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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Formation of Rolling-Pin Distribution of Suprathermal Electrons Behind Dipolarization Fronts
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Formation of Rolling-Pin Distribution of Suprathermal Electrons Behind Dipolarization Fronts

机译:擀面杖分布的形成Suprathermal电子Dipolarization背后方面

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The rolling-pin distribution of suprathermal electrons, exhibiting electron pitch angles primarily at 0°, 90°, and 180°, receives attention in both observations and simulations recently. However, its formation mechanism has rarely been studied. In this work, we report an observation of such distribution with two substructures behind the dipolarization front (DF) and reveal that only Fermi mechanism is contributory to suprathermal electron acceleration. We present a new explanation for its formation. The Fermi mechanism accelerates parallel and antiparallel suprathermal electrons, the spatially varying magnetic bottles control the emergence of perpendicular electrons, and electrons whose pitch angle around 45° and 135° drift away in the middle magnetotail. Under the combination of these mechanisms, the rolling-pin distribution with two substructures is formed behind DFs. This formation mechanism is useful to understand the electron dynamics behind DFs.
机译:suprathermal的擀面杖分布电子,展示电子螺距角主要在0°、90°和180°,接收注意观察和模拟最近。很少被研究。这样的分布有两个观察子结构dipolarization背后的前面(DF)和显示,只有费米机制分摊suprathermal电子加速度。它的形成。平行和反平行的suprathermal电子,空间不同的磁瓶控制垂直电子的出现,和电子的螺旋角约45°、135°漂移在磁尾。这些机制的组合,擀面杖分布有两个子结构组成DFs的后面。了解电子DFs背后的动力。

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