介电介质上单侧多因子的动力学

G. Romanov
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引用次数: 1

摘要

介电射频窗的击穿是粒子加速器和大功率射频源的重要问题。一般认为射频窗口失效的原因之一是介电表面的多因子。该多因素可能负责电介质的过度加热和由于二次发射而积聚在陶瓷中的电荷的放电。为了更好地理解发射引起的单侧多因子发展和电介质上浮动电位的动态变化,本研究进行了考虑空间电荷效应的综合自一致PIC模拟。发现并报道了饱和时多因子参数与介质二次发射特性及外加射频场参数之间的重要相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of One-Side Multipactor on Dielectric
Breakdown of dielectric RF windows is an important issue for particle accelerators and high-power RF sources. One of the generally considered reasons for the RF windows failure is the multipactor on dielectric surface. The multipactor may be responsible for excessive heating of dielectric and discharge of charges that accumulated in ceramic due to secondary emission. In this study the comprehensive self-consistent PIC simulations with space charge effect were performed in order to better understand the dynamic of one-side multipactor development and floating potential on dielectric induced by the emission. The important correlations between the multipactor parameters at saturation and the secondary emission properties of dielectric and the applied RF field parameters were found and are reported in the paper.
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