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Generation of a Purely Electrostatic Collisionless Shock during the Expansion of a Dense Plasma through a Rarefied Medium

机译:密集等离子体通过稀疏介质膨胀过程中产生的纯静电无碰撞冲击

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摘要

A two-dimensional numerical study of the expansion of a dense plasma through a more rarefied one is reported. The electrostatic ion-acoustic shock, which is generated during the expansion, accelerates the electrons of the rarefied plasma inducing a superthermal population which reduces electron thermal anisotropy. The Weibel instability is therefore not triggered and no self-generated magnetic fields are observed, in contrast with published theoretical results dealing with plasma expansion into vacuum. The shock front develops a filamentary structure which is interpreted as the consequence of the electrostatic ion-ion instability, consistently with published analytical models and experimental results.
机译:据报道,通过稀疏的等离子体进行的密集等离子体膨胀的二维数值研究。膨胀过程中产生的静电离子声冲击使稀化等离子体的电子加速,从而产生了过热电子,从而降低了电子的热各向异性。因此,与已公布的有关等离子膨胀到真空中的理论结果相反,不会触发Weibel不稳定性,也不会观察到自生磁场。激波前沿形成了丝状结构,这被解释为是静电离子-离子不稳定性的结果,与公开的分析模型和实验结果一致。

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  • 来源
    《Physical review letters》 |2011年第2期|p.025003.1-025003.4|共4页
  • 作者单位

    Centre for Plasma Physics, The Queens University of Belfast, Belfast BT7 INN, United Kingdom;

    Department of Science and Technology (ITN), Linkoping University, 60174, Norrkoping, Sweden;

    Centre for Plasma Physics, The Queens University of Belfast, Belfast BT7 INN, United Kingdom;

    Centre for Plasma Physics, The Queens University of Belfast, Belfast BT7 INN, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solitons; BGK modes; shock waves and discontinuities; particle-in-cell method;

    机译:孤子BGK模式;冲击波和不连续性;细胞颗粒法;

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