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RF design and study of a 325 MHz 7 Me V APF IH-DTL for an injector of a proton medical accelerator 被引量:2
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作者 Xuan Li Yue-Hu Pu +4 位作者 Fan Yang Xiu-Cui Xie Qiang Gu Jian Qiao Ming-Hua Zhao 《Nuclear Science and Techniques》 SCIE CAS CSCD 2019年第9期34-46,共13页
A compact interdigital H-mode drift-tube linac (IH-DTL) with the alternating-phase-focusing (APF) method, working at 325 MHz was designed for an injector of a proton medical accelerator. When fed in with a proper RF (... A compact interdigital H-mode drift-tube linac (IH-DTL) with the alternating-phase-focusing (APF) method, working at 325 MHz was designed for an injector of a proton medical accelerator. When fed in with a proper RF (radio frequency) power, the DTL cavity could establish the corresponding electromagnetic field to accelerate the ‘‘proton bunches’’ from an input energy of 3 MeV to an output energy of 7 MeV successfully, without any additional radial focusing elements. The gap-voltage distribution which was obtained from the CST■ Microwave Studio software simulations of the axial electric field was compared with that from the beam dynamics, and the errors met the requirements within ± 5%. In this paper, the RF design procedure and key results of the APF IH-DTL, which include the main RF characteristics of the cavity, frequency sensitivities of the tuners, and coupling factor of the RF power input coupler are presented. 展开更多
关键词 PROTON therapy PROTON medical accelerator INJECTOR drift-tube linac (dtl) Interdigital H-MODE (IH) Alternating-phase-focusing (APF)
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