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DU Tengfei (杜腾飞), PENG Xingyu (彭星宇), CHEN Zhongjing (陈忠靖), HU Zhimeng (胡志猛), GE Lijian (葛理健), HU Liqun (胡立群), ZHONG Guoqiang (钟国强), PU Neng (普能), CHEN Jinxiang (陈金象), FAN Tieshuan (樊铁栓). Time Dependent DD Neutrons Measurement Using a Single Crystal Chemical Vapor Deposition Diamond Detector on EAST[J]. Plasma Science and Technology, 2016, 18(9): 950-953. DOI: 10.1088/1009-0630/18/9/12
Citation: DU Tengfei (杜腾飞), PENG Xingyu (彭星宇), CHEN Zhongjing (陈忠靖), HU Zhimeng (胡志猛), GE Lijian (葛理健), HU Liqun (胡立群), ZHONG Guoqiang (钟国强), PU Neng (普能), CHEN Jinxiang (陈金象), FAN Tieshuan (樊铁栓). Time Dependent DD Neutrons Measurement Using a Single Crystal Chemical Vapor Deposition Diamond Detector on EAST[J]. Plasma Science and Technology, 2016, 18(9): 950-953. DOI: 10.1088/1009-0630/18/9/12

Time Dependent DD Neutrons Measurement Using a Single Crystal Chemical Vapor Deposition Diamond Detector on EAST

  • A single crystal chemical vapor deposition (scCVD) diamond detector has been successfully employed for neutron measurements in the EAST (Experimental Advanced Superconducting Tokamak) plasmas. The scCVD diamond detector coated with a 5 µm 6LiF (95% 6Li enriched) layer was placed inside a polyethylene moderator to enhance the detection efficiency. The time-dependent neutron emission from deuteron plasmas during neutral beam injection (NBI) heating was obtained. The measured results are compared with that of fission chamber detectors, which always act as standard neutron flux monitors. The scCVD diamond detector exhibits good reliability, stability and the capability to withstand harsh radiation environments despite its low detection efficiency due to the small active volume.
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