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Frequency tuning with RFQ temperature in China ADS Injector Ⅱ

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【作者】 王静黄建龙张小奇张斌何源张周礼石爱民

【Author】 Jing Wang;Jian-Long Huang;Xiao-Qi Zhang;Bin Zhang;Yuan He;Zhou-Li Zhang;Ai-Min Shi;Lanzhou University of Technology;Institute of Modern Physics,Chinese Academy of Sciences;

【机构】 Lanzhou University of TechnologyInstitute of Modern Physics,Chinese Academy of Sciences

【摘要】 A 162.5 MHz four-vane radio frequency quadruple(RFQ) accelerator has been developed at the Institute of Modern Physics(IMP) for Injector II of the China ADS linac. The RFQ will operate in continuous wave mode at 100 k W. For the designed 10 mA beam, the additional RF power dissipation will induce a very large reflection of power. A water-temperature controlling system will be used to reduce the power reflection by tuning the frequency of the RFQ. The tuning capability of the water temperature is studied under different configurations of cooling water.Simulations and experiment are compared in this paper. The experimental results agree well with simulation using ANSYS. This can be used as a reference to tune the RFQ in beam commissioning.

【Abstract】 A 162.5 MHz four-vane radio frequency quadruple(RFQ) accelerator has been developed at the Institute of Modern Physics(IMP) for Injector II of the China ADS linac. The RFQ will operate in continuous wave mode at 100 k W. For the designed 10 mA beam, the additional RF power dissipation will induce a very large reflection of power. A water-temperature controlling system will be used to reduce the power reflection by tuning the frequency of the RFQ. The tuning capability of the water temperature is studied under different configurations of cooling water.Simulations and experiment are compared in this paper. The experimental results agree well with simulation using ANSYS. This can be used as a reference to tune the RFQ in beam commissioning.

【基金】 Supported by National Natural Science Foundation of China(91026001)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2016年03期
  • 【分类号】TL53
  • 【被引频次】5
  • 【下载频次】35
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