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Analysis of waves in the plasma guided by a periodical vane-type slow wave structure

机译:周期性叶片型慢波结构引导的等离子体中的波分析

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摘要

[[abstract]]In this study, the dispersion relation has been derived to characterize the propagation of the waves in the plasma guided by a periodical vane-type slow wave structure. The plasma is confined by a quartz plate. Results indicate that there are two different waves in this structure. One is the plasma mode that originates from the plasma surface wave propagating along the interface between the plasma and the quartz plate, and the other is the guide mode that originally travels along the vane-type slow wave structure. In contrast to its original slow wave characteristics, the guide mode becomes a fast wave in the low-frequency portion of the passband, and there exists a cut-off frequency for the guide mode. The vane-type guiding structure has been shown to limit the upper frequency of the passband of the plasma mode, compared with that of the plasma surface wave. In addition, the passband of the plasma mode increases with the plasma density while it becomes narrower for the guide mode. The influences of the parameters of the guiding structure and plasma density on the propagation of waves are also presented.
机译:[[摘要]]在这项研究中,已经得出了色散关系,以表征由周期性叶片型慢波结构引导的等离子体中波的传播。等离子体由石英板限制。结果表明,此结构中存在两种不同的波浪。一种是等离子体模式,其源于沿等离子体与石英板之间的界面传播的等离子体表面波,另一种是最初沿叶片型慢波结构传播的引导模式。与原来的慢波特性相反,引导模式在通带的低频部分变为快波,并且存在引导模式的截止频率。与等离子体表面波相比,叶片型导引结构已经显示出限制了等离子体模式通带的上限频率。另外,等离子体模式的通带随等离子体密度而增加,而对于引导模式则变得更窄。还介绍了引导结构的参数和等离子体密度对波传播的影响。

著录项

  • 作者

    Wu TJ;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 [[iso]]en
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