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Destabilization of beta-induced Alfven eigenmodes by energetic trapped electrons in tokamak

机译:托卡马克中高能俘获的电子使β诱导的Alfven本征模式失稳

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摘要

The stability of high torodial mode number (n) beta-induced Alfven eigenmodes excited by precessional resonance of magnetically trapped energetic electrons in low magnetic-shear tokamak plasma is investigated. The dispersion relation of the energetic-electron beta-induced Alfven eigenmodes (e-BAE) is derived and solved analytically and numerically. It is found that the contribution of the trapped energetic electrons to the e-BAE dispersion relation is limited to the ideal MHD structure of the BAE. Numerical results show that, for typical equilibrium parameters, the e-BAE can be destabilized by the energetic electrons, and the mode frequency is consistent with the experimental observation. Varying the background plasma parameters can lead to transitions between e-BAEs and energetic particle modes. Moreover, the dependence of the e-BAE frequencies and growth rates on energetic electron parameters shows that the growth rates monotonically increase(decrease) with the energetic electron density(the normalized energetic electron density scale length), and the frequencies are not much affected. The frequency and growth rate are sensitive to the energetic electron temperature, and there exists a maximum growth rate.
机译:研究了在低磁剪切托卡马克等离子体中,高圈模数(n)β诱导的Alfven本征模的稳定性,该本征模由磁俘获的高能电子的进动共振激发。推导了高能电子β诱导的Alfven本征模(e-BAE)的色散关系,并进行了解析和数值求解。发现被俘获的高能电子对e-BAE色散关系的贡献限于BAE的理想MHD结构。数值结果表明,对于典型的平衡参数,高能电子可以使e-BAE不稳定,且模频率与实验观察值一致。改变背景等离子体参数可能导致e-BAE和高能粒子模式之间的转换。此外,e-BAE频率和增长率对高能电子参数的依赖性表明,增长率随高能电子密度(归一化高能电子密度尺度长度)单调增加(减少),并且频率受到的影响不大。频率和增长率对高能电子温度敏感,并且存在最大增长率。

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