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Dynamics of magnetically driven plasma jets: An instability of an instability, gas cloud impacts, shocks, and other deformations.

机译:电磁等离子体射流的动力学:不稳定,气体云撞击,冲击和其他变形的不稳定。

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摘要

The Caltech experiment described here produces plasmas relevant to both astrophysical and fusion energy studies. A disk-shaped set of electrodes mounted on the inside of a meter-scale vacuum chamber provides the energy to break a neutral gas, provided at the electrodes only, down into a plasma. The plasma starts as eight loops, and then self-organizes into a single magnetically driven collimated plasma jet. This thesis explores the dynamic evolution of that plasma jet and how changes made to the jet power source or environment alter the evolution. The most significant finding is the discovery that a series of instabilities can lead to magnetic reconnection. The jet undergoes a first, primary instability, called the kink instability. The exponential growth of kink amplitude provides an acceleration that drives a smaller scale, secondary instability, called the Rayleigh--Taylor instability. The Rayleigh--Taylor instability can drop the diameter of the plasma to a small enough scale to allow magnetic reconnection. A second set of experiments explores the range of collision interactions between the plasma jet and a cloud of neutral gas in its path. A final set of experiments shows the dependence of jet radius on a time-changing current. A new power supply that led to the observation of some of these new dynamics is also described.
机译:这里描述的加州理工学院实验产生的等离子体与天体物理学和聚变能研究都有关。安装在米级真空室内部的一组盘状电极提供能量,使仅在电极上提供的中性气体分解成等离子体。等离子体从八个回路开始,然后自组织成一个磁驱动的准直等离子体射流。本文探讨了等离子体射流的动态演化,以及对射流电源或环境的变化如何改变其演化。最重要的发现是发现一系列不稳定性会导致磁重新连接。射流经历了第一个主要的不稳定性,称为扭结不稳定性。纽结振幅的指数增长提供了一个驱动力,该加速度驱动了较小的尺度,二次不稳定性,即瑞利泰勒不稳定性。瑞利-泰勒(Rayleigh-Taylor)的不稳定性会使等离子体的直径减小到足够小的规模,从而允许磁重新连接。第二组实验探索了等离子体射流与其路径中的中性气体云之间的碰撞相互作用范围。最后一组实验表明射流半径对时变电流的依赖性。还介绍了导致观察到其中一些新动态的新电源。

著录项

  • 作者

    Moser, Auna Louise.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:26

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