托卡马克热等离子体中失控电子驱动等离子体波的稳定性分析

Carmine Castaldo, Lorenzo Della Volpe, Renato Fedele, William Bin, Paolo Buratti, Alessandro Cardinali, Francesco Napoli, Massimo Marinucci, Gerarda Apruzzese, C. Cianfarani, Edmondo Giovannozzi, O. Tudisco
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引用次数: 0

摘要

考虑到热等离子体麦克斯韦背景,在电子和离子温度为 1 千伏的情况下,对失控电子(RE)驱动的等离子体波进行了局部稳定性分析。结果表明,热等离子体波,即电子等离子体波(EPW)和离子伯恩斯坦波(IBW),可以在其凝聚频率上通过RE的切伦科夫共振被RE驱动而不稳定,RE的能量分布峰值约为8 MeV。RE 能量分布的模型是倾斜正态分布。EPW和IBW波偶发生在任何连续的离子-回旋谐波频率nfci之间,高于较低的混合共振。在它们的汇合处,垂直群速度消失,预计会产生大量射频辐射。两个连续汇合点之间的频率差距为 ~fci。在 FTU 托卡马克的各种静态失控等离子体放电过程中,都检测到了射频线发射群,它们之间的频率间隙几乎恒定为 ~fci/2。对特定放电的分析表明,观测到的线发射频率与 EPW-IBW 汇合处出现的频率是合理一致的。对于 ~fci/2 间隙的线发射,提出了非线性模式耦合的可能解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability analysis of plasma waves driven by runaway electrons in tokamak hot plasmas
The local stability analysis of plasma waves driven by runaway electrons (RE) has been performed considering hot plasma Maxwellian background, with electron and ion temperatures of the order of 1 keV. It is shown that hot plasma waves, namely electron plasma waves (EPW) and ion Bernstein waves (IBW) can be driven unstable by RE at their coalescence frequency via Cherenkov resonance by RE with energy distribution peaked at about 8 MeV. A skew-normal distribution is used as a model of the RE energy distribution. The EPW and IBW couples of waves occur between any successive ion-cyclotron harmonics frequencies nfci, above the lower hybrid resonance. At their confluence, the perpendicular group velocity vanishes and significant RF emissions are expected. The frequency gap between two successive confluences is ~fci. Groups of RF line emissions, separated by almost constant frequency gap ~fci/2 are detected during various quiescent runaway plasma discharges in the FTU tokamak. The analysis of a specific discharge suggests that the frequencies of the line emissions observed and the frequencies occurring at the EPW-IBW confluences are in reasonable agreement. A possible explanation of the line emissions with ~fci/2 gap in terms of nonlinear mode coupling is proposed.
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