Calculations of propagation characteristics and the model cavity investigations for a X-band hybrid dielectric-iris-loaded traveling accelerating structure

  • The dispersion curves of the TM01 and HEM 11modes for the X-band hybrid dielectric-iris-loaded travelling accelerating structure have been calculated. The results show that the cutoff frequency and the propagation constant of HEM 11mode are lower than those of the TM 01mode. We have found that the certain dielectric available with permittivity of 5.81 is applied to the design of the new accelerating structure. The MAFIA code has been used to optimize the model cavities, and the measurements indicate that the resonance frequency is consistent with the design frequency.
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  • [1] . ZOU P, XIAO L L, SUN X et al. J. Appl. Phys., 2001,90(4): 2017—20232. Adolphsen C, Baumgartner W, Jobe K Loewen et al.RF Processing of X-Band Accelerator Structures at theNLCTA. SLAC-PUB-8573, Stanford Linear AcceleratorCenter, Stanford University, August 20003. Loewen R J, Menegat A, Vlieks A E et al. Proceedingsof 1999 Particle Accelerator Conference. New York, 1999.3420—34224. Chojnacki E, Gai W, Ho C et al. J. Appl. Phys., 1991,69(9): 6257—6260
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WU Cong-Feng, DONG Sai, LIN Hui and PEI Yuan-Ji. Calculations of propagation characteristics and the model cavity investigations for a X-band hybrid dielectric-iris-loaded traveling accelerating structure[J]. Chinese Physics C, 2006, 30(S1): 57-59.
WU Cong-Feng, DONG Sai, LIN Hui and PEI Yuan-Ji. Calculations of propagation characteristics and the model cavity investigations for a X-band hybrid dielectric-iris-loaded traveling accelerating structure[J]. Chinese Physics C, 2006, 30(S1): 57-59. shu
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Received: 2005-12-07
Revised: 1900-01-01
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    Calculations of propagation characteristics and the model cavity investigations for a X-band hybrid dielectric-iris-loaded traveling accelerating structure

      Corresponding author:WU Cong-Feng,
    • National Synchrotron Radiation Lab, USTC, Hefei 230029, China

      Abstract:The dispersion curves of the TM01 and HEM11modes for the X-band hybrid dielectric-iris-loaded travelling accelerating structure have been calculated. The results show that the cutoff frequency and the propagation constant of HEM11mode are lower than those of the TM01mode. We have found that the certain dielectric available with permittivity of 5.81 is applied to the design of the new accelerating structure. The MAFIA code has been used to optimize the model cavities, and the measurements indicate that the resonance frequency is consistent with the design frequency.

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