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Nonlinear response of magnetic islands to localized electron cyclotron current injection

机译:磁岛对局域电子回旋加速器电流注入的非线性响应

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摘要

The magnetic island evolution under the action of a current generated externally by electron cyclotron wave beams is studied using a reduced resistive magnetohydrodynamics plasma model. The use of a two-dimensional reconnection model shows novel features of the actual nonlinear evolution as compared to the zero-dimensional model of the generalized Rutherford equation. When the radio frequency control is applied to a small magnetic island, the complete annihilation of the island width is followed by a spatial phase shift of the island, referred as “flip” instability. On the other hand, a current-drive injection in a large nonlinear island can be accompanied by the occurrence of a Kelvin-Helmholtz instability. These effects need to be taken into account in designing tearing mode control systems based on radio frequency current-drive.
机译:使用简化的电阻磁流体动力学等离子体模型研究了电子回旋波束在外部产生的电流作用下的磁岛演化。与广义卢瑟福方程的零维模型相比,二维重新连接模型的使用显示了实际非线性演化的新颖特征。当将射频控制应用于一个小的磁岛时,岛宽度的完全an灭之后是岛的空间相移,称为“翻转”不稳定性。另一方面,在大的非线性岛中进行电流驱动注入可能会引起开尔文-亥姆霍兹不稳定性。在设计基于射频电流驱动的撕裂模式控制系统时,必须考虑这些影响。

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