Zobrazeno 1 - 10
of 19
pro vyhledávání: '"Xiaohao Cui"'
Publikováno v:
Physical Review Special Topics. Accelerators and Beams, Vol 17, Iss 6, p 060701 (2014)
The effect of the coherent synchrotron radiation (CSR) becomes evident, and leads to increased beam energy spread and transverse emittance dilution, as both the emittance and bunch length of the electron beams are continuously pushed down in present
Externí odkaz:
https://doaj.org/article/e4421703c3e84caab5db19e935bf7190
Publikováno v:
Radiation Detection Technology and Methods. 7:220-226
Autor:
Haisheng Xu, Cai Meng, Yuemei Peng, Saike Tian, Na Wang, Xiaohao Cui, Chongchong Du, Zhe Duan, Yuanyuan Guo, Ping He, Xiyang Huang, Daheng Ji, Hongfei Ji, Yi Jiao, Jingyi Li, Nan Li, Xiaoyu Li, Xiaohan Lu, Pengfei Liang, Weimin Pan, Huamin Qu, Bin Wang, Jiuqing Wang, Yuanyuan Wei, Jinyu Wan, Gang Xu, Fang Yan, Chenghui Yu, Sen Yue, Xiang Zhang, Yaliang Zhao
Publikováno v:
Radiation Detection Technology and Methods. 7:279-287
Purpose The physics design of the High Energy Photon Source (HEPS) was finished after many times of iteration. Hereby, the typical equilibrium electron beam parameters corresponding to the proposed two baseline operation modes in the baseline design
Autor:
Dou Wang, Xiaohao Cui, Meng Li, Jinhui Chen, Ge Lei, Gang Li, Cai Meng, Jingru Zhang, Jiyuan Zhai, Jie Gao, Chenghui Yu, Yuhui Li, Yuan Zhang, Tianmu Xin, Zusheng Zhou, Xiaoping Li
Publikováno v:
International Journal of Modern Physics A. 37
This paper describes the injection philosophy and the design of timing and filling scheme for the high luminosity Circular Electron and Positron Collider (CEPC) scheme under different energy modes. It is found that the RF frequency choice in Conceptu
Publikováno v:
International Journal of Modern Physics A. 36:2142014
The CEPC booster needs to provide electron and positron beams to the collider at different energy with required injection efficiency. At Higgs energy, only the on-axis injection from booster to collider can be fulfilled in CDR. With a consideration o
Autor:
Chenghui Yu, Sheng Wang, Fusan Chen, Wen Kang, Jie Gao, Dou Wang, Xiaohao Cui, Yuemei Peng, Yuan Chen
Publikováno v:
International Journal of Modern Physics A. 36:2142010
An analytical magnetic field expression for a circular vacuum chamber with induced eddy on it is obtained. Two boundary conditions are discussed: with and without the iron poles; the former implies the use of the image current methods. After the curr
Autor:
Saike Tian, Cai Meng, Jie Gao, Dou Wang, Jingru Zhang, Hua Shi, Xiaohao Cui, Yudong Liu, Daheng Ji
Publikováno v:
International Journal of Modern Physics A. 36:2142006
A damping ring system which includes a small 1.1 GeV ring and two transport lines is introduced in CEPC linac in order to reduce the transverse emittance of positron beam at the end of linac and hence reduce the beam loss in the booster. This paper i
Autor:
Jiyuan Zhai, Yuan Zhang, Xiaohao Cui, Yudong Liu, Jie Gao, Dou Wang, Daheng Ji, Na Wang, Chenghui Yu
Publikováno v:
International Journal of Modern Physics A. 35:2041007
The CEPC booster needs to provide electron and positron beams to the collider at different energy with required injection speed. A 10 GeV linac is adopted as the injector for CDR. Then the beam energy is accelerated to specific energy according to th
Publikováno v:
Radiation Detection Technology and Methods. 1
In September 2012, Chinese scientists proposed a circular electron positron collider (CEPC) at 240 GeV center of mass for Higgs studies. The CEPC booster (CEPCB) provides 120 GeV electron and positron beams to the CEPC collider. The phase-shift-optim
Autor:
Jie Gao, Jiyuan Zhai, Yuan Zhang, Sha Bai, Chuang Zhang, Yiwei Wang, Feng Su, Huiping Geng, Dou Wang, Na Wang, Chenghui Yu, Tianjian Bian, Xiaohao Cui
Publikováno v:
International Journal of Modern Physics A. 32:1746006
In this paper, a consistent calculation method for the CEPC parameter choice with a crab waist scheme is reported. A crosscheck of luminosity with beam–beam simulations has been done. With this new scheme, a higher Higgs luminosity (+[Formula: see