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首页> 外文期刊>Geophysical Research Letters >Atypical current sheets and plasma bubbles: A self-consistent kinetic model
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Atypical current sheets and plasma bubbles: A self-consistent kinetic model

机译:非典型电流片和等离子气泡:自洽动力学模型

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摘要

As revealed by CLUSTER observations, thin current sheets in the magnetotail may strongly differ from the conventional Harris profile due to the effects of embedding and bifurcation. At the same time, they often have no signatures of collisionless magnetic reconnection. A universal phenomenon involving such atypical current sheets, which is connected but not identical to reconnection, is the formation of plasma bubbles. We present a self-consistent kinetic model of plasma bubbles based on a 2-D generalization of earlier atypical current sheet models that also takes into account the south-then-north sense of B-z perturbations typical for earthward traveling compression regions and fast flows in the central plasma sheet. The new model predicts that the dominant structural element of bubbles is a region of the local reduction of the cross-tail current provided by the current bifurcation effect.
机译:正如CLUSTER观察所揭示的,由于嵌入和分叉的影响,磁尾中的薄电流片可能与传统的Harris轮廓有很大不同。同时,它们通常没有无碰撞磁重新连接的特征。涉及这种非典型电流片的普遍现象是等离子气泡的形成,这种现象连接在一起但与重新连接不同。我们基于先前的非典型电流表模型的2-D泛化提出了自洽的等离子体气泡动力学模型,该模型还考虑了向地行进的压缩区域中典型的Bz摄动的南-北-北方向的扰动,以及中央血浆片。新模型预测,气泡的主要结构元素是由电流分叉效应提供的交叉尾电流局部减小的区域。

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