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Mechanism of structure-driven nonlinear instability of double tearing mode in reversed magnetic shear plasmas

机译:反向磁剪切等离子体中双撕裂模式的结构驱动非线性不稳定性机理

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摘要

The trigger for the nonlinear destabilization of the double tearing mode (DTM), referred to as a structure-driven instability leading to explosive growth and subsequent collapse, is investigated. We use the reduced MHD equations that solve the evolution of perturbations from an equilibrium deformed by two-dimensional magnetic islands during the slow evolution of the quasi-steady nonlinear regime. By examining conditions near marginal stability (under which the explosive growth is not triggered), we have identified a new secondary instability that starts growing when the magnetic energy of the primary fluctuations associated with the islands reaches a critical level. The energy source of this instability is different from that of the linear DTM; it originates inthe spatial deformation due to the DTM-driven magnetic islands and is responsible for the subsequent nonlinear destabilization. The growth rate of this secondary instability is found to be proportional to the magnetic energy,suggesting that it exhibits modulational characteristics.
机译:研究了双撕裂模式(DTM)的非线性失稳触发因素,这种触发方式被称为结构驱动的不稳定性,导致爆炸性增长和随后的坍塌。我们使用简化的MHD方程来解决在准稳态非线性状态的缓慢演化过程中二维磁岛变形引起的平衡扰动的演化。通过检查边缘稳定附近的条件(在该条件下不会触发爆炸性增长),我们确定了新的次级不稳定性,当与这些岛相关的主要波动的磁能达到临界水平时,该次级不稳定性开始增长。这种不稳定性的能量来源不同于线性DTM。它起因于DTM驱动的磁岛引起的空间变形,并导致随后的非线性不稳定。发现这种次级不稳定性的增长率与磁能成正比,表明它具有调制特性。

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