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FEM simulations of metamaterial impact on the longitudinal beam-coupling impedance of a rectangular beam pipe

机译:超材料对矩形束管纵梁耦合阻抗影响的有限元模拟

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When a particle beam travels through an accelerator structure like the LHC, energy is lost to the structure itself. This phenomenon is described through the beam-coupling impedance and is ideally reduced to improve beam quality and energy efficiency. In this paper, the use of metamaterials with negative permeability is investigated as a method of reducing impedance. A fast and cost-effective way of obtaining non-isotropic negative permeability is given by the construction of an array of metallic implants known as `split-ring resonators' (SRRs). In this study, rectangular waveguides loaded with SRRs are studied and the longitudinal beam-coupling impedance is observed. This set-up is studied using wake-field simulations and the results are presented and discussed. This research calls for more study considering metamaterial insertions in circular waveguides and deeper feasibility studies.
机译:当粒子束穿过类似LHC的加速器结构时,能量会损失到结构本身。这种现象通过光束耦合阻抗来描述,理想情况下可以减少以改善光束质量和能效。在本文中,研究了使用具有负磁导率的超材料作为降低阻抗的方法。获得非各向同性的负磁导率的一种快速且具有成本效益的方法是通过构造称为“裂环谐振器”(SRR)的金属植入物阵列来实现。在这项研究中,研究了装有SRR的矩形波导,并观察了纵向光束耦合阻抗。使用尾场仿真研究了这种设置,并介绍和讨论了结果。这项研究要求进行更多的研究,以考虑将超材料插入圆形波导中,并进行更深入的可行性研究。

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