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Influence of the Hall effect and electron inertia in collisionless magnetic reconnection

机译:霍尔效应和电子惯性在无碰撞磁重联中的影响

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摘要

We study the role of the Hall current and electron inertia in collisionless magnetic reconnection within the framework of full two-fluid MHD. At spatial scales smaller than the electron inertial length, a topological change of magnetic field lines exclusively due to the electron inertia becomes possible. Assuming stationary conditions, we derive a theoretical scaling for the reconnection rate, which is simply proportional to the Hall parameter. Using a pseudo-spectral code with no dissipative effects, our numerical results confirm this theoretical scaling. In particular, for a sequence of different Hall parameter values, our numerical results show that the width of the current sheet is independent of the Hall parameter, while its thickness is of the order of the electron inertial range, thus confirming that the stationary reconnection rate is proportional to the Hall parameter. (C) 2016 AIP Publishing LLC.
机译:我们研究了霍尔电流和电子惯性在全双流体MHD框架内无碰撞磁重连接中的作用。在小于电子惯性长度的空间尺度上,仅由于电子惯性导致的磁场线的拓扑变化变为可能。假设条件稳定,我们得出重新连接速率的理论比例,该比例与霍尔参数成正比。使用无耗散效应的伪谱码,我们的数值结果证实了这一理论上的定标。特别是,对于一系列不同的霍尔参数值,我们的数值结果表明,电流板的宽度与霍尔参数无关,而其厚度为电子惯性范围的量级,从而证实了平稳的重新连接率与霍尔参数成正比。 (C)2016 AIP出版有限责任公司。

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