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Growth of Low-Frequency Electrostatic and Electromagnetic Instabilities in a Hall Thruster

机译:霍尔推力器中低频静电和电磁不稳定性的增长

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摘要

Resistive instabilities corresponding to the electrostatic (ES) and electromagnetic (EM) waves are investigated in a Hall thruster under more realistic situation, where the ions and electrons carry finite temperatures and collisions are also taken into account. Relevant dispersion equations are obtained and solved numerically in order to investigate the growth rates of these waves. Based on analytically obtained expressions for the growth rate and real frequency of the ES wave, limiting cases are discussed for the propagation of this wave and the importance of finite temperature of the ions. An application of magnetic field is found to support the instabilities together with the enhanced growth rates of the ES and EM waves. In both the cases, smaller wavelength oscillations are found to be most unstable. The ion (electron) thermal motions are found to have negative (positive) effect on the growths of both the instabilities, though the EM instability shows stronger dependence. The magnitude of the growth rate of the ES wave supersedes that of the EM wave, but its growth shows weak dependence on the ion temperature, collision frequency, and drift velocity of the electrons.
机译:在更实际的情况下,在霍尔推力器中研究了与静电(ES)和电磁(EM)波相对应的电阻不稳定性,其中离子和电子携带有限的温度,并且还考虑了碰撞。为了研究这些波的增长率,获得了相关的色散方程并进行了数值求解。基于对ES波的增长率和实际频率的解析获得的表达式,讨论了此波的传播和离子有限温度的重要性的有限情况。发现施加磁场可以支持不稳定性以及提高的ES和EM波增长率。在这两种情况下,发现较小的波长振荡都是最不稳定的。发现离子(电子)热运动对两种不稳定性的增长都具有负面(正)影响,尽管EM不稳定性表现出较强的依赖性。 ES波的增长速度的幅度取代了EM波的增长速度,但其增长对离子温度,碰撞频率和电子的漂移速度的依赖性较弱。

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