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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Global-scale hybrid simulation of cusp precipitating ions associated with magnetopause reconnection under southward IMF
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Global-scale hybrid simulation of cusp precipitating ions associated with magnetopause reconnection under southward IMF

机译:IMF南下与绝经重新连接相关的尖端离子的全局混合模拟

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摘要

With a 3-D global-scale hybrid simulation model, we investigate the energy spectra of cusp precipitating ions and issues associated with magnetopause reconnection under a southward IMF. Both the spatial and temporal energy spectra of cusp precipitating ions are computed by tracing trajectories of the transmitted magnetosheath ions. The spatial spectrum shows a dispersive feature consistent with satellite observations, with higher energy particles at lower latitudes and lower energy particles at higher latitudes. The simulation reveals (1) how and where particles are transmitted from the solar wind into the magnetosphere via direct magnetic reconnection on the dayside; (2) how the features of the spectra are related to ongoing magnetic FTEs; and (3) how the motion of the cusp, particularly the latitudinal variation of the open/closed field line boundary, is correlated with the dayside reconnection and reflected in the energy flux spectra of the precipitating ions as a function of time.
机译:借助3-D全局混合仿真模型,我们研究了尖峰沉淀离子的能谱以及在IMF向南下与磁更年期重新连接有关的问题。尖峰沉淀离子的空间和时间能谱都是通过追踪所传输的磁石离子的轨迹来计算的。空间光谱显示出与卫星观测一致的色散特征,低纬度的能量较高的粒子,高纬度的能量较低的粒子。该模拟揭示(1)在白天通过直接磁重新连接将粒子从太阳风中传输到磁层的方式和位置; (2)频谱特征与正在进行的磁性FTE有何关系; (3)尖端的运动,特别是打开/关闭的场线边界的纬度变化,如何与白天重新连接相关联,并反映在沉淀离子的能量通量谱中作为时间的函数。

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