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The reconnection of magnetic fields between plasmas with different densities: Scaling relations

机译:具有不同密度的等离子体之间的磁场重新连接:比例关系

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Using two-dimensional compressible-magnetohydrodynamic computer simulations, the reconnection of magnetic fields between two plasmas with different mass densities is examined. Antiparallel, undriven merging is studied from a Harris-sheet initial condition with the sheet separating the two different plasmas. Reconnection is initiated with a resistive spot in the center of the Harris sheet. Density ratios from 1 to 320 are simulated. It is found that the rate of magnetic-field reconnection R is give approximately as R=0.07 upsilon(Ah), where upsilon(Ah)=B/[4 pi(0.5 rho(1)+0.5 rho(1))](1/2) is a hybrid Alfven speed constructed by averaging the densities of the two plasmas. In the symmetric-density case, plasma jetting speeds are equal to the local ExB velocity; in the asymmetric-density cases, the plasma jetting speeds exceed the local ExB velocity. In the asymmetric cases, plasma jetting tends to be parallel to the local magnetic field. In the symmetric-density case the plasma jetting arises from the site of the X-line and resides in the region of magnetic-field reversal; in the asymmetric case, jetting tends to reside in the lower-density plasma. (C) 2007 American Institute of Physics.
机译:使用二维可压缩磁流体力学计算机模拟,研究了具有不同质量密度的两个等离子体之间的磁场重新连接。从哈里斯工作表的初始条件研究反平行,无驱动合并,工作表将两个不同的等离子体分开。重新连接以哈里斯片材中心的电阻点开始。模拟从1到320的密度比。发现磁场重连率R约为R = 0.07 upsilon(Ah),其中up​​silon(Ah)= B / [4 pi(0.5 rho(1)+0.5 rho(1))]( 1/2)是混合Alfven速度,该速度是通过平均两个等离子体的密度而构建的。在对称密度的情况下,等离子体的喷射速度等于局部ExB的速度。在不对称密度的情况下,等离子体的喷射速度超过了局部ExB的速度。在非对称情况下,等离子流倾向于平行于局部磁场。在对称密度的情况下,等离子体喷射是从X线的位置产生的,并且位于磁场反转的区域中;在不对称的情况下,喷射倾向于停留在较低密度的等离子体中。 (C)2007美国物理研究所。

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