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Numerical study of point spread function of a fast neutron radiography system based on scintillating-fiber array 被引量:2
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作者 ZHANG FaQiang1,LI ZhengHong1,YANG JianLun1,YE Fan1,2,WANG Zhen1,2,XIA GuangXin1,YING ChunTong2 & LIU GuangJun2 1 Institute of Nuclear Physics and Chemistry,Mianyang 621900,China 2 Department of Engineering Physics,Tsinghua University,Beijing 100084,China 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2007年第6期698-706,共9页
For a scintillating-fiber array fast-neutron radiography system,a point-spread-function computing model was introduced,and the simulation code was developed. The results of calculation show that fast-neutron radiograp... For a scintillating-fiber array fast-neutron radiography system,a point-spread-function computing model was introduced,and the simulation code was developed. The results of calculation show that fast-neutron radiographs vary with the size of fast neutron sources,the size of fiber cross-section and the imaging geometry. The results suggest that the following qualifications are helpful for a good point spread function: The cross-section of scintillating fibers not greater than 200 μm×200 μm,the size of neutron source as small as a few millimeters,the distance between the source and the scintillating fiber array greater than 1 m,and inspected samples placed as close as possible to the array. The results give suggestions not only to experiment considerations but also to the estimation of spatial resolution for a specific system. 展开更多
关键词 fast NEUTRON radiography scintillating-fiber array POINT SPREAD function Monte Carlo simulation For a scintillating-fiber ARRAY fast-neutron radiography system a point-spread- FUNCTION computing model was introduced and the simulation code was developed. The results of calculation show that fast-neutron radiographs vary with the SIZE of fast NEUTRON sources the SIZE of fiber cross-section and the imaging geometry. The results suggest that the following qualifications are helpful for a good POINT SPREAD function: The cross-section of scintillating fibers not greater than 200μm×200μm the SIZE of NEUTRON source as small as a few millimeters the distance between the source and the scintillating fiber ARRAY greater than 1 m and inspected samples placed as close as possible to the array. The results give suggestions not only to experiment considerations but also to the estimation of spatial resolution for a specific system.……
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