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Relativistic ray-tracing of electron Bernstein waves in a spherical tokamak reactor

机译:球形托卡马克反应堆中电子伯恩斯坦波的相对论射线追踪

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Electron Bernstein waves (EBW) can propagate between electron cyclotron harmonics in hot, dense plasmas with no high-density cutoff (unlike electron cyclotron waves). ARIES-ST is a spherical tokamak (ST) reactor study. A promising method of heating and driving current in such an ST reactor would be with electron Bernstein waves. These could be mode converted from microwave vacuum modes (X-mode and O-mode) launched from the edge. In this paper, fully relativistic ray-tracing calculations (both damping and propagation) of EBWs in ARIES-ST are presented, using the relativistic dispersion solver R2D2 and the ray-tracing code GENRAY. The ray paths, damping locations, and polarizations are compared with the more commonly used non-relativistic EBW ray-tracing. A range of frequencies are shown for EBWs with small n(parallel to) that could be produced by the X-B mode conversion process, and EBWs with large n(parallel to) approximate to 0.6, produced by the O-X-B mode conversion process. With the density and temperature profile chosen for this paper, the greatest depth into the core that could be reached with mode-converted EBWs is a radial location of approximately rho = 0.4. Although the radial location of the damping in most cases was not significantly different between the relativistic and non-relativistic cases, there are differences in the poloidal locations, as well as in the polarizations of the wave along the ray path, especially in the damping region.
机译:电子伯恩斯坦波(EBW)可以在热致密等离子体中的电子回旋加速器谐波之间传播,而没有高密度截止(与电子回旋加速器波不同)。 ARIES-ST是一项球形托卡马克(ST)反应堆研究。在这种ST反应器中加热和驱动电流的一种有前途的方法是使用电子伯恩斯坦波。这些可以从边缘发射的微波真空模式(X模式和O模式)转换为模式。在本文中,使用相对论色散求解器R2D2和射线跟踪代码GENRAY,提出了ARIES-ST中EBW的完全相对论射线跟踪计算(阻尼和传播)。将射线路径,阻尼位置和偏振与更常用的非相对论EBW射线跟踪进行了比较。显示了X-B模式转换过程可能产生的n(平行)较小的EBW的频率范围,以及O-X-B模式转换过程产生的n(平行)较大的EBW的频率范围。在为本文选择密度和温度分布的情况下,模式转换后的EBW可以达到的最大芯深为径向位置,大约为rho = 0.4。尽管在大多数情况下阻尼的径向位置在相对论和非相对论情况下没有显着差异,但在极点位置,以及沿射线路径的波的极化存在差异,特别是在阻尼区域。

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