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Investigation of the ion transit time instability in a Hall thruster combining time-resolved LIF spectroscopy and analytical calculations

机译:结合时间分辨LIF光谱和解析计算研究霍尔推进器中离子迁移时间的不稳定性

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The performance of Hall thrusters is greatly influenced by the discharge current oscillations. In order to characterize the oscillations of the plasma parameters, we have measured the time-varying Xe~+ ion velocity distribution in the discharge channel and in the near-field plume of a low-power permanent magnets Hall thruster. The distribution functions are obtained by means of a time-resolved laser-induced fluorescence technique based on a photon counting method, while time coherence is ensured by applying a sinusoidal potential modulation on a floating electrode located in the plasma to achieve resonance with the breathing mode. The measurements are therefore local, non invasive and the temporal resolution is 100 ns. The discharge oscillations are consistent with those of a standard operating point. The axial ion dynamics in the [100 kHz;1 MHz] band, i.e. the so-called ion transit time instability, is examined. The high-frequency spectral properties of the ion mean velocity are compared with a perturbed fluid model of the plasma flow on the source axis. The wavelength of the high-frequency axial mode is similar to the electric field extent outside the cavity. Surprisingly the mode appears only in the area of negative magnetic field gradient.
机译:霍尔推力器的性能在很大程度上受到放电电流振荡的影响。为了表征等离子体参数的振荡,我们测量了低功率永磁霍尔推力器的放电通道和近场羽流中随时间变化的Xe〜+离子速度分布。通过基于光子计数方法的时间分辨激光诱导荧光技术获得分布函数,同时通过对位于等离子体中的浮动电极施加正弦电位调制来确保时间相干性,以实现与呼吸模式的共振。因此,测量是局部的,非侵入性的,并且时间分辨率为100 ns。放电振荡与标准工作点一致。检查了[100 kHz; 1 MHz]频带中的轴向离子动力学,即所谓的离子传输时间不稳定性。将离子平均速度的高频频谱特性与源轴上的等离子体流的扰动流体模型进行比较。高频轴向模式的波长类似于空腔外部的电场范围。令人惊讶的是,该模式仅出现在负磁场梯度区域中。

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