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首页> 外文期刊>Physical review letters >Structure-Driven Nonlinear Instability as the Origin of the Explosive Reconnection Dynamics in Resistive Double Tearing Modes
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Structure-Driven Nonlinear Instability as the Origin of the Explosive Reconnection Dynamics in Resistive Double Tearing Modes

机译:结构驱动的非线性不稳定性是电阻双撕裂模式下爆炸重新连接动力学的起源

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摘要

The onset of abrupt magnetic reconnection events, observed in the nonlinear evolution of double tearing modes (DTM), is investigated via reduced resistive magnetohydrodynamic simulations. We have identified the critical threshold for the parameters characterizing the linear DTM stability leading to the bifurcation to the explosive dynamics. A new type of secondary instability is discovered that is excited once the magnetic islands on each rational surface reach a critical structure characterized here by the width and the angle rating their triangularization. This new instability is an island structure-driven nonlinear instability, identified as the trigger of the subsequent nonlinear dynamics which couples flow and flux perturbations. This instability only weakly depends on resistivity.
机译:通过减少的电阻磁流体动力学模拟研究了在双撕裂模式(DTM)的非线性演化中观察到的突然磁重连接事件的发生。我们已经确定了表征线性DTM稳定性的参数的临界阈值,从而导致了爆炸动力学的分歧。发现了一种新型的二次不稳定性,一旦每个有理表面上的磁岛到达临界结构,该临界结构在此以其三角形化的宽度和角度来表征就被激发。这种新的不稳定性是由岛结构驱动的非线性不稳定性,被认为是随后的非线性动力学的触发,该非线性动力学将流量和通量扰动耦合在一起。这种不稳定性仅在很小程度上取决于电阻率。

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