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Laser Induced Fluorescence Studies of Electrostatic Double Layers in an Expanding Helicon Plasma.

机译:膨胀螺旋等离子体中静电双层的激光诱导荧光研究。

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摘要

We report the first evidence of a laboratory double layer (DL) collapsing in the presence of an instability studied by Chakraborty Thakur et al. 1 with the use of time resolved laser induced fluorescence (LIF) studies. Higher time resolution studies then provided the first statistically validated proof of the correlation between the ion acoustic instability and a DL. Time-frequency analysis in the form of time resolved cross power spectra and continuous wavelet transforms were used to provide insight into beam formation. The implications of this work is that in the creation of strong DLs in expanding plasmas for plasma propulsion or other applications may be self-limited through instability growth. Over the past decade, experimental and theoretical studies have demonstrated the formation of stable, electrostatic, current-free double layers (CFDLs) in plasmas with a strong density gradient; typically a result of a divergent magnetic field. In this work, we present evidence for the formation of multiple double layers within a single divergent magnetic field structure. Downstream of the divergent magnetic field, multiple accelerated ion populations are observed through laser induced fluorescence measurements of the ion velocity distribution function. The formation of the multiple double layer structure is a strong function of the neutral gas pressure in the experiment. The similarity of the accelerated ion populations observed in these laboratory experiments to ion populations observed in reconnection outflow regions in the magnetosphere and in numerical simulations is also described. If ion energization during magnetic reconnection also results solely from acceleration in electric fields, these observations imply a prediction that the ion heating, i.e., the broadening of ion velocity distribution functions, reported in magnetic reconnection experiments is more accurately described by a superposition of differently accelerated ion populations. Therefore, the ion &
机译:我们报告了由Chakraborty Thakur等人研究的存在不稳定性的实验室双层(DL)坍塌的第一个证据。 1使用时间分辨激光诱导荧光(LIF)研究。然后,更高的时间分辨率研究为离子声不稳定性和DL之间的相关性提供了第一个经过统计验证的证据。通过时间分辨交叉功率谱和连续小波变换的形式进行时频分析,可以深入了解波束形成。这项工作的含义是,在为等离子体推进或其他应用而扩展的等离子体中创建强大的DL时,可能会由于不稳定的增长而自我限制。在过去的十年中,实验和理论研究表明,在具有强密度梯度的等离子体中形成了稳定的无静电双电层(CFDL)。通常是发散磁场的结果。在这项工作中,我们提供了在单个发散磁场结构内形成多个双层的证据。在发散磁场的下游,通过离子速度分布函数的激光诱导荧光测量,观察到多个加速的离子种群。在实验中,多层结构的形成是中性气体压力的强函数。还描述了在这些实验室实验中观察到的加速离子种群与在磁层再连接流出区域和数值模拟中观察到的离子种群的相似性。如果磁重连期间的离子激励也仅由电场的加速引起,则这些观察结果表明,磁重连实验中报告的离子加热(即离子速度分布函数的扩展)可以通过不同加速的叠加来更准确地描述。离子种群。因此,离子&

著录项

  • 作者

    Jerry Carr Jr.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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