首页> 外文期刊>The Astrophysical journal >DYNAMIC THREE-DIMENSIONAL RECONNECTION IN A SEPARATOR GEOMETRY WITH TWO NULL POINTS
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DYNAMIC THREE-DIMENSIONAL RECONNECTION IN A SEPARATOR GEOMETRY WITH TWO NULL POINTS

机译:具有两个空点的分离器几何中的动态三维重新连接

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摘要

The dynamic behavior of disturbances in the vicinity of a pair of magnetically connected three-dimensional null points is examined. The aim is to investigate how nonlinear disturbances lead to strong localized currents that initiate magnetic reconnection at the separator. The problem is formulated in an incompressible cylindrical geometry by superposing arbitrary disturbance fields onto a "background" two-null field. Two different regimes are found for the dynamic evolution, depending on the relative strengths of the background magnetic and velocity fields. In one regime, disturbance pulses split into ingoing and outgoing components, which propagate along the background field lines. In the other "flux pileup" regime, a strong driving flow localizes the disturbances toward the null point pair. Current structures aligned with the spines, fans, and separator present in the field are found to result, and the structure of these currents and their scaling with resistivity is investigated.
机译:研究了一对磁性连接的三维零点附近扰动的动态行为。目的是研究非线性干扰如何导致强局部电流,从而在分离器处引发磁重连。通过将任意扰动场叠加到“本底”二零位场上,问题以不可压缩的圆柱几何形式表示。根据背景磁场和速度场的相对强度,发现了两种不同的动态演化机制。在一种情况下,扰动脉冲分为入射分量和传出分量,它们沿着背景场线传播。在另一个“磁通堆积”状态中,强大的驱动流将干扰定位到零点对。发现与场中存在的棘,风机和隔板对准的电流结构,并研究了这些电流的结构及其随电阻率的变化。

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