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Amplitude and phase stability studies in a DC superconducting injector

Amplitude and phase stability studies in a DC superconducting injector
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摘要 The DC superconducting injector will be used in the PKU-THz facility which consists of a DC-gun and a 3+1/2-cell superconducting cavity. The cavity must accelerate the electron beam to 5.82 MeV which is susceptible to perturbations because of its narrow bandwidth. In this paper, the sources and influences of the perturbations in the 3+1/2-cell cavity are discussed. It is shown that the control system is essential for the cavity. The design of a feedback based digital RF low level control system for the 3+1/2-cell cavity is accomplished. The DC superconducting injector will be used in the PKU-THz facility which consists of a DC-gun and a 3+1/2-cell superconducting cavity. The cavity must accelerate the electron beam to 5.82 MeV which is susceptible to perturbations because of its narrow bandwidth. In this paper, the sources and influences of the perturbations in the 3+1/2-cell cavity are discussed. It is shown that the control system is essential for the cavity. The design of a feedback based digital RF low level control system for the 3+1/2-cell cavity is accomplished.
出处 《Chinese Physics C》 SCIE CAS CSCD 2011年第9期855-858,共4页 中国物理C(英文版)
基金 Supported by Major State Basic Research Development Program (2008CB817706)
关键词 energy spread PERTURBATION control system energy spread, perturbation, control system
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参考文献6

  • 1Hao J et al. NIM, A, 2006, 557:138-141.
  • 2YU Kai. Physical Design Study of PKU THz Facility at Peking University. Master Thesis. Peking University, 2010. 74 (in Chinese).
  • 3Mosnier A et al. RF Control System for the SC Cavity of the TESLA Test Facility Injector. In: Proceedings of PAC 1997. Vancouver, BC, Canada, 1997. 2311-2313.
  • 4Knobloch Jet al. Status of the HoBiCaT Superconduct- ing Cavity Test Facility at BESSY. In: Proceedings of EPAC2004. Lucerne, Switzerland, 2004. 970-972.
  • 5Simrock S N. Achieving Phase and Amplitude Stability in Pulsed Superconducting Cavities. In: Proceedings of PAC 2001, Chicago, U.S.A, 2001. 473- 477.
  • 6XU Wen-Can. The Physics and Engineering of the 3.5cell DC-SRF Photo-Injector for the PKU-ERL-FEL-Facility. PHD Thesis. Peking University, 2009. 73 (in Chinese).

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