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On the role of fluctuations, cathode placement, and collisions on the transport of electrons in the near-field of Hall thrusters

机译:关于霍尔推力器近场中电子在输运过程中起伏,阴极位置和碰撞的作用

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摘要

The performance of Hall thrusters can be highly sensitive to the position and operational parameters of the external cathode, hinting that the electron transport in the near-field is strongly dependent on the emitted electrons' initial properties. In addition, the plasma plumes of Hall discharges often exhibit fluctuations which are expected to alter electron trajectories. By implementing recent near-field plasma potential measurements made on a low-power Hall thruster in 3D electron-trajectory simulations, it is shown that electron transport from the external cathode to the thruster channel is strongly sensitive to cathode parameters including position, orientation, and electron emission divergence. Periodic, low-frequency (i.e., 25 kHz) plasma potential fluctuations reduce electron transport to the channel of the thruster by more than 65% compared to the transport achieved with static 3D fields and substantially homogenize the electron density distribution. Additional gas-phase collisions are found to have only marginal effects, even when prescribed to occur at exaggerated rates (reaching 10 MHz). The three-dimensionality of the E and B fields, together with electron-wall collisions, appear to be important drivers of cross-field transport in this region of the discharge, yielding sufficient levels of electron transport to the channel without invoking plasma turbulence.
机译:霍尔推力器的性能可能对外部阴极的位置和运行参数高度敏感,这暗示着近场中的电子传输在很大程度上取决于发射电子的初始特性。另外,霍尔放电的等离子羽流经常表现出波动,预期会改变电子轨迹。通过在3D电子轨迹模拟中对低功率霍尔推力器进行最近的近场等离子体电势测量,结果表明,电子从外部阴极到推力器通道的传输对阴极参数非常敏感,包括位置,方向和电子发射发散。与通过静态3D场实现的传输相比,周期性的低频(即25 kHz)等离子体电势波动将电子传输到推进器的通道减少了65%以上,并使电子密度分布基本均匀。发现其他气相碰撞仅具有边际效应,即使规定以夸大的速率(达到10 MHz)发生。 E和B场的三维性以及电子壁碰撞似乎是放电该区域中交叉场传输的重要驱动力,在不引起等离子体湍流的情况下,产生了足够水平的电子传输至通道。

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