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Propagation and damping of electromagnetic waves in non-maxwellian plasmas near the ion cyclotron frequency

机译:离子回旋频率附近的非麦克斯韦等离子体中电磁波的传播和衰减

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摘要

In radio-frequency heating of plasmas, the launched wave undergoes tunneling, reflection, mode conversion, and damping near the resonance layer. The single-pass scattering parameters can be estimated from the mode conversion tunneling equation, which has been previously studied for Maxwellian plasmas. In this work, the mode conversion tunneling analysis is extended to include non-Maxwellian velocity distributions near the ion cyclotron frequency. The derived wave equation is applied to analyze propagation and damping in the minority heating regime with the distribution functions obtained from the Fokker-Plank equation. Additionally, the effects of the velocity distribution, in comparison with an approximate Maxwellian distribution, are investigated.
机译:在等离子体的射频加热中,发射的波在共振层附近经历隧穿,反射,模式转换和阻尼。可以通过模式转换隧穿方程估算单程散射参数,该方程先前已针对麦克斯韦等离子体进行了研究。在这项工作中,模式转换隧穿分析扩展到包括离子回旋加速器频率附近的非麦克斯韦速度分布。利用从Fokker-Plank方程获得的分布函数,将导出的波动方程应用于分析少数加热条件下的传播和阻尼。另外,与近似麦克斯韦分布相比,研究了速度分布的影响。

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