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An electromagnetic drift instability in the magnetic reconnection experiment and its importance for magnetic reconnection

机译:磁重联实验中的电磁漂移不稳定性及其对磁重联的重要性

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摘要

The role which resistivity plays in breaking magnetic field lines, heating the plasma, and plasma-field slippage during magnetic reconnection is discussed. Magnetic fluctuations are observed in the MRX (magnetic reconnection experiment) [M. Yamada, H. Ji, S. Hsu, T. Carter, R. Kulsrud, N. Bertz, F. Jobes, Y. Ono, and F. Perkins, Phys. Plasmas 4, 1936 (1997)] that are believed to provide resistive friction or wave resistivity. A localized linear theory has been proposed for their origin as an obliquely propagating lower hybrid drift instability. In this paper, the linear theory of the instability is summarized, and the resulting heating and slippage are calculated from quasilinear theory. Making use of measured amplitudes of the magnetic fluctuations in the MRX, the amount of these effects is estimated. Within the experimental uncertainties they are shown to be quite important for the magnetic reconnection process. (c) 2005 American Institute of Physics.
机译:讨论了电阻率在断开磁力线,加热等离子体以及重新连接过程中等离子体场滑移中所起的作用。在MRX(磁重连实验)中观察到了磁波动[M. Yamada,H. Ji,S. Hsu,T.Carter,R.Kulsrud,N.Bertz,F.Jobes,Y.Ono和F.Perkins,物理学。等离子4,1936年(1997)],据信可提供电阻摩擦或波电阻率。已经提出了针对其起源的局部线性理论,认为其是倾斜传播的较低混合漂移的不稳定性。在本文中,总结了不稳定性的线性理论,并根据拟线性理论计算了由此产生的加热和滑移。利用MRX中测得的磁波动幅度,可以估算出这些影响的程度。在实验不确定性范围内,它们对磁重连过程非常重要。 (c)2005年美国物理研究所。

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