The development of an electron cyclotron resonance ion source for the heavy ion research facility in Lanzhou

A new working condition for an electron cyclotron resonance (ECR) source for the heavy ion research facility in Lanzhou (HIRFL) is reported. This condition is based on the full use of the secondary electrons injected into the source plasma near the extraction region of source cavity, and allows ion...

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Veröffentlicht in:Review of Scientific Instruments 1998-02, Vol.69 (2), p.685-687
Hauptverfasser: Zhanwen, Liu, Wen, Zhang, Hongwei, Zhao, Ping, Yuan, Xuezhen, Zhang, Xiaohong, Guo, Zimin, Zhang, Xixia, Li, Hui, Wang, Yucheng, Feng, Jinyu, Li, Jiyuan, Gao, Baohua, Ma, Hailiang, Lei, Sixin, Zhou, Yifang, Wang, Baowen, Wei
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container_end_page 687
container_issue 2
container_start_page 685
container_title Review of Scientific Instruments
container_volume 69
creator Zhanwen, Liu
Wen, Zhang
Hongwei, Zhao
Ping, Yuan
Xuezhen, Zhang
Xiaohong, Guo
Zimin, Zhang
Xixia, Li
Hui, Wang
Yucheng, Feng
Jinyu, Li
Jiyuan, Gao
Baohua, Ma
Hailiang, Lei
Sixin, Zhou
Yifang, Wang
Baowen, Wei
description A new working condition for an electron cyclotron resonance (ECR) source for the heavy ion research facility in Lanzhou (HIRFL) is reported. This condition is based on the full use of the secondary electrons injected into the source plasma near the extraction region of source cavity, and allows ion extraction from a denser plasma. A new magnetic field configuration which could move the B min of the mirror field towards the extraction region is also described. Using these technologies, our 10 GHz ECR source has delivered beam current of 320 and 80 eμ A for the Ar 9+ and Ar 11+ ion, respectively. An ion extraction construction with a biased electrode was tested recently. Some details and the preliminary results are presented as well.
doi_str_mv 10.1063/1.1148553
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title The development of an electron cyclotron resonance ion source for the heavy ion research facility in Lanzhou
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