlinear physical processes, i.e., the boundary reflection effect, finite perturbation effect, phase bunching and phase trapping, are found to occur sequentially from small to large equatorial pitch angles. The pitch angle averaged finite perturbation effect yields slight differences between the transport coefficients of TP and QL models. The boundary reflection effect and phase bunching produce an average reduction of >80% in the diffusion coefficients but a small change in the corresponding average advection coefficients, tending to lower the loss rate predicted by QL theory. In contrast, the phase trapping causes continuous negative advection toward the loss cone and a minor change in the corresponding diffusion coefficients, tending to increase the loss rate predicted by QL theory. For small amplitude EMIC waves, the transport coefficients grow linearly with the square of wave amplitude. As the amplitude increases, the boundary reflection effect, phase bunching and phase trapping start to occur. Consequently, the TP advection coefficients deviate from the linear growth with the square of wave amplitude, and the TP diffusion coefficients become saturated with the amplitude approaching 1 nT or above. The current results suggest that these nonlinear processes can cause significant deviation of transport coefficients from the prediction of QL theory, which should be taken into account in the future simulations of radiation belt dynamics driven by the EMIC waves.
机译:电磁离子回旋波(位的)一直建议负责快速辐射带相对论的损失电子。执行计算bounce-averaged音高角平流、扩散系数parallel-propagating单色位的波。对比试验粒子(TP)和准线性(QL)传输系数进一步量化的影响非线性过程。非线性物理过程,即它的边界反射效果,有限的扰动效应,聚束和捕获阶段,发现从小型到大型赤道顺序发生螺距角。摄动影响收益率略有差异TP的传输系数和QL之间模型。聚束产生平均减少> 80%扩散系数,但一个小变化相应的平均水平对流系数,倾向于降低QL预测的损失率理论。连续-平流对损失锥和一个相应的轻微变化扩散系数,倾向于增加损失率QL预测的理论。振幅位的波浪,传输系数与波振幅的平方呈线性增长。随着振幅的增加,它的边界反射效果,阶段聚束和阶段捕获开始发生。平流系数偏离线性的与波振幅的平方增长TP扩散系数成为饱和振幅接近1元或以上。目前的结果表明,这些非线性过程可能会导致重大的偏差传输系数从QL的预测理论,它应该考虑的未来的辐射带动态模拟位的驱动波。

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