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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-altitude satellite measurements of pulsating auroral electrons
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Low-altitude satellite measurements of pulsating auroral electrons

机译:低空卫星测量脉动极光电子

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摘要

We present observations from the Defense Meteorological Satellite Program and Reimei satellites, where common-volume high-resolution ground-based auroral imaging data are available. These satellite overpasses of ground-based all-sky imagers reveal the specific features of the electron populations responsible for different types of pulsating aurora modulations. The energies causing the pulsating aurora mostly range from 3 keV to 20 keV but can at times extend up to 30 keV. The secondary, low-energy electrons (<1 keV) are diminished from the precipitating distribution when there are strong temporal variations in auroral intensity. There are often persistent spatial structures present inside regions of pulsating aurora, and in these regions there are secondary electrons in the precipitating populations. The reduction of secondary electrons is consistent with the strongly temporally varying pulsating aurora being associated with field-aligned currents and hence parallel potential drops of up to 1 kV.
机译:我们现在观察防守气象卫星计划和Reimeicommon-volume高分辨率的卫星地面极光图像数据是可用的。这些卫星地面的立交桥次全天成像仪的特定特性电子的数量负责不同类型的脉动极光调节。主要引起脉动的能量极光范围从3 keV 20 keV但有时延长30凯文。电子(< 1 keV)是减少的当有很强的沉淀分布颞极光强度的变化。往往是持久的空间结构呈现区域内的脉动极光,在这些区域有二次电子沉淀的人口。二次电子是一致的强烈暂时不同脉动极光与field-aligned水流和因此平行1 kV的潜在下降。

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