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One-Dimensional Vertical Electron Cyclotron Emission Imaging Diagnostic for HT-7 Tokamak

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【作者】 王俊徐小圆闻一之俞昌旋万宝年N.C.LUHMANN王剑夏振刚

【Author】 WANG Jun XU Xiaoyuan WEN Yizhi YU Changxuan WAN Baonian N.C.LUHMANN~3 WANG Jian XIA Zhengang1 CAS Key Laboratory of Plasma Physics,Department of Modern Physics,University of Science and Technology of China,Hefei 230027,China2 Institute of Plasma Physics,Chinese Academy of Sciences,Hefei 239031,China3 Department of Applied Science,University of California,Davis,California 95616,USA

【机构】 CAS Key Laboratory of Plasma Physics,Department of Modern Physics,University of Science and Technology of China,Hefei 230027,ChinaInstitute of Plasma Physics,Chinese Academy of Sciences,Hefei 230031,ChinaDepartment of Applied Science,University of California,Davis, California 95616,USA

【摘要】 <正> At the first stage of the electron cyclotron emission imaging(ECEI)diagnosticproject on HT-7,a 16-channel vertical-resolved ECEI diagnostic has been developed and installedon HT-7 tokamak to measure electron cyclotron emission with a temporal resolution of 0.5 μsec.The system works at a fixed frequency of 97.5 GHz.The sample volumes of the system arealigned vertically with a vertical channel spacing of 11 mm,and can be shifted across the plasmacross-section by varying the toroidal magnetic field.The high spatial resolution of the system isachieved by utilizing a low-cost linear mixer/receiver array and an optical imaging system.Thefocus location may be shifted horizontally when translating one of the optical imaging elements.The details of the system design and laboratory testing of the ECEI optics are presented togetherwith the preliminary experimental results.

【Abstract】 At the first stage of the electron cyclotron emission imaging(ECEI)diagnostic project on HT-7,a 16-channel vertical-resolved ECEI diagnostic has been developed and installed on HT-7 tokamak to measure electron cyclotron emission with a temporal resolution of 0.5 μsec. The system works at a fixed frequency of 97.5 GHz.The sample volumes of the system are aligned vertically with a vertical channel spacing of 11 mm,and can be shifted across the plasma cross-section by varying the toroidal magnetic field.The high spatial resolution of the system is achieved by utilizing a low-cost linear mixer/receiver array and an optical imaging system.The focus location may be shifted horizontally when translating one of the optical imaging elements. The details of the system design and laboratory testing of the ECEI optics are presented together with the preliminary experimental results.

【基金】 supported by National Nature Science Foundation of China(Nos.10235010,10335000);JSPS-CAS Core University Program in the Field of Plasma and Nuclear Fusion; Grants from the Ministry of Education and the Academy of Science of China
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2006年01期
  • 【分类号】O53
  • 【被引频次】3
  • 【下载频次】3
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