High-gradient C-band linac for a compact x-ray free-electron laser facility

被引:35
|
作者
Inagaki, T. [1 ]
Kondo, C. [1 ]
Maesaka, H. [1 ]
Ohshima, T. [1 ]
Otake, Y. [1 ]
Sakurai, T. [1 ]
Shirasawa, K. [1 ]
Shintake, T. [1 ]
机构
[1] RIKEN, SPring Ctr 8, Sayo, Hyogo 6795148, Japan
关键词
D O I
10.1103/PhysRevSTAB.17.080702
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
An electron linac using a C-band rf frequency, 5.712 GHz, has enabled us to obtain an acceleration gradient of more than 35 MV/m reliably. A C-band accelerator system has been developed and constructed for the compact x-ray FEL facility, SACLA, in order to fit within the available site length at SPring-8, and to reduce construction costs. An accelerator unit consists of two 1.8 m-long accelerator structures, a cavity-type rf pulse compressor and a 50 MW pulsed klystron. In order to achieve a compact rf source and to obtain extremely stable rf fields in the accelerator structures, an oil-filled, high-voltage pulse modulator combined with an extremely stable, inverter-type, high voltage charger was developed. SACLA uses 64 sets of these accelerator units in order to achieve a final beam energy of 8.5 GeV. After rf conditioning for 1 700 hours, the maximum acceleration gradient achieved was 38 MV= m. The typical trip rate for each accelerator unit at 35 MV= m and 30 pps is about once per day. Dark current from the accelerator structures is less than 5 pC, which causes a negligible effect on the beam monitors. The phase and amplitude stability of the rf fields were measured to be 0.03 degree and 0.01% rms, respectively, which is sufficient for the XFEL operation of SACLA. Since the first beam commissioning in 2011, the C-band accelerator has demonstrated fairly stable performance under continuous operation for 20 000 hours.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Design optimization of a C-band traveling-wave accelerating structure for a compact X-ray Free Electron Laser facility
    Fang WenCheng
    Gu Qiang
    Tong DeChun
    Zhao ZhenTang
    CHINESE SCIENCE BULLETIN, 2011, 56 (32): : 3420 - 3425
  • [2] Design optimization of a C-band traveling-wave accelerating structure for a compact X-ray Free Electron Laser facility
    FANG WenCheng 1
    2 Department of Engineering Physics
    3 Graduate University of Chinese Academy of Sciences
    Science Bulletin, 2011, (32) : 3420 - 3425
  • [3] Design optimization of a C-band traveling-wave accelerating structure for a compact X-ray Free Electron Laser facility
    FANG WenCheng GU Qiang TONG DeChun ZHAO ZhenTang Shanghai Institute of Applied Physics Chinese Academy of Sciences Shanghai China Department of Engineering Physics Tsinghua University Beijing China Graduate University of Chinese Academy of Sciences Beijing China
    Chinese Science Bulletin, 2011, 56 (32) : 3420 - 3425
  • [4] Shanghai Soft X-Ray Free-Electron Laser Facility
    Zhao Zhentang
    Dong, Wang
    Yin Lixin
    Gu Qiang
    Fang Guoping
    Gu Ming
    Leng Yongbin
    Zhou Qiaogen
    Liu Bo
    Tang Chuanxiang
    Huang Wenhui
    Liu Zhi
    Jiang Huaidong
    Weng Zuqian
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2019, 46 (01):
  • [5] The European X-ray free-electron laser facility in Hamburg
    Altarelli, M.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2011, 269 (24): : 2845 - 2849
  • [6] An ultra-compact x-ray free-electron laser
    Rosenzweig, J. B.
    Majernik, N.
    Robles, R. R.
    Andonian, G.
    Camacho, O.
    Fukasawa, A.
    Kogar, A.
    Lawler, G.
    Miao, Jianwei
    Musumeci, P.
    Naranjo, B.
    Sakai, Y.
    Candler, R.
    Pound, B.
    Pellegrini, C.
    Emma, C.
    Halavanau, A.
    Hastings, J.
    Li, Z.
    Nasr, M.
    Tantawi, S.
    Anisimov, P.
    Carlsten, B.
    Krawczyk, F.
    Simakov, E.
    Faillace, L.
    Ferrario, M.
    Spataro, B.
    Karkare, S.
    Maxson, J.
    Ma, Y.
    Wurtele, J.
    Murokh, A.
    Zholents, A.
    Cianchi, A.
    Cocco, D.
    van der Geer, S. B.
    NEW JOURNAL OF PHYSICS, 2020, 22 (09):
  • [7] Shanghai Soft X-ray Free-Electron Laser Test Facility
    Zhao Zhentang
    Wang Dong
    Yin Lixin
    Fang Guoping
    Gu Qiang
    Gu Ming
    Leng Yongbin
    Liu Bo
    Zhou Qiaogen
    Shen Liren
    Zhang Meng
    Deng Haixiao
    Chen Jiahua
    Chen Jianhui
    Chen Zhihao
    Ding Jianguo
    Fang Wencheng
    Feng Chao
    Gu Duan
    Hu Xiao
    Huang Dazhang
    Huang Maomao
    Jiang Zhiqiang
    Li Bin
    Lin Guoqiang
    Liu Yiyong
    Sun Sen
    Wang Guanghong
    Wang Xingtao
    Wang Zhen
    Wu Yanqing
    Yu Luyang
    Yuan Qibing
    Zhang Wei
    Zhong Shaopeng
    Xia Xiaobin
    Tang Chuanxiang
    Huang Wenhui
    Du Yingchao
    Yan Lixin
    ACTA OPTICA SINICA, 2021, 41 (01)
  • [8] Structural biology at the European X-ray free-electron laser facility
    Altarelli, Massimo
    Mancuso, Adrian P.
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2014, 369 (1647)
  • [9] X-ray Free-Electron Laser
    Ueda, Kiyoshi
    APPLIED SCIENCES-BASEL, 2018, 8 (06):
  • [10] Electron beam halo monitor for a compact x-ray free-electron laser
    Aoyagi, Hideki
    Asano, Yoshihiro
    Itoga, Toshiro
    Nariyama, Nobuteru
    Bizen, Teruhiko
    Fukami, Kenji
    Aoki, Tsuyoshi
    Suzuki, Shinsuke
    Yamaga, Mitsuhiro
    Otake, Takuya
    Tanaka, Takashi
    Kitamura, Hideo
    PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS, 2013, 16 (03):