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首页> 外文期刊>Journal of Applied Physics >Restructuring of rotating spokes in response to changes in the radial electric field and the neutral pressure of a cylindrical magnetron plasma
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Restructuring of rotating spokes in response to changes in the radial electric field and the neutral pressure of a cylindrical magnetron plasma

机译:响应径向电场的变化和圆柱形磁控血管等离子体的中性压力的旋转辐条的重组

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摘要

Nonlinear plasma structures in the partially magnetized E × B plasma of a cylindrical magnetron are investigated using 2D3V particle-in-cell Monte Carlo collision simulations. In the early phase of the discharge, plasma gradients and radial electric fields excite a lower hybrid type instability that forms long wavelength rotating density spokes. As the discharge grows in density by ionization and the cathode gets shielded by the formation of an ion sheath, radial electric fields diminish in the quasineutral region of the discharge. This induces a transition of the spokes into short-scale spoke-on-spoke modes. The short wavelength structures can be reversed back into a long spiral spoke by lowering the neutral pressure, which revives the radial electric fields via a turbulent plasma expansion. Plasma phenomena connected to the rotating spoke include the anomalous radial transport and loss of electrons through the spoke, azimuthal dragging of ions by the spoke's field, plasma temperature modulations by the spoke structure, and formation of electron vortices around equipotential islands, in some cases with opposing rotations to the underlying E × B drift. Electron scattering from non-ionizing collisions with neutrals also has a minor influence on the instability.
机译:使用2D3V粒子内蒙特卡罗碰撞模拟研究了圆柱形磁控管的部分磁化E×B等离子体中的非线性等离子体结构。在放电的早期阶段,等离子体梯度和径向电场激发较低的混合型不稳定性,其形成长波长旋转密度辐条。由于放电通过电离生长密度,并且通过形成离子护套的阴极屏蔽,在放电的拟划线区域中径向电场减小。这诱导辐条过渡到短尺寸辐条上的辐条模式。通过降低中性的压力,短波长结构可以通过降低中性的压力来反向重新螺旋辐条,这通过湍流等离子体膨胀复活径向电场。连接到旋转辐条的等离子体现象包括通过辐条的异常径向传输和电子丢失,通过辐条的场,通过辐条结构的等离子体温度调制以及等电位岛周围的电子涡旋的形成,以及围绕等化岛的形成的等离子体温度调制。与底层E×B漂移相反的旋转。来自与中性的非电离碰撞的电子散射也对不稳定性产生了微小的影响。

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  • 来源
    《Journal of Applied Physics》 |2021年第22期|223302.1-223302.24|共24页
  • 作者单位

    Department of Physics and Engineering Physics University of Saskatchewan Saskatoon S7N5E2 Canada;

    Department of Physics and Engineering Physics University of Saskatchewan Saskatoon S7N5E2 Canada;

    Princeton Plasma Physics Laboratory Princeton New Jersey 08543 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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