利用两个碰撞球点进行三维磁重联的实验研究

Y. Ono, A. Morita, M. Katsurai, M. Yamada
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引用次数: 116

摘要

利用轴向碰撞球标记扩展了磁重联动力学三维效应的实验研究[M]。Yamada et al.,物理学。[j].生物工程学报,1998,27(5):559 - 567。两个主要半径为15 ~ 20 cm、平行环面电流高达30 kA的环形球体等离子体在一个外部平衡场中碰撞合并。值得注意的是,目前的实验设置允许人们从局部和全局的角度全面地研究磁重联。通过改变内部环面磁场的极性和外部环面磁场的大小,可以改变合并磁场线之间的重联角θ。观察到反螺旋合并θ ~ 180°的速度比共螺旋合并θ ~ 90°的速度快3倍。这表明三维效应对重连过程的重要性。这种差异归因于有和没有平行于重连接(X)线的磁场分量的中性电流片的特性。在反螺旋合并中,中性电流片被压缩的时间比在共螺旋合并中短得多,从而导致更高的电流密度和随后更快的电流片衰减。这会导致更快的磁重联。重联速度随球点初始接近速度成比例增加,表明可压缩驱动重联模型与目前的重联实验结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of three-dimensional magnetic reconnection by use of two colliding spheromaks
Experimental investigation of three‐dimensional (3‐D) effects of magnetic reconnection dynamics has been extended by use of axially colliding spheromaks [M. Yamada et al., Phys. Fluids B 3, 2379 (1991)]. The two toroidal shape spheromak plasmas with major radii of 15–20 cm and with parallel toroidal currents of up to 30 kA collide to merge in an external equilibrium field. It is important to note that the present experimental setup allows one to investigate magnetic reconnection comprehensively from both local and global points of view. Reconnection angle θ between the merging field lines is varied by changing the polarity of the internal toroidal field and the magnitude of an external toroidal field. It is observed that the speed of counterhelicity merging with θ∼180° is about three times faster than that of cohelicity merging with θ∼90°. This suggests the significance of a 3‐D effect on the reconnection process. This difference is attributed to the property of the neutral current sheets with and without the magnetic field component parallel to the reconnection (X) line. In the counterhelicity merging, the neutral current sheet is compressed in much shorter time than in the cohelicity merging, resulting in much higher current density and subsequent faster decay of the current sheet. This induces a faster magnetic reconnection. The reconnection speed increases proportionally with the initial approaching speed of the spheromaks, suggesting that a compressible driven reconnection model is consistent with the present reconnection experimental results.
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