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High-frequency instability of the sheath-plasma resonance

机译:鞘膜共振的高频不稳定性

摘要

Coherent high frequency oscillations near the electron plasma frequency (omega approx. less than omega sub p) are generated by electrodes with positive dc bias immersed in a uniform Maxwellian afterglow plasma. The instability occurs at the sheath-plasma resonance and is driven by a negative RF sheath resistance associated with the electron inertia in the diode-like electron-rich sheath. With increasing dc bias, i.e., electron transit time, the instability exhibits a hard threshold, downward frequency pulling, line broadening and copious harmonics. The fundamental instability is a bounded oscillation due to wave evanescence, but the harmonics are radiated as electromagnetic waves from the electrodes acting like antennas. Wavelength and polarization measurements confirm the emission process. Electromagnetic waves are excited by electrodes of various geometries (planes, cylinders, spheres) which excludes other radiation mechanisms such as orbitrons or beam-plasma instabilities. The line broadening mechanism was identified as a frequency modulation via the electron transit time by dynamic ions. Ion oscillations at the sheath edge give rise to burst-like RF emissions. These laboratory observations of a new instability are important for antennas in space plasmas, generation of coherent beams with diodes, and plasma diagnostics.
机译:接近电子等离子体频率(ω约小于ωsub p)的相干高频振荡是由浸入均匀麦克斯韦余辉等离子体中的正dc偏置电极产生的。该不稳定性发生在鞘-等离子体共振处,并且由与二极管状富电子鞘中的电子惯性相关的负RF鞘电阻驱动。随着直流偏置(即电子渡越时间)的增加,不稳定性表现出硬阈值,向下频率牵引,线展宽和大量谐波。基本的不稳定性是由于波消逝而引起的有界振荡,但是谐波以电磁波的形式从像天线一样作用的电极辐射出来。波长和偏振测量可确认发射过程。电磁波由各种几何形状(平面,圆柱体,球形)的电极激发,这排除了其他辐射机制,例如轨道电子或束流等离子体的不稳定性。线展宽机制被确定为通过动态离子通过电子渡越时间的频率调制。护套边缘的离子振荡会引起脉冲状的RF发射。这些实验室观察到的新的不稳定性对于空间等离子体中的天线,用二极管产生相干波束以及等离子体诊断非常重要。

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    Stenzel R. L.;

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  • 年度 1989
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