Electromagnetic effect on the toroidal ion temperature gradient mode

J. Kim, W. Horton, J. Dong
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引用次数: 81

Abstract

A systematic study of the electromagnetic effects on the toroidal ion temperature gradient mode is presented using the local and nonlocal theories with the full kinetic terms. For the nonlocal study, a numerical code is developed to solve the electromagnetic gyrokinetic equation in the ballooning space. The electromagnetic coupling to the shear Alfven mode is shown to give a stabilization of the toroidal temperature gradient mode at almost the same plasma pressure as that at which the kinetically modified magnetohydrodynamic (MHD) ballooning mode becomes destabilized. The transitional β value is shown to be lower in the full kinetic description than in the fluid theory. Possible correlations of these stability results with experimental observations are discussed.
电磁效应对环形离子温度梯度模式的影响
利用全动力学项的局域和非局域理论,系统地研究了电磁效应对环形离子温度梯度模式的影响。对于非局部研究,开发了求解气球空间电磁陀螺动力学方程的数值程序。与剪切Alfven模式的电磁耦合表明,在几乎相同的等离子体压力下,环面温度梯度模式稳定,而动力学修正磁流体动力学(MHD)气球模式变得不稳定。在全动力学描述中,过渡性β值比流体理论中要低。讨论了这些稳定性结果与实验观测的可能相关性。
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