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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 Li‑Jiao Wang +70 位作者 Jing‑Yu Tang Xiang‑Biao Qiu Zhen Chen Mao‑Yuan Zhao Chang‑Jun Ning Kai Pan Wei Xu Tao Li Su‑Peng Lu Han Yi Rui‑Rui Fan Chang‑Qing Feng Rong Zhang Xiao‑Yang Sun Qi An Hao‑Fan Bai Jiang‑Bo Bai Jie Bao Ping Cao Qi‑Ping Chen Yong‑Hao Chen Zeng‑Qi Cui An‑Chuan Fan Fan‑Zhen Feng Min‑Hao Gu Chang‑Cai Han Zi‑Jie Han Guo‑Zhu He Yong‑Cheng He Yang Hong Yi‑Wei Hu Han‑Xiong Huang Wei Jiang Zhi‑Jie Jiang Zheng‑Yao Jin Ling Kang Bo Li Gong Li Xiao Li Yang Li Jie Liu Rong Liu Shu‑Bin Liu Yi‑Na Liu Guang‑Yuan Luan Jie Ren Zhi‑Zhou Ren Xi‑Chao Ruan Zhao‑Hui Song Kang Sun Zhi‑Xin Tan Sheng‑Da Tang Jin‑Cheng Wang Peng‑Cheng Wang Zhao‑Hui Wang Zhong‑Wei Wen Xiao‑Guang Wu Xuan Wu Cong Xia Yong‑Ji Yu Guo‑Hui Zhang Hang‑Chang Zhang Lin‑Hao Zhang Qi‑Wei Zhang Xian‑Peng Zhang Yu‑Liang Zhang Yue Zhang Zhi‑Yong Zhang Zhi‑Hao Zhou Ke‑Jun 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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High efficiency event-counting thermal neutron imaging using a Gd-doped micro-channel plate 被引量:4
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作者 田阳 杨祎罡 +2 位作者 潘京生 李玉兰 李元景 《Chinese Physics C》 SCIE CAS CSCD 2014年第8期57-59,共3页
An event-counting thermal neutron imaging detector based on 3 mol % nattGd2O3-doped micro-channel plate (MCP) has been developed and tested. A thermal neutron imaging experiment was carried out with a low flux neutr... An event-counting thermal neutron imaging detector based on 3 mol % nattGd2O3-doped micro-channel plate (MCP) has been developed and tested. A thermal neutron imaging experiment was carried out with a low flux neutron beam. Detection efficiency of 33% was achieved with only one doped MCP. The spatial resolution of 72μ m RMS is currently limited by the readout anode. A detector with larger area and improved readout method is now being developed. 展开更多
关键词 doped mcp thermal neutron imaging event-counting
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用于中子成像探测器的混合掺杂nMCP模拟及优化 被引量:1
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作者 谭金昊 周健荣 +4 位作者 宋玉收 杨建清 张连军 蒋兴奋 孙志嘉 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2021年第12期1792-1798,1825,共8页
为了给CSNS中子谱仪提供性能优异的能量分辨中子成像探测器,本文设计了兼具高探测效率和高位置分辨的中子探测器。根据中子灵敏微通道板(nMCP)的中子探测原理和信号产生机制,使用Geant4建立nMCP的模拟模型以及位置分辨的计算模型,使用... 为了给CSNS中子谱仪提供性能优异的能量分辨中子成像探测器,本文设计了兼具高探测效率和高位置分辨的中子探测器。根据中子灵敏微通道板(nMCP)的中子探测原理和信号产生机制,使用Geant4建立nMCP的模拟模型以及位置分辨的计算模型,使用蒙特卡罗模拟对硼钆混合掺杂nMCP的探测效率和位置分辨2个关键性能展开了优化,并对nMCP中由中子入射位置不同产生的响应不均匀性进行了研究。结果表明:对于8μm孔径,10μm孔间距,1°倾角的nMCP,混合掺杂摩尔百分比为10的B_(2)O_(3)和摩尔百分比为0.4的Gd_(2)O_(3),在保持15μm位置分辨的同时可以最高达到28%的探测效率。相对于无倾角的nMCP,在有通道倾角的nMCP中这种响应不均匀现象更加严重。本文的模拟结果为开发用于能量分辨中子成像的高性能nMCP提供了有力的数据支持。 展开更多
关键词 中子成像 中子探测器 中子灵敏mcp 混合掺杂 蒙卡模拟 探测效率 位置分辨 响应不均匀性
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