Analysis of higher order modes in large superconducting radio frequency accelerating structures

T. Galek, J. Heller, T. Flisgen, K. Brackebusch, U. van Rienen
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Abstract

Superconducting radio frequency cavities used for accelerating charged particle beams are commonly used in accelerator facilities around the world. The design and optimization of modern superconducting RF cavities requires intensive numerical simulations. Vast number of operational parameters must be calculated to ensure appropriate functioning of the accelerating structures. In this study, we primarily focus on estimation and behavior of higher order modes in superconducting RF cavities connected in chains. To calculate large RF models the state-space concatenation scheme, an efficient hybrid method, is employed.
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大型超导射频加速结构中高阶模的分析
用于加速带电粒子束的超导射频腔在世界各地的加速器设施中普遍使用。现代超导射频腔的设计和优化需要大量的数值模拟。必须计算大量的操作参数,以确保加速结构的适当功能。在这项研究中,我们主要关注链连接的超导射频腔中高阶模式的估计和行为。为了计算大型射频模型,采用了一种高效的混合方法——状态空间串联方案。
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