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《中国物理C》(英文)编辑部
2024年10月30日

Design of a 325 MHz half wave resonator prototype at IHEP

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Xin-Yin Zhang, Wei-Min Pan, Guang-Wei Wang, Bo Xu, Guang-Yuan Zhao, Fei-Si He, Zhong-Quan Li, Qiang Ma, Jin Dai, Xu Chen, Zheng-Hui Mi, Peng Sha, Hai-Ying Lin, Qun-Yao Wang, Ya-Ping Liu, Zhou Xue, Xuan-Fang Huang, Mu-Yuan Wang and Yi Sun. Design of a 325 MHz half wave resonator prototype at IHEP[J]. Chinese Physics C, 2016, 40(8): 087003. doi: 10.1088/1674-1137/40/8/087003
Xin-Yin Zhang, Wei-Min Pan, Guang-Wei Wang, Bo Xu, Guang-Yuan Zhao, Fei-Si He, Zhong-Quan Li, Qiang Ma, Jin Dai, Xu Chen, Zheng-Hui Mi, Peng Sha, Hai-Ying Lin, Qun-Yao Wang, Ya-Ping Liu, Zhou Xue, Xuan-Fang Huang, Mu-Yuan Wang and Yi Sun. Design of a 325 MHz half wave resonator prototype at IHEP[J]. Chinese Physics C, 2016, 40(8): 087003.  doi: 10.1088/1674-1137/40/8/087003 shu
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Design of a 325 MHz half wave resonator prototype at IHEP

    Corresponding author: Xin-Yin Zhang,
    Corresponding author: Zhou Xue,
  • 1.  University of the Chinese Academy of Sciences, Beijing 100049, China
  • 2.  Institute of High Energy Physics, CAS, Beijing 100049, China
  • 3. University of the Chinese Academy of Sciences, Beijing 100049, China
  • 4. Institute of High Energy Physics, CAS, Beijing 100049, China

Abstract: A 325 MHz β=0.14 superconducting half-wave resonator prototype has been developed at the Institute of High Energy Physics, Beijing, which can be applied in the low energy section of continuous wave high current proton linear accelerators. The electromagnetic design, multipacting simulation, mechanical optimization and fabrication are introduced in detail. Test results at room temperature and 4.2 K, and a comparison between measured and simulated results, are analyzed in this paper.

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