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A compact electron beam ion trap in support of high-temperature plasma diagnostics based on conduction-cooled superconducting coils

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成果类型:
期刊论文
作者:
Bin, B.;Lyu, B.;Yang, Y.;Zhang, H. M.;Hao, Q. W.;...
通讯作者:
B. Lyu
作者机构:
[Hao, Q. W.; Lyu, B.; Zhang, H. M.; Wang, F. D.; Dai, C.; Li, J.; Li, Y. Y.; Bin, B.; Fu, J.] Chinese Acad Sci, HFIPS, Inst Plasma Phys, Hefei 230031, Peoples R China.
[Bin, B.] Univ Sci & Technol China, Grad Sch, Sci Isl Branch, Hefei 230026, Peoples R China.
[Bin, B.] Univ South China, Sch Elect Engn, Hengyang 421001, Peoples R China.
[Yang, Y.] Fudan Univ, Inst Modern Phys, Shanghai 200433, Peoples R China.
[Du, X. W.; Wang, Q. P.] Univ Sci & Technol China, Natl Synchrotron Radiat Lab, Hefei 230029, Peoples R China.
通讯机构:
[B. Lyu] I
Institute of Plasma Physics, HFIPS, Chinese Academy of Sciences , Hefei 230031, China
语种:
英文
期刊:
Review of Scientific Instruments
ISSN:
0034-6748
年:
2021
卷:
92
期:
6
页码:
063512
基金类别:
Instrument Developing Project of Chinese Academy of SciencesChinese Academy of Sciences [YJKYYQ20180013]; National Key Research and Development Program of China [2017YFE0301300]; Distinguished Young Scholar of Anhui Provincial Natural Science Foundation [1908085J01]; National Natural Science Foundation of ChinaNational Natural Science Foundation of China (NSFC) [11805231]; Comprehensive Research Facility for Fusion Technology Program of China [2018-000052-73-01-001228]; Open Fund of Magnetic Confinement Fusion Laboratory of Anhui Province [2021AMF01002]; Collaborative Innovation Program of Hefei Science Center, CAS [2019HSC-CIP005]
机构署名:
本校为其他机构
院系归属:
电气工程学院
摘要:
Spectroscopic diagnostics of future fusion reactor plasmas require information on impurity line emissions, especially for relevant high-Z metal elements (e.g., tungsten). These materials will be widely used as plasma facing components for their high heat tolerance and low sputtering yield. Based on an electron beam ion trap, a compact impurity spectra platform is developed to mimic the high-temperature environment of a fusion reactor. The proposed platform can deliver a focused e-beam at energies over 30 keV using a confining magnetic field of ...

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