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Design Study on Accelerating Field Distribution and Stability Tuning of Drift Tube Linac

文献类型:期刊论文

作者Gong KY(巩克云); Fan MX(樊梦旭); Peng J(彭军); Li AH(李阿红); Liu HC(刘华昌); Qu, Pei-Hua; Gong, Ke-Yun; Fan, Meng-Xu; Peng, Jun; Li, A-Hong
刊名Atomic Energy Science and Technology原子能科学技术
出版日期2017
卷号51期号:10页码:1874-1879
ISSN号1000-6931
DOI10.7538/yzk.2017.youxian.0073
其他题名漂移管直线加速器加速电场分布及稳定性调谐研究
文献子类Article
英文摘要The fabrication and assembly errors of the drift tube linac (DTL) may cause a large discrepancy on the distribution of the accelerating field. The tuner was typically used to compensate the deviation. Meanwhile, a series of post-couplers were introduced to increase the stability of the accelerating field by properly adjusting the gap between post-coupler and drift tube. In this paper, based on RF resonant cavity theory and bead pull technology, a high-precision measurement system was established. Combining the simulation with experiment, the low power resonant frequency tuning of CSNS DTL tank was successfully performed. The relative deviation between real field distribution and design result is less than 2%, and the resonant frequency and stability reach the tuning objective. © 2017, Editorial Board of Atomic Energy Science and Technology. All right reserved.
语种中文
CSCD记录号CSCD:6089477
源URL[http://ir.ihep.ac.cn/handle/311005/284257]  
专题高能物理研究所_东莞分部
作者单位1.Dongguan Neutron Science Center, Dongguan; 523803, China
2.Institute of High Energy Physics, Chinese Academy of Sciences, Beijing; 100049, China;
推荐引用方式
GB/T 7714
Gong KY,Fan MX,Peng J,et al. Design Study on Accelerating Field Distribution and Stability Tuning of Drift Tube Linac[J]. Atomic Energy Science and Technology原子能科学技术,2017,51(10):1874-1879.
APA 巩克云.,樊梦旭.,彭军.,李阿红.,刘华昌.,...&瞿培华.(2017).Design Study on Accelerating Field Distribution and Stability Tuning of Drift Tube Linac.Atomic Energy Science and Technology原子能科学技术,51(10),1874-1879.
MLA 巩克云,et al."Design Study on Accelerating Field Distribution and Stability Tuning of Drift Tube Linac".Atomic Energy Science and Technology原子能科学技术 51.10(2017):1874-1879.

入库方式: OAI收割

来源:高能物理研究所

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