[1] 吴波. 高精度环形谱仪的物理设计[D]. 兰州: 中国科学院大学(中国科学院近代物理研究所), 2018: 11.

WU Bo. The Accelerator Physics Design of the Spectrometer Ring[D]. Lanzhou: University of Chinese Academy of Sciences(Institute of Modern Physics, Chinese Academy of Sciences), 2018: 11. (in Chinese)
[2] MA X, WEN W Q, ZHANG S F, et al. Nucl Instr and Meth B, 2017, 408: 169. doi:  10.1016/j.nimb.2017.03.129
[3] YANG J C, XIA J W, XIAO G Q, et al. Nucl Instr and Meth B, 2013, 317: 263. doi:  10.1016/j.nimb.2013.08.046
[4] MOHL D. Stochastic Cooling for Beginners[C]//JOHNSEN K. 1983 CERN 1st Accelerator School:Antiprotons for Colliding Beam Facilities. Genève, Switzerland:CERN Accel School, 1983: 97.
[5] VAN DER MEER S. Stochastic Cooling Theory and Devices[C]// Workshop on Producing High luminosity High energy Proton Antiproton Collisions. Berkeley CA USA: 1978: 27.
[6] ZHU Guangyu, WU Junxia, CASPERS F, et al. IEEE Transactions on Nuclear Science, 2020, 68(1): 9. doi:  10.1109/TNS.2020.3038525
[7] POZAR D M. Microwave Engineering[M]. Hoboken: John Wiley & Sons Inc, 2011: 265.
[8] GOLDERG D A, LAMBERTSON G R. Dynamic Devices:A Primer on Pickups and Kickers[C]// MONTH M ed. AIP Conference Proceedings. USA: American Institute of Physics, 1991: 555.
[9] BRAMBILLA E. A Microwave Cerenkov Pick-up for Stochastic Cooling[R/OL]. [2021-08-15]. http://cds.cern.ch/record/163326/files/CM-P00059341.pdf.