首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Carriers of the Field-Aligned Currents in the Plasma Sheet Boundary Layer: An MMS Multicase Study
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Carriers of the Field-Aligned Currents in the Plasma Sheet Boundary Layer: An MMS Multicase Study

机译:运营商Field-Aligned电流的等离子体片边界层:MMS多波研究

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摘要

With the advantage of fast plasma measurements of the Magnetospheric Multiscale (MMS) mission in the magnetotail, we first investigate the particle carriers of field-aligned currents (FACs) in the plasma sheet boundary layer for three cases. In all cases, electrons are the main carriers of FACs, while the contribution of ions can be neglected. The analysis of these cases indicate that thermal electrons (energy range from 0.5T_e to 5T_e, where T_e is the electron parallel temperature) are the main carrier of the FACs. However, cold electrons (energy less than 0.5T_e) can also significantly contribute to the FACs. In one of three cases, suprathermal electrons (energy greater than 5T_e) contribute but a small portion to the total current. The difference between the cases may depend on the local dynamics in the magnetotail. Then a statistical analysis was performed, which also shows that the thermal electrons are dominant in most of the FACs, while the cold electrons can be dominant in some cases. However, the suprathermal electrons cannot support the FACs solely, and they and the cold electrons are more often supporting the FACs together with the thermal electrons.
机译:与快速的等离子体测量的优势磁性层的多尺度(MMS)的使命磁尾,我们第一次调查粒子的载体field-aligned电流(流式细胞仪)等离子体片边界层三个案例。流式细胞仪的运营商,而离子的贡献可以被忽视。表明热电子(能量范围从0.5 T_e 5 T_e, T_e是电子并行温度)的主要载体流式细胞仪。0.5 t_e)还可以极大的影响流式细胞仪。电子(能量大于5 t_e)的贡献但是一小部分的总电流。情况下可能取决于之间的区别局部动态磁尾。进行统计分析,也表明热电子占据主导地位大部分的流式细胞仪,而冷电子在某些情况下占主导地位。电子不能完全支持流式细胞仪,他们经常和冰冷的电子支持流式细胞仪和热电子。

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