Simulation of Multipacting with Space Charge Effect

G. Romanov
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引用次数: 5

Abstract

The electron multiplication on surfaces exposed to an oscillating electromagnetic field causes the phenomenon of multipacting, which can degrade significantly the performance of vacuum RF devices, especially accelerating cavities. It is a serious obstacle to be avoided for normal operation of particle accelerator and their RF components. Many types of room temperature and superconducting accelerating cavities are designed and produced at Fermilab for different projects. The extensive simulations of multipacting in the cavities with updated material properties and comparison of the simulation results with experimental data are routinely performed during electromagnetic design of the cavities. The new advanced computing capabilities made it possible to take the space charge effect into account in the multipacting simulations. The basic new features of multipacting process that appear due to the space charge effect are shown for the classic case of the parallel plates and discussed. As the first practical application of the multipacting simulations with space charge effect the study of multipacting in the low-beta and high-beta 650 MHz elliptical superconducting cavities is also presented.
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具有空间电荷效应的多重冲击仿真
暴露在振荡电磁场下的表面上的电子倍增会引起多重效应,这将显著降低真空射频器件的性能,特别是加速腔。这是粒子加速器及其射频元件正常工作必须避免的严重障碍。费米实验室为不同的项目设计和制造了多种类型的室温和超导加速腔。在腔体电磁设计过程中,对材料性能进行了大量的模拟,并将模拟结果与实验数据进行了比较。新的先进计算能力使得在多碰撞模拟中考虑空间电荷效应成为可能。以平行板的经典情况为例,分析了空间电荷效应导致的复合过程的基本新特征。作为空间电荷效应多重冲击模拟的首次实际应用,本文还对低β和高β 650 MHz椭圆超导腔中的多重冲击进行了研究。
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