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An Analytical Model of One-Sided Multipactor on a Dielectric of a Metal Surface for Spacecraft Application

机译:用于航天器的金属表面电介质上的单面多脚架分析模型

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The aim of this article is to establish a general and practical analytical model of the one-sided multipactor on a dielectric of a metal surface and analyze the resonant multipactor effect for the recent growing interest in spacecrafts. A theoretical multipactor model involving a normal static electric field, a radio frequency (RF) electric field with both tangential and normal components, and the influence of the desorption gas is proposed. The kinetic properties and the resonant condition of the electron are studied by analytical calculations. The results show that the transit time of the electron decreases with the increase in the normal static electric field and the pressure of the desorption gas. The emission phase of the electron is the paramount factor that has a direct influence on the occurrence of the resonant multipactor. If the resonant multipactor effect could appear, the emission phase of the electron should be larger than a critical phase, and the ratio between the amplitude of the normal component of the RF electric field and the normal static electric field should be larger than a specific value as well.
机译:本文的目的是建立一种通用且实用的金属表面电介质上的单侧多脚踏子分析模型,并针对近来对航天器的兴趣分析共振多脚踏子效应。提出了一种理论上的多峰模型,该模型包括法向静态电场,具有切向分量和法向分量的射频(RF)电场以及解吸气体的影响。通过分析计算研究了电子的动力学性质和共振条件。结果表明,电子的传播时间随着正常静电场和解吸气体压力的增加而减小。电子的发射阶段是最重要的因素,它直接影响谐振倍增管的发生。如果可能出现共振多峰效应,则电子的发射相位应大于临界相位,并且RF电场的正态分量的振幅与法向静态电场的比应大于特定值也一样

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