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Distribution of Field-Aligned Electron Events in the High-Altitude Polar Region: Cluster Observations

机译:高海拔极区域场对准电子事件的分布:聚类观测

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摘要

Field-aligned electrons (FAEs) are important for the energy transport in the solar wind-magnetosphere-ionosphere coupling. However, the distribution of FAEs and the concerning physical mechanism in different altitudes of the polar region are still unclear. In this paper, data from the Cluster spacecraft were used to study the characteristics of FAEs in high-altitude polar region. We selected FAE events with a flux higher than 3 × 10 8 (cm 2 s) -1 for our analysis. Their distribution was double peaked around the auroral oval. The main peak occurred around the cusp region (magnetic local time (MLT) 0700-1500) which leaned to the dawnside. The other peak appeared in the evening sector with MLT 2100-2300 just before midnight. The durations of the FAE events covered a wide range from 4 to 475 s, with most of the FAE events lasting less than 40 s. The possible physical mechanisms are discussed, namely, that the downward FAEs may consist of decelerated solar wind and reflected up flowing ionospheric electrons in the potential drops, whereas the upward ones may be mirrored solar wind electrons and accelerated ionospheric up flowing electrons.
机译:场取向电子(FAE)对于太阳风-磁层-电离层耦合中的能量传输很重要。但是,FAEs的分布及其在极地不同高度的物理机制仍不清楚。在本文中,使用来自集群航天器的数据来研究高空极地地区的FAEs的特征。我们选择通量大于3×10 8(cm 2 s)-1的FAE事件进行分析。它们的分布在极光椭圆周围呈双峰。主峰出现在尖峰区域附近(电磁本地时间(MLT)0700-1500),该区域倾向于黎明。另一个高峰出现在午夜之前的MLT 2100-2300晚间区域。 FAE事件的持续时间范围从4到475 s,大多数FAE事件的持续时间少于40 s。讨论了可能的物理机制,即向下的FAE可能由减速的太阳风和反射的电势层中的电离层电子反射而形成,而向上的FAE可能是镜面的太阳风电子和加速的电离层上流电子。

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