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10B-doped MCP detector developed for neutron resonance imaging at Back-n white neutron source
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作者 Qiang Li LiJiao Wang +70 位作者 JingYu Tang XiangBiao Qiu Zhen Chen MaoYuan Zhao ChangJun Ning Kai Pan Wei Xu Tao Li supeng lu Han Yi RuiRui Fan ChangQing Feng Rong Zhang XiaoYang sun Qi An HaoFan Bai JiangBo Bai Jie Bao Ping Cao QiPing Chen YongHao Chen ZengQi Cui AnChuan Fan FanZhen Feng MinHao Gu ChangCai Han ZiJie Han GuoZhu He YongCheng He Yang Hong YiWei Hu HanXiong Huang Wei Jiang ZhiJie Jiang ZhengYao Jin Ling Kang Bo Li Gong Li Xiao Li Yang Li Jie Liu Rong Liu ShuBin Liu YiNa Liu GuangYuan luan Jie Ren ZhiZhou Ren XiChao Ruan ZhaoHui Song Kang sun ZhiXin Tan ShengDa Tang JinCheng Wang pengCheng Wang ZhaoHui Wang ZhongWei Wen XiaoGuang Wu Xuan Wu Cong Xia YongJi Yu GuoHui Zhang HangChang Zhang LinHao Zhang QiWei Zhang Xianpeng Zhang YuLiang Zhang Yue Zhang ZhiYong Zhang ZhiHao Zhou KeJun Zhu Chong Zou 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第8期58-68,共11页
Neutron resonance imaging(NRI)has recently emerged as an appealing technique for neutron radiography.Its complexity surpasses that of conventional transmission imaging,as it requires a high demand for both a neutron s... Neutron resonance imaging(NRI)has recently emerged as an appealing technique for neutron radiography.Its complexity surpasses that of conventional transmission imaging,as it requires a high demand for both a neutron source and detector.Consequently,the progression of NRI technology has been sluggish since its inception in the 1980s,particularly considering the limited studies analyzing the neutron energy range above keV.The white neutron source(Back-n)at the China Spallation Neutron Source(CSNS)provides favorable beam conditions for the development of the NRI technique over a wide neutron energy range from eV to MeV.Neutron-sensitive microchannel plates(MCP)have emerged as a cutting-edge tool in the field of neutron detection owing to their high temporal and spatial resolutions,high detection efficiency,and low noise.In this study,we report the development of a 10B-doped MCP detector,along with its associated electronics,data processing system,and NRI experiments at the Back-n.Individual heavy elements such as gold,silver,tungsten,and indium can be easily identified in the transmission images by their characteristic resonance peaks in the 1–100 eV energy range;the more difficult medium-weight elements such as iron,copper,and aluminum with resonance peaks in the 1–100 keV energy range can also be identified.In particular,results in the neutron energy range of dozens of keV(Aluminum)are reported here for the first time. 展开更多
关键词 Neutron resonance imaging 10B doped MCP detector White neutron source Sample nuclide identification
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