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Determination of the electron anomalous mobility through measurements of turbulent magnetic field in Hall thrusters

机译:通过测量霍尔推力器中的湍流磁场确定电子异常迁移率

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Measurements of the turbulent magnetic field in a Hall thruster have been carried out between 1 kHz and 30 MHz with the aim of understanding electron transport through the magnetic field. Small detecting coils at the exit of the accelerating channel and outside of the ionic plume were used to characterize various instabilities. The characteristic frequencies of the observed power spectral densities correspond to known classes of instabilities: low frequency (20-40 kHz), transit time (100-500 kHz), and high frequency (5-10 MHz). A model of the localized electron currents through a magnetic barrier is proposed for the high-frequency instability, and is found to be in good quantitative agreement with the observations. Based on the measured high-frequency turbulent magnetic field, the turbulent electric field is estimated to be about 1 V/cm outside of the plume and ranges from 10 to 10(2) V/cm at the channel midradius at the exit of the thruster. The "anomalous" electron collision frequency, related to the high-frequency instability, is estimated to be < 10(6) s(-1), which largely exceeds the classical frequency in the core of the exit plasma but is lower than the frequency that is generally used in hybrid codes. (c) 2007 American Institute of Physics.
机译:为了了解电子在磁场中的传输,已经在1 kHz至30 MHz之间对霍尔推力器中的湍流磁场进行了测量。加速通道出口处和离子羽外部的小型检测线圈用于表征各种不稳定性。观测到的功率谱密度的特征频率对应于已知的不稳定性类别:低频(20-40 kHz),渡越时间(100-500 kHz)和高频(5-10 MHz)。针对高频不稳定性,提出了一种通过磁障的局部电子流模型,该模型与观测值具有良好的定量一致性。根据测得的高频湍流磁场,估计在羽流外部的湍流电场约为1 V / cm,在推进器出口的通道中半径处,湍流电场的范围为10到10(2)V / cm。 。与高频不稳定性相关的“异常”电子碰撞频率估计为<10(6)s(-1),大大超过了出口等离子体核心的经典频率,但低于该频率。通常在混合代码中使用。 (c)2007年美国物理研究所。

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