Development of a 325 MHzβ=-0.12 superconducting single spoke cavity for China-ADS

Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 IvIHz, are adopted in Injector I for China-ADS linac. This type of spoke cavity is believed to be one of tile key challenges for its very low geometric Beta. So far, in collaboration...

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Published inChinese physics C Vol. 38; no. 7; pp. 130 - 134
Main Author 李菡 戴建枰 沙鹏 王群要 黄泓 李黎海 张娟 马强 林海英 孙毅 潘卫民
Format Journal Article
LanguageEnglish
Published 01.07.2014
Subjects
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ISSN1674-1137
2058-6132
0254-3052
DOI10.1088/1674-1137/38/7/077008

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Abstract Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 IvIHz, are adopted in Injector I for China-ADS linac. This type of spoke cavity is believed to be one of tile key challenges for its very low geometric Beta. So far, in collaboration with Peking University and Harbin Institute of Technology, IHEP has successfully designed, fabricated, and tested the Spoke012 prototype cavity. This paper presents the details of the design, fabrication and test results for Spoke012 prototype cavity.
AbstractList Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 IvIHz, are adopted in Injector I for China-ADS linac. This type of spoke cavity is believed to be one of tile key challenges for its very low geometric Beta. So far, in collaboration with Peking University and Harbin Institute of Technology, IHEP has successfully designed, fabricated, and tested the Spoke012 prototype cavity. This paper presents the details of the design, fabrication and test results for Spoke012 prototype cavity.
Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 MHz, are adopted in Injector I for China-ADS linac. This type of spoke cavity is believed to be one of the key challenges for its very low geometric Beta. So far, in collaboration with Peking University and Harbin Institute of Technology, IHEP has successfully designed, fabricated, and tested the Spoke012 prototype cavity. This paper presents the details of the design, fabrication and test results for Spoke012 prototype cavity.
Author 李菡 戴建枰 沙鹏 王群要 黄泓 李黎海 张娟 马强 林海英 孙毅 潘卫民
AuthorAffiliation Graduate University of Chinese Academy of Sciences,China Beijing 100049 Institute of High Energy Physics, Chinese Academy of Sciences,China Beijing 100049
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CitedBy_id crossref_primary_10_1016_j_nima_2021_165484
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Notes low beta spoke cavity, EM design, mechanical design, fabrication, cold test
Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 IvIHz, are adopted in Injector I for China-ADS linac. This type of spoke cavity is believed to be one of tile key challenges for its very low geometric Beta. So far, in collaboration with Peking University and Harbin Institute of Technology, IHEP has successfully designed, fabricated, and tested the Spoke012 prototype cavity. This paper presents the details of the design, fabrication and test results for Spoke012 prototype cavity.
11-5641/O4
LI Han,DAI Jian-Ping,SHA Peng,WANG Qun-Yao,HUANG Hong,LI Li-Hai,ZHANG Juan,MA Qiang,LIN Hai-Ying,SUN Yi,PAN Wei-Min(1.Graduate University of Chinese Academy of Sciences, Beijing 100049, China;2.Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China)
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References Karl McFaul (3) 2012
Dai Jian-Ping (9) 2013
1
CST MICROWAVE STUDIO (6)
Wang Qun-Yao (8) 2013
Gonin I (2)
7
Lanfranco G (4)
Li Z H (5)
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Snippet Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 IvIHz, are adopted in Injector I for...
Twelve very low Beta superconducting single spoke cavities, whose Beta is only 0.12 (Spoke012) when operating at 325 MHz, are adopted in Injector I for...
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SubjectTerms Cooperation
Holes
Injectors
Peking
Prototypes
Spokes
Superconductivity
中国
北京大学
哈尔滨工业大学
型腔
测试版
直线加速器
设计
超导
Title Development of a 325 MHzβ=-0.12 superconducting single spoke cavity for China-ADS
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