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Nonlinear phenomena in a pure electron plasma studied with a 2-D fluid code.

机译:用二维流体代码研究纯电子等离子体中的非线性现象。

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摘要

This thesis presents a new computational tool for studying cylindrical pure electron plasmas. Previous research used linear methods to describe the evolution of small plasma perturbations. This new tool numerically solves the nonlinear two-dimensional (2-D) fluid equations in cylindrical coordinates, allowing the exploration of many phenomena that have been observed experimentally in these plasmas. Most experimentally observed phenomena are large in amplitude and follow nonlinear dynamics. Clearly, codes based on the linearized equations can not reproduce these nonlinear phenomena.; The plasma was first studied for small amplitude perturbations using the nonlinear fluid code, producing results that agree with linearized calculations. The perturbed electric field decays in time, due to shear in the flow of density perturbations at different radii, which results in the total contribution to the perturbed electric field phase mixing away.; At higher amplitudes, the decay envelope becomes modulated, which is a result that has been observed experimentally and is also reproduced by this fluid code. The modulation is caused by nonlinear trapping of fluid elements within the wave, which is illustrated in images of the perturbed density.; For two applied pulses separated in time, a third echo response is observed after the responses to the two applied pulses have decayed away. Echoes have been observed experimentally in neutral plasmas, but have not yet been observed experimentally in non-neutral plasmas.; At very high amplitudes, a nonlinear decay instability occurs. A high amplitude wave decays into a wave with lower azimuthal symmetry number due to an interaction occurring at the beat frequency between the two waves. The beat-wave decay instability has been observed experimentally, and is also observed using the 2-D nonlinear fluid code.; The 2-D cylindrical nonlinear fluid code is capable of reproducing a wide range of non-neutral plasma phenomena, and is an important new tool for future research on non-neutral plasmas. This research is also relevant to ordinary fluids, since the equations describing-a non-neutral plasma are analogous to the 2-D Euler equations for an inviscid fluid.
机译:本文为研究圆柱纯电子等离子体提供了一种新的计算工具。先前的研究使用线性方法来描述小等离子体扰动的演变。这个新工具可以数值求解圆柱坐标系中的非线性二维(2-D)流体方程,从而可以探索在这些等离子体中实验观察到的许多现象。大多数实验观察到的现象幅度大,并且遵循非线性动力学。显然,基于线性方程的代码无法重现这些非线性现象。首先使用非线性流体代码研究了等离子体的小振幅扰动,产生的结果与线性计算结果吻合。扰动的电场随时间的流逝而衰减,这是由于密度扰动在不同半径下的流动所引起的,这导致了扰动电场相混合的总贡献。在更高的振幅下,衰减包络被调制,这是实验观察到的结果,并且也被该流体代码再现。调制是由波中流体元素的非线性捕获引起的,这在扰动密度的图像中得到了说明。对于在时间上分开的两个施加的脉冲,在对两个施加的脉冲的响应衰减掉之后,观察到第三回波响应。在中性血浆中已经通过实验观察到回声,但是在非中性血浆中还没有通过实验观察到回声。在非常高的振幅下,会发生非线性衰减不稳定性。由于在两个波之间的拍频处发生相互作用,因此高振幅波衰减为具有较低方位对称数的波。通过实验观察到了拍波衰减的不稳定性,并且也使用二维非线性流体代码观察到了这种情况。二维圆柱非线性流体代码能够重现广泛的非中性等离子体现象,并且是未来非中性等离子体研究的重要新工具。这项研究也与普通流体有关,因为描述非中性等离子体的方程类似于无粘性流体的二维Euler方程。

著录项

  • 作者

    Bachman, David Alan.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Fluid and Plasma.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学 ; 机械、仪表工业 ;
  • 关键词

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