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Strongly localized magnetic reconnection by the super-Alfvénic shear flow

机译:Super-Alfvénic剪切流量强烈局部磁力重新连接

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摘要

We demonstrate that the dragging of the magnetic field by the super-Alfvénic shear flows out of the reconnection plane can strongly localize the reconnection x-line in collisionless pair plasmas, reversing the current direction at the x-line. Reconnection with this new morphology, which is impossible in resistive-magnetohydrodynamics, is enabled by the particle inertia. Surprisingly, the quasi-steady reconnection rate remains of order 0.1 even though the aspect ratio of the local x-line geometry is larger than unity, which completely excludes the role of tearing physics. We explain this by examining the transport of the reconnected magnetic flux and the opening angle made by the upstream magnetic field, concluding that the reconnection rate is still limited by the constraint imposed at the inflow region. Based on these findings, we propose that this often observed fast rate value of order 0.1 itself, in general, is an upper bound value determined by the upstream constraint, independent of the localization mechanism and dissipation therein.
机译:我们证明,通过超级 - alfvénic剪切流出重新连接平面的磁场可以强烈地定位在碰撞的对等离子体中的重新连接X线,反转X线处的电流方向。通过这种新形态重新连接,在电阻磁力学中不可能通过粒子惯性使能。令人惊讶的是,即使局部X线几何形状的纵横比大于Unity的宽高比,Quali稳定的重新连接率为0.1,这完全排除了撕裂物理学的作用。我们通过检查由上游磁场制造的重新连接的磁通和开口角度的传输来解释这一点,得出结论,即重构率仍然受到流入区域施加的约束的限制。基于这些发现,我们建议通常观察到顺序0.1本身的快速速率值,通常是由上游约束确定的上界值,无关,与其中的定位机制独立于本地化机制和耗散。

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