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共振锥与自洽射频鞘层的相互作用。

Resonance cone interaction with a self-consistent radio-frequency sheath.

作者信息

Myra J R, D'Ippolito D A

机构信息

Lodestar Research Corporation, 2400 Central Avenue P-5, Boulder, Colorado 80301, USA.

出版信息

Phys Rev Lett. 2008 Nov 7;101(19):195004. doi: 10.1103/PhysRevLett.101.195004. Epub 2008 Nov 6.

Abstract

We study the propagation of lower-hybrid-type resonance cones in a tenuous magnetized plasma, and, in particular, their interaction with, and reflection from, the plasma sheath near a conducting wall. The sheath is modeled as a vacuum gap whose width is given by the Child-Langmuir law. The application of interest is when the resonance cones are launched (parasitically) by an ion-cyclotron radio-frequency antenna in a typical rf-heated tokamak fusion experiment. We calculate the fraction of launched voltage in the resonance cones that is transmitted to the sheath, and show that it has a sensitive thresholdlike turn on when a critical parameter reaches order unity. Above threshold, the fractional voltage transmitted to the sheath is order unity, leading to strong and potentially deleterious rf-wall interactions in tokamak rf heating experiments. Below threshold, these interactions can be avoided.

摘要

我们研究了弱磁化等离子体中低杂波型共振锥的传播,特别是它们与导电壁附近等离子体鞘层的相互作用以及从鞘层的反射。鞘层被建模为一个真空间隙,其宽度由Child-Langmuir定律给出。感兴趣的应用场景是在典型的射频加热托卡马克聚变实验中,共振锥由离子回旋射频天线(寄生地)发射时。我们计算了共振锥中发射电压传输到鞘层的比例,并表明当一个关键参数达到量级为1时,它有一个类似阈值的敏感开启。高于阈值时,传输到鞘层的分数电压为量级1,这在托卡马克射频加热实验中会导致强烈且可能有害的射频-壁相互作用。低于阈值时,可以避免这些相互作用。

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