首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modulation of Magnetosonic Waves by Background Plasma Density in a Dipole Magnetic Field: 2-D PIC Simulation
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Modulation of Magnetosonic Waves by Background Plasma Density in a Dipole Magnetic Field: 2-D PIC Simulation

机译:调制Magnetosonic波的背景在偶极磁场等离子体密度:二维PIC模拟

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摘要

Recent satellite observations, combined with instability analyses, have shown that the background plasma density variation can modulate the magnetosonic (MS) waves by controlling the wave excitation. However, the detailed modulation process needs to be identified since the MS waves propagate nearly perpendicular to the background magnetic field. In this study, we investigate the MS wave modulation by background plasma density using a 2-D general curvilinear particle-in-cell simulation in the meridian plane of a dipole magnetic field. The simulation model consists of three plasma components: the background cold electrons and protons and ring distribution protons. We find that MS waves can be locally generated by ring distribution protons in the low plasma density region, while no MS wave is generated in the high density region. These MS waves are confined near the local source region since they are damped by the background cold plasma. The background protons gain more energy than background electrons, implying the plasmaspheric protons may dominate the modulation of MS waves. Moreover, we have also investigated the generation and propagation of MS waves in the plasmapause density structure. Our simulation results demonstrate that the background plasma density variation can modulate the MS waves and may play an important role in the spatial distribution of MS waves.
机译:最近的卫星观测,结合不稳定性分析,表明背景等离子体密度变化可以调节magnetosonic(女士)通过控制波励磁。过程需要确定自女士波近垂直于传播背景磁场。女士波调制的背景等离子体密度使用二维曲线particle-in-cell将军模拟的子午面偶极子磁场。三个等离子体的组成部分:背景冷电子和质子和环形分布质子。低环分布所产生的质子等离子体密度区域,而没有波女士生成的高密度地区。波都限制在本地源附近地区因为它们是阻尼的背景冷等离子体。比背景电子,暗示plasmaspheric质子可能主导调制女士的波。女士波的产生和传播等离子体层顶密度结构。结果表明,背景等离子体可以调制波女士和密度变化可能发挥重要作用的空间吗女士波的分布。

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