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中国散裂中子源铁氧体加载腔的性能研究
引用本文:施华,孙虹,黄蔚玲,张春林,李晓,唐靖宇,赵发成.中国散裂中子源铁氧体加载腔的性能研究[J].强激光与粒子束,2013,25(1):93-98.
作者姓名:施华  孙虹  黄蔚玲  张春林  李晓  唐靖宇  赵发成
作者单位:1.中国科学院 高能物理研究所, 北京 1 00049
基金项目:国家重大科学工程-中国散裂中子源资助课题
摘    要:利用同轴线理论分析了扫频工作的中国散裂中子源(CSNS)铁氧体加载同轴谐振腔的主要性能参数。给出了铁氧体加载腔在三维电磁场仿真计算中的建模过程,在场分析的基础上提出了陶瓷介质等效谐振电容的方法。将模拟计算得到的腔体的谐振特性与同轴线理论计算和实际腔体测量结果相比较,三者吻合得非常好。通过对腔体样机母排引入的寄生模的实验和模拟研究,提出了解决寄生模问题的方法;通过对腔体内铁氧体环的填充系数的研究,给出了短尺寸腔的扫频工作方案。

关 键 词:铁氧体环    寄生模    同轴谐振腔    快循环同步加速器    中国散裂中子源
收稿时间:2012/2/28

Properties of ferrite-loaded coaxial resonant cavities at China Spallation Neutron Source
Shi Hua,Sun Hong,Huang Weiling,Zhang Chunlin,Li Xiao,Tang Jingyu,Zhao Facheng.Properties of ferrite-loaded coaxial resonant cavities at China Spallation Neutron Source[J].High Power Laser and Particle Beams,2013,25(1):93-98.
Authors:Shi Hua  Sun Hong  Huang Weiling  Zhang Chunlin  Li Xiao  Tang Jingyu  Zhao Facheng
Institution:1.Institute of High Energy Physics,Chinese Academy of Sciences,Beijing 100049,China
Abstract:The theoretical analysis to the RF cavity at China Spallation Neutron Source (CSNS), a typical ferrite-loaded coaxial resonant cavity operating in swept condition by using the coaxial transmission line theory is presented. The modeling method of the cavity in the CST three-dimensional simulation software is also described in details, especially about the use of ceramic insulators representing resonant capacitors. The characteristics of the cavity obtained by the coaxial transmission line method, the CST simulations and the measurements have been compared, and are consistent. The parasitic mode induced by the Busbar has been studied by the CST simulations and the measurements, and different improvement methods over the prototype cavity are given. The impact of the filling factor of ferrite rings on the frequency tuning in the cavity has also been analyzed, and it turns out that a larger tuning range for the bias current is needed for a shorter cavity.
Keywords:ferrite ring  parasitic mode  coaxial resonant cavity  rapid cycling synchrotron  China Spallation Neutron Source
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