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同轴线法在小孔径真空元件阻抗测量中的应用北大核心CSCD
引用本文:孙元胜,田赛克,王娜,岳森,张源.同轴线法在小孔径真空元件阻抗测量中的应用北大核心CSCD[J].强激光与粒子束,2022,34(2):024002-1-024002-5.
作者姓名:孙元胜  田赛克  王娜  岳森  张源
作者单位:1.中国科学院 高能物理研究所,北京 100049
基金项目:国家自然科学基金面上项目(11775239)。
摘    要:粒子加速器中真空元件的阻抗是引起束流不稳定的重要原因。基于储存环的新一代同步辐射光源的设计发射度更小,相应地要求更小的真空盒孔径,进而带来阻抗的显著增加,这就要求在设计阶段对真空元件的阻抗进行准确的评估和优化。阻抗测量是验证阻抗模型准确性的重要手段,而同轴线法是常用的实验室测量方法。对小孔径真空元件同轴线法纵向阻抗测量进行了研究,针对窄带阻抗元件,使用pillbox腔开展了相关的阻抗测量,研究了不同的内导体尺寸对于测量结果的影响,同时基于尾场模拟、散射参数模拟以及本征模模拟对测量结果进行了验证,模拟和测量结果符合很好,并证明原有的内导体导致谐振峰频移的理论分析应用于小孔径元件时存在偏差。此外针对非窄带阻抗元件,对条带冲击磁铁结构进行了同轴线法阻抗测量,研究了内导体对结果的影响,验证了同轴线法测量的有效性。

关 键 词:耦合阻抗  粒子加速器  小孔径  阻抗测量  同轴线法  频率偏移
收稿时间:2021-10-18

Application of coaxial wire method in impedance measurement of small aperture vacuum component
Sun Yuansheng,Tian Saike,Wang Na,Yue Sen,Zhang Yuan.Application of coaxial wire method in impedance measurement of small aperture vacuum component[J].High Power Laser and Particle Beams,2022,34(2):024002-1-024002-5.
Authors:Sun Yuansheng  Tian Saike  Wang Na  Yue Sen  Zhang Yuan
Institution:1.Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China2.University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:In particle accelerators, the impedance of vacuum components is an important cause of beam instabilities. Smaller emittance is required in the new generation storage-ring-based light source, where smaller vacuum chamber is needed and the impedances are increased correspondingly.Therefore, the impedance of the vacuum components should be evaluated accurately and well optimized during the design stage. Impedance measurement is an important way to check the impedance model. The coaxial wire method is commonly used for laboratory bending measurements. For small-aperture vacuum components, the measurement error caused by the inner conductor is studied in this paper. For narrow-band impedances, pillbox cavity is used to study the influence of different inner conductor radius on the measurement results. As benchmarks, different numerical simulations, such as wake field, scattering parameters and eigenmodes, are carried out. The results show that the simulations are in good agreement with the measurement. It is also found that there exist deviations between the measurement and the existing theories on the dependence of the resonant frequency shift on the inner conductor radius. For non-narrowband impedances, we measured the impedance of a strip line kicker and studied the influence of the inner conductor, which verified the validity of the coaxial wire method.
Keywords:coupling impedance  particle accelerator  small aperture  impedance measurement  coaxial wire method  frequency shift
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