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Surface enhancement of molecular ion H2+ yield in a 2.45-GHz electron–cyclotron resonance ion source

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【作者】 徐源彭士香任海涛张艾霖张滔张景丰温佳美武文斌郭之虞陈佳洱

【Author】 Yuan Xu;Shi-Xiang Peng;Hai-Tao Ren;Ai-Lin Zhang;Tao Zhang;Jing-Feng Zhang;Jia-Mei Wen;Wen-Bin Wu;Zhi-Yu Guo;Jia-Er Chen;State Key Laboratory of Nuclear Physics and Technology & Institute of Heavy Ion Physics, Peking University;University of Chinese Academy of Sciences;

【机构】 State Key Laboratory of Nuclear Physics and Technology & Institute of Heavy Ion Physics, Peking UniversityUniversity of Chinese Academy of Sciences

【摘要】 High current hydrogen molecular ion beam is obtained with a specially designed stainless steel liner permanent magnet2.45-GHz electron–cyclotron resonance(ECR) ion source(PMECR II) at Peking University(PKU). To further understand the physics of the hydrogen generation process inside a plasma chamber, theoretical and experimental investigations on the liner material of the plasma chamber in different running conditions are carried out. Several kinds of materials, stainless steel(SS), tantalum(Ta), quartz, and aluminum(Al) are selected in our study. Experimental results show that stainless steel and tantalum are much better than others in H+2 generation. During the experiment, an increasing trend in H+2 fraction is observed with stainless steel liner after O2 discharge inside the ion source. Surface analyses show that the roughness change on the surface after O2 discharge may be responsible for this phenomenon. After these studies, the pure current of H+2 ions can reach 42.3 mA with a fraction of 52.9%. More details are presented in this paper.

【Abstract】 High current hydrogen molecular ion beam is obtained with a specially designed stainless steel liner permanent magnet2.45-GHz electron–cyclotron resonance(ECR) ion source(PMECR II) at Peking University(PKU). To further understand the physics of the hydrogen generation process inside a plasma chamber, theoretical and experimental investigations on the liner material of the plasma chamber in different running conditions are carried out. Several kinds of materials, stainless steel(SS), tantalum(Ta), quartz, and aluminum(Al) are selected in our study. Experimental results show that stainless steel and tantalum are much better than others in H+2 generation. During the experiment, an increasing trend in H+2 fraction is observed with stainless steel liner after O2 discharge inside the ion source. Surface analyses show that the roughness change on the surface after O2 discharge may be responsible for this phenomenon. After these studies, the pure current of H+2 ions can reach 42.3 mA with a fraction of 52.9%. More details are presented in this paper.

【关键词】 H+2 ion sourceECR40 mAplasma
【Key words】 H+2 ion sourceECR40 mAplasma
【基金】 supported by the National Natural Science Foundation of China(Grant Nos.11175009 and 11575013)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2017年08期
  • 【分类号】O53
  • 【下载频次】17
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