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Single-neutron super-resolution imaging based on neutron capture event detection and reconstruction

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摘要 Neutron capture event imaging is a novel technique that has the potential to substantially enhance the resolution of existing imaging systems.This study provides a measurement method for neutron capture event distribution along with multiple reconstruction methods for super-resolution imaging.The proposed technology reduces the point-spread function of an imag-ing system through single-neutron detection and event reconstruction,thereby significantly improving imaging resolution.A single-neutron detection experiment was conducted using a highly practical and efficient^(6)LiF-ZnS scintillation screen of a cold neutron imaging device in the research reactor.In milliseconds of exposure time,a large number of weak light clusters and their distribution in the scintillation screen were recorded frame by frame,to complete single-neutron detection.Several reconstruction algorithms were proposed for the calculations.The location of neutron capture was calculated using several processing methods such as noise removal,filtering,spot segmentation,contour analysis,and local positioning.The proposed algorithm achieved a higher imaging resolution and faster reconstruction speed,and single-neutron super-resolution imaging was realized by combining single-neutron detection experiments and reconstruction calculations.The results show that the resolution of the 100μm thick^(6)LiF-ZnS scintillation screen can be improved from 125 to 40 microns.This indicates that the proposed single-neutron detection and calculation method is effective and can significantly improve imaging resolution.
出处 《Nuclear Science and Techniques》 2025年第7期24-33,共10页 核技术(英文)
基金 supported by the National Natural Science Foundation of China(Nos.12205271,12075217,U20B2011,and 51978218) Sichuan Science and Technology Program(No.2019ZDZX0010) the National Key R&D Program of China(No.2022YFA1604002).
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  • 1Rui He,Xiao‑Yang Niu,Yi Wang,Hong‑Wei Liang,Hong‑Bang Liu,Ye Tian,Hong‑Lin Zhang,Chao‑Jie Zou,Zhi‑Yi Liu,Yun‑Long Zhang,Hai‑Bo Yang,Ju Huang,Hong‑Kai Wang,Wei‑Jia Han,Bei Cao,Gang Chen,Cong Dai,Li‑Min Duan,Rui‑Rui Fan,Fang‑Fa Fu,Jian‑Hua Guo,Dong Han,Wei Jiang,Xian‑Qin Li,Xin Li,Zhuo‑Dai Li,Yu‑Tie Liang,Shun Liao,De‑Xu Lin,Cheng‑Ming Liu,Guo‑Rui Liu,Jun‑Tao Liu,Ze Long,Meng‑Chen Niu,Hao Qiu,Hu Ran,Xiang‑Ming Sun,Bo‑Tan Wang,Jia Wang,Jin‑Xiang Wang,Qi‑Lin Wang,Yong‑Sheng Wang,Xiao‑Chuan Xia,Hao‑Qing Xie,He‑Run Yang,Hong Yin,Hong Yuan,Chun‑Hui Zhang,Rui‑Guang Zhao,Ran Zheng,Cheng‑Xin Zhao.Advances in nuclear detection and readout techniques[J].Nuclear Science and Techniques,2023,34(12):281-358. 被引量:30

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