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Power test of the separated function RFQ accelerator

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【作者】 陈佳洱朱昆郭之虞陆元荣颜学庆高淑丽王智康明磊方家驯于茂林李纬国郭菊芳

【Author】 CHEN Jia-Er ZHU Kun1) GUO Zhi-Yu LU Yuan-Rong YAN Xue-Qing GAO Shu-Li WANG Zhi KANG Ming-Lei FANG Jia-Xun YU Mao-Lin LI Wei-Guo GUO Ju-Fang (State Key Lab of Nuclear Physics and Technology, Institute of Heavy Ion Physics, Peking University, Beijing 100871, China)

【机构】 State Key Lab of Nuclear Physics and Technology, Institute of Heavy Ion Physics, Peking University

【摘要】 The progress of the Separated Function RFQ (SFRFQ) accelerator, which can raise the field gradient of acceleration while maintaining the transverse focusing power sufficient for high current beam, is presented. In order to demonstrate the feasibilities of the novel accelerator, a prototype cavity was designed and constructed. Correspondingly, a code SFRFQCODEV1.0 was developed specially for cavity design and beam dynamics simulation. The prototype cavity will be verified as a post-accelerator for ISR RFQ-1000 (Integral Split Ring RFQ) and accelerate O+ from 1 MeV to 1.6 MeV. To inject a higher current oxygen beam for the prototype cavity, the beam current of ISR RFQ-1000 was upgraded to 2 mA. The status of high power and beam test preparation for the prototype cavity are presented in this paper.

【Abstract】 The progress of the Separated Function RFQ (SFRFQ) accelerator, which can raise the field gradient of acceleration while maintaining the transverse focusing power sufficient for high current beam, is presented. In order to demonstrate the feasibilities of the novel accelerator, a prototype cavity was designed and constructed. Correspondingly, a code SFRFQCODEV1.0 was developed specially for cavity design and beam dynamics simulation. The prototype cavity will be verified as a post-accelerator for ISR RFQ-1000 (Integral Split Ring RFQ) and accelerate O+ from 1 MeV to 1.6 MeV. To inject a higher current oxygen beam for the prototype cavity, the beam current of ISR RFQ-1000 was upgraded to 2 mA. The status of high power and beam test preparation for the prototype cavity are presented in this paper.

【基金】 Supported by National Natural Science Foundation of China (10455001)
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2009年S2期
  • 【分类号】TL505
  • 【下载频次】38
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