Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Huachang Liu"'
Autor:
Mengxu Fan, Huachang Liu, Xiaolei Wu, Yao Yang, Shunming Liu, Ahong Li, Yun Wang, Bo Li, Peihua Qu, Qiang Chen, Sheng Wang
Publikováno v:
Physical Review Accelerators and Beams, Vol 26, Iss 9, p 090401 (2023)
The China Spallation Neutron Source upgrade project (CSNS-II) has completed the preliminary design report and is expected to start in the fall of 2023. It plans to add two types of superconducting cavities: the 324-MHz double spoke superconducting ca
Externí odkaz:
https://doaj.org/article/bee1a869ca90448e8f7785c62877ec8f
Autor:
Yun Wang, Huachang Liu, Tao Yang, Ahong Li, Peihua Qu, Bo Li, Mengxu Fan, Xiaolei Wu, Qiang Chen, Cong Zhang, Wenzhong Zhou, Jianping Dai, Sheng Wang
Publikováno v:
IEEE Transactions on Applied Superconductivity. 32:1-11
Autor:
Yun Wang, Huachang Liu, Tao Yang, Ahong Li, Cong Zhang, Xiaolei Wu, Mengxu Fan, Bo Li, Peihua Qu, Qiang Chen, Wenzhong Zhou, Yao Yang, Jianping Dai
Publikováno v:
The Review of scientific instruments. 93(11)
The China Spallation Neutron Source drift tube linac (DTL) is a high current intensity linear accelerator operated in pulsed mode. Beam loss is the most important cause of DTL performance degradation. Therefore, control of beam loss is very crucial t
Autor:
Xiaolei Wu, Pei Hua Qu, Jun Peng, Huachang Liu, Qiang Chen, Bo Li, Ahong Li, Yun Wang, MengXu Fan
Publikováno v:
Radiation Detection Technology and Methods. 5:315-323
A low β superconducting elliptical cavity was designed for the China Spallation Neutron Source phase II project (CSNS-II). The method to improve the mechanical stability of the low β superconducting elliptical cavity was introduced, and the corresp
Autor:
MengXu Fan, Yun Wang, Jianpin Dai, Qiang Chen, Ahong Li, Huachang Liu, Bo Li, Xiaolei Wu, Pei Hua Qu
Publikováno v:
Radiation Detection Technology and Methods. 4:407-414
Superconducting radio frequency (SRF) cavities are adopted to upgrade the CSNS Linac energy from 80 to 300 MeV in phase II. A 648 MHz single spoke resonator (SSR) prototype has a compact size and low cost, which is a good pre-research cavity for CSNS
Autor:
Song Li, Zhexin Xie, Zhencheng Mu, Bo Wang, Maliang Wan, Mengxu Fan, Huachang Liu, Linyan Rong, Hui Zhang, Wenzhong Zhou, Mingtao Kang, Xuan Wu, Shunming Liu, Yun Wang
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1045:167512
Autor:
Zhenqiang He, Tong Wang, Xiaolong Wang, Shang Lu, Huachang Liu, Xiao Li, Lingling Men, Na Ma, Zhiyong Ke, Jing Liang, Lan Dong, Bo Li
Publikováno v:
Measurement Science and Technology. 33:075201
Alignment of superconducting cavities is one of the important issues for the China Spallation Neutron Source Phase II (CSNS II) linac. In order to obtain the cavity displacement in the process of cooling down to the liquid helium temperature, a laser
Autor:
Gang Zhang, Huachang Liu, Luyang Zhao, Yu Chen, Yufei Wang, Sixuan Zhuang, Qingbiao Wu, Hongbo Ma, Yinglin Ma, Yuliang Zhang, Lun Li, Xin Qi
Publikováno v:
Journal of Environmental Radioactivity. 234:106642
During the operation of high-energy proton accelerators, the air in the tunnel is activated with the production of radionuclides. For CSNS (China Spallation Neutron Source), the first pulsed neutron source in China for multidisciplinary research, an
Autor:
Bo Li, Xiaolei Wu, Dai Jianping, Pei Hua Qu, Peng Sha, Qiang Chen, Huachang Liu, Ziwei Deng, MengXu Fan, Yun Wang, Ahong Li
Publikováno v:
Radiation Detection Technology and Methods. 3
In order to increase CSNS beam power from 100 to 500 kW, the linac injection energy needs to be increased from 80 to 300 MeV. The combined layout of superconducting spoke cavities and elliptical cavities will be adopted to accelerate H− beam to 300
Autor:
Yun Wang, Xiaolei Wu, Pei Hua Qu, H. Ouyang, Huachang Liu, MengXu Fan, Ahong Li, Bo Li, Qiang Chen
Publikováno v:
Journal of Instrumentation. 15:T11007-T11007
An accelerator-based Boron Neutron Capture Therapy (BNCT) facility has been built at the campus of China Spallation Neutron Source (CSNS). To upgrade it, a Drift Tube Linac (DTL) is designed to provide a 40 mA, 25% duty factor, 10.1 MeV beam for the