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Practical 2.45-GHz microwave-driven Cs-free Hˉ ion source developed at Peking University 被引量:2

Practical 2.45-GHz microwave-driven Cs-free Hˉ ion source developed at Peking University
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摘要 A practical 2.45-GHz microwave-driven Cs-free H^- source was improved based on the experimental H^- source at Peking University(PKU). Several structural improvements were implemented to meet the practical requirements of Xi'an Proton Application Facility(XiPaf). Firstly, the plasma chamber size was optimized to enhance the plasma intensity and stability. Secondly, the filter magnetic field and electron deflecting magnetic field were enhanced to reduce co-extracted electrons. Thirdly, a new two-electrode extraction system with farther electrode gap and enhanced water cooling ability to diminish spark and sputter during beam extraction was applied. At last, the direct H^- current measuring method was adopted by the arrangement of a new pair of bending magnets before Faraday cup(FC) to remove residual electrons. With these improvements, electron cyclotron resonance(ECR) magnetic field optimization experiments and operation parameter variation experiments were carried out on the H^- ion source and a maximum 8.5-mA pure H^- beam was extracted at 50 kV with the time structure of 100 Hz/0.3 ms. The root-mean-square(RMS) emittance of the beam is 0.25 Π·mm·mrad. This improved H^- source and extraction system were maintenance-free for more than 200 hours in operation. A practical 2.45-GHz microwave-driven Cs-free H^- source was improved based on the experimental H^- source at Peking University(PKU). Several structural improvements were implemented to meet the practical requirements of Xi'an Proton Application Facility(XiPaf). Firstly, the plasma chamber size was optimized to enhance the plasma intensity and stability. Secondly, the filter magnetic field and electron deflecting magnetic field were enhanced to reduce co-extracted electrons. Thirdly, a new two-electrode extraction system with farther electrode gap and enhanced water cooling ability to diminish spark and sputter during beam extraction was applied. At last, the direct H^- current measuring method was adopted by the arrangement of a new pair of bending magnets before Faraday cup(FC) to remove residual electrons. With these improvements, electron cyclotron resonance(ECR) magnetic field optimization experiments and operation parameter variation experiments were carried out on the H^- ion source and a maximum 8.5-mA pure H^- beam was extracted at 50 kV with the time structure of 100 Hz/0.3 ms. The root-mean-square(RMS) emittance of the beam is 0.25 Π·mm·mrad. This improved H^- source and extraction system were maintenance-free for more than 200 hours in operation.
作者 Tao Zhang Shi-Xiang Peng Wen-Bin Wu Hai-Tao Ren Jing-Feng Zhang Jia-Mei Wen Teng-Hao Ma Yao-Xiang Jiang Jiang Sun Zhi-Yu Guo Jia-Er Chen 张滔;彭士香;武文斌;任海涛;张景丰;温佳美;马腾昊;蒋耀湘;孙江;郭之虞;陈佳洱(SKLNPT & IHIE School of Physics, Peking University, Beijing 100871, China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第10期477-483,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11775007 and 11575013)
关键词 electron cyclotron resonance (ECR) ion source hydrogen plasma negative ion beam plasma application electron cyclotron resonance (ECR) ion source hydrogen plasma negative ion beam plasma application
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