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Three-dimensional numerical investigation of electron transport with rotating spoke in a cylindrical anode layer Hall plasma accelerator

机译:圆柱形阳极层霍尔等离子体加速器中带有旋转辐条的电子传输的三维数值研究

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摘要

The effects of increased magnetic field and pressure on electron transport with a rotating spoke in a cylindrical anode layer Hall plasma accelerator are investigated by three-dimensional particle-in-cell numerical simulation. The azimuthal rotation of electron transport with the spoke has a frequency of 12.5 MHz. It propagates in the direction of the E × B drift at a speed of ~1.0 × 10 ~6 m/s (about 37% of the E × B drift speed). Local charge separation occurs because the azimuthal local electron density concentration is accompanied by an almost uniform azimuthal ion distribution. The non-axisymmetrical electron density concentration and axisymmetrical ion distribution introduce two azimuthal electric fields with opposite directions in the plasma discharge region. The axial electron shear flow is excited under the additional E _θ × B field. The anomalous electron transport with the rotating spoke may be attributed to the axial electron shear flow induced by the two azimuthal electric fields with opposite directions as a result of the azimuthal local electron density concentration.
机译:通过三维晶胞数值模拟研究了增加的磁场和压力对圆柱形阳极层霍尔等离子体加速器中旋转辐条的电子传输的影响。电子传输与辐条的方位角旋转的频率为12.5 MHz。它沿E×B漂移的方向传播,速度约为〜1.0×10〜6 m / s(约为E×B漂移速度的37%)。发生局部电荷分离是因为方位局部电子密度浓度伴随着几乎均匀的方位离子分布。非轴对称电子密度浓度和轴对称离子分布在等离子体放电区域中引入了两个方向相反的方位电场。轴向电子剪切流在附加的E_θ×B场下被激发。旋转辐条的异常电子传输可能归因于由于方位局部电子密度集中而由两个方向相反的方位电场感应的轴向电子剪切流。

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