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首页> 外文期刊>Physics of plasmas >Three dimensional instabilities of an electron scale current sheet in collisionless magnetic reconnection
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Three dimensional instabilities of an electron scale current sheet in collisionless magnetic reconnection

机译:无碰撞磁重连接中电子尺度电流片的三维不稳定性

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In collisionless magnetic reconnection, electron current sheets (ECS) with thickness of the order of an electron inertial length form embedded inside ion current sheets with thickness of the order of an ion inertial length. These ECS’s are susceptible to a variety of instabilities which have the potential to affect the reconnection rate and/or the structure of reconnection. We carry out a three dimensional linear eigen mode stability analysis of electron shear flow driven instabilities of an electron scale current sheet using an electron-magnetohydrodynamic plasma model. The linear growth rate of the fastest unstable mode was found to drop with the thickness of the ECS. We show how the nature of the instability depends on the thickness of the ECS. As long as the half-thickness of the ECS is close to the electron inertial length, the fastest instability is that of a translational symmetric two-dimensional (no variations along flow direction) tearing mode. For an ECS half thickness sufficiently larger or smaller than the electron inertial length, the fastest mode is not a tearing mode any more and may have finite variations along the flow direction. Therefore, the generation of plasmoids in a nonlinear evolution of ECS is likely only when the half-thickness is close to an electron inertial length.
机译:在无碰撞磁重新连接中,厚度为电子惯性长度的电子流片(ECS)形成为嵌入离子惯性长度的厚度的离子流片的内部。这些ECS易受各种不稳定因素的影响,这可能会影响重新连接速率和/或重新连接的结构。我们使用电子-磁流体动力学等离子体模型对电子尺度流片的电子剪切流驱动的不稳定性进行了三维线性本征模稳定性分析。发现最快的不稳定模式的线性增长率随着ECS的厚度而降低。我们展示了不稳定的性质如何取决于ECS的厚度。只要ECS的半厚度接近电子惯性长度,最快的不稳定性就是平移对称的二维(沿流动方向无变化)撕裂模式。对于足够大于或小于电子惯性长度的ECS半厚度,最快模式不再是撕裂模式,并且沿流动方向可能有有限的变化。因此,仅当半厚度接近于电子惯性长度时,才有可能在ECS的非线性演化过程中产生等离子体。

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