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Four-Rod RFQ Beam Dynamics Design of PKUNIFTY Upgrade

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【作者】 朱晓文陆元荣朱昆颜学庆王浒高淑丽邹宇斌郭之虞

【Author】 Xiao-Wen Zhu;Yuan-Rong Lu;Kun Zhu;Xue-Qing Yan;Hu Wang;Shu-Li Gao;Yu-Bin Zou;Zhi-Yu Guo;State Key Lab of Nuclear Physics and Technology, Peking University;

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

【摘要】 The Peking University neutron imaging facility(PKUNIFTY),an RFQ-based neutron source, aims at developing industrial applications. During the past 3 y operation, some problems have appeared, such as RF sparking for the RFQ high power operation, full power level instability of RF transmitter, and the misalignment of RFQ electrodes assembling and deformation. The PKUNIFTY upgrade erdeavors to adopt a modest inter-voltage beam dynamics design. The new beam dynamics design of 201.5 MHz RFQ of PKUNIFTY,which accelerates 35 mA of D+ from 50 keV to 2.0 MeV at 10% duty factor, is performed.The averaged beam will be about 3 mA. The source will deliver a fast neutron yield of 2.5×1012n/s via the duteron-beryllium reaction, which is about 10 times higher than the current status.

【Abstract】 The Peking University neutron imaging facility(PKUNIFTY),an RFQ-based neutron source, aims at developing industrial applications. During the past 3 y operation, some problems have appeared, such as RF sparking for the RFQ high power operation, full power level instability of RF transmitter, and the misalignment of RFQ electrodes assembling and deformation. The PKUNIFTY upgrade erdeavors to adopt a modest inter-voltage beam dynamics design. The new beam dynamics design of 201.5 MHz RFQ of PKUNIFTY,which accelerates 35 mA of D+ from 50 keV to 2.0 MeV at 10% duty factor, is performed.The averaged beam will be about 3 mA. The source will deliver a fast neutron yield of 2.5×1012n/s via the duteron-beryllium reaction, which is about 10 times higher than the current status.

【关键词】 neutrontransmitteraveragedassemblingfacilityPekingdelivermodestupgradeadopt
【基金】 Supported by the National Basic Research Program of China under Grant No 2014CB845503
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2017年01期
  • 【分类号】O571.53
  • 【被引频次】1
  • 【下载频次】32
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