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Optimization of the three-dimensional electric f ield in IH-DTL
Authors:DU Xiao-Nan  HE Yuan  YUAN You-Jin  ZHANG Sheng-Hu  WANG Zhi-Jun  XIAO Chen  XU Meng-Xin  SUN Lie-Peng
Affiliation:1,2 1 Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China 2 Graduate University of Chinese Academy of Sciences, Beijing 100049, China 3 School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China
Abstract:The tuning process of the three-dimensional electric field near the beam axis is very important in the optimization of the Interdigital H-mode Drift Tube Linac (IH-DTL). The tuning of the longitudinal field distribution, the Kilpatrik (Kp) factor, and the transverse dipole field have been discussed in detail, combined with the radio-frequency tuning process of the 53.667 MHz short IH-DTL cavity, which was designed to accelerate 238 U 34+ from 0.143 MeV/u to 0.289 MeV/u in the SSC-Linac injector project at the Institute of Modern Physics. The flatness criterion and the tube tuning method are discussed in order to meet the beam dynamics requirements. In the tube tuning process, the energy gain error in the cells should be reduced to less than ± 2%, and the Kp factor should be reduced to 1.6. The transverse dipole field and the method that uses a "plunger" to dismiss this dipole field are evaluated. The experience gained from the first cavity optimization benefits the tuning process of the three remaining IH-DTL cavities in the SSC-Linac project.
Keywords:IH-DTL  acceleration cell  transient time factor  Kilpatrik factor  transverse dipole field
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