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文献详情 >The IH-RFQ for HIRFL-CSR injector 收藏
The IH-RFQ for HIRFL-CSR injector

The IH-RFQ for HIRFL-CSR injector

作     者:Zhong-Shan Li Xue-Jun Yin Heng Du Jia-Wen Xia You-Jin Yuan Jian-Cheng Yang Peng Li Jie Li Xiao-Ni Li Guo-Dong Shen Wen-Wen Ge Wen-Heng Zheng Xiao-Hu Zhang Ke-Dong Wang Yun-Zhe Gao Qi-Yu Kong 

作者机构:Institute of Modern Physics Chinese Academy of SciencesLanzhou 730000 China University of Chinese Academy of Sciences Beijing 100049China 

基  金:supported by the National Natural Science Foundation of China(Nos.11375243,11405237,and 11475235) the Guangdong Innovative and Entrepreneurial Research Team Program(No.2016ZT06G373) 

出 版 物:《Nuclear Science and Techniques》 (核技术(英文))

年 卷 期:2018年第29卷第6期

页      码:119-127页

摘      要:A new linac injector CSR-LINAC for the Cooler Storage Ring of the Heavy Ion Research Facility in Lanzhou(HIRFL-CSR) is proposed to improve the performance of the HIRFL. As a key component of the CSRLINAC, the 108.48-MHz radio frequency quadrupole(RFQ) is under design at the Institute of Modern *** ions with mass-to-charge ratios of 3–7 will be accelerated from 4 to 300 keV/u by the RFQ. In the beam dynamics design, the New Four-Section Procedure is adopted to improve the transmission efficiency and obtain a compact structure. In this paper, a transmission efficiency of 98.0% in the 3.07-m-long cavity was obtained. The Interdigital H-type structure is employed because of its mechanical stability and high shunt impedance. The RF performance of the cavity is investigated by the electromagnetic simulation. The optimized results of the electric field to meet the beam dynamics requirements are presented in this paper.

主 题 词:HIRFL-CSR 注射 线性加速器 动力学设计 机械稳定性 关键部件 现代物理 重离子 

学科分类:08[工学] 082701[082701] 0827[工学-食品科学与工程类] 

核心收录:

D O I:10.1007/s41365-018-0416-y

馆 藏 号:203292942...

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