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首页> 外文期刊>Physics of plasmas >Magnetic field structure influence on primary electron cusp losses for micro-scale discharges
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Magnetic field structure influence on primary electron cusp losses for micro-scale discharges

机译:磁场结构对微小放电的一次电子尖峰损耗的影响

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An experimental effort was used to examine the primary electron loss behavior for micro-scale (≤ 3 cm diameter) discharges. The experiment uses an electron flood gun source and an axially aligned arrangement of ring-cusps to guide the electrons to a downstream point cusp. Measurements of the electron current collected at the point cusp show an unexpectedly complex loss pattern with azimuthally periodic structures. Additionally, in contrast to conventional theory for cusp losses, the overall radii of the measured collection areas are over an order of magnitude larger than the electron gyroradius. Comparing these results to Monte Carlo particle tracking simulations and a simplified analytical analysis shows that azimuthal asymmetries of the magnetic field far upstream of the collection surface can substantially affect the electron loss structure and overall loss area.
机译:实验工作用于检查微尺度(≤3 cm直径)放电的主要电子损失行为。该实验使用电子溢流枪源和环形尖端的轴向排列布置,将电子引导至下游点尖端。在尖端处收集的电子电流的测量结果显示出具有方位角周期性结构的意外复杂的损耗模式。此外,与传统的尖峰损耗理论相反,被测收集区域的总半径比电子陀螺半径大一个数量级。将这些结果与蒙特卡洛粒子跟踪仿真和简化的分析分析进行比较,可以看出,远离收集表面上游的磁场的方位角不对称会严重影响电子损耗结构和总损耗面积。

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