期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
用于中国散裂中子源闪烁体中子探测器的^(6)LiF/ZnS(Ag)闪烁屏性能研究
1
作者 蒋俊杰 黄畅 +5 位作者 魏亚东 唐彬 于潜 周诗慧 蔡小杰 邓强 《原子能科学技术》 EI CAS CSCD 北大核心 2023年第8期1650-1657,共8页
^(6)LiF/ZnS(Ag)闪烁屏是闪烁体型中子探测器的重要组成部分,其性能优劣会直接影响着探测器的应用,为了筛选出满足中国散裂中子源(CSNS)上工程材料中子衍射谱仪和能量分辨中子成像谱仪的中子探测器需求的高性能闪烁屏,利用中国散裂中子... ^(6)LiF/ZnS(Ag)闪烁屏是闪烁体型中子探测器的重要组成部分,其性能优劣会直接影响着探测器的应用,为了筛选出满足中国散裂中子源(CSNS)上工程材料中子衍射谱仪和能量分辨中子成像谱仪的中子探测器需求的高性能闪烁屏,利用中国散裂中子源的20号中子束线,系统研究了AST公司的多种^(6)LiF/ZnS(Ag)闪烁屏样品的相对热中子探测效率和中子信号积分谱,并通过刻度光测试系统中的光电倍增管得到这些样品的出射光产额,选取出用于闪烁体中子探测器的最佳闪烁屏材料。研究结果表明,^(6)LiF∶ZnS(Ag)质量分数比为1∶2,基底材料为塑料,闪烁屏厚度为300μm的AST-26139闪烁体样品性能较高,满足中子谱仪的中子探测器需求。 展开更多
关键词 ^(6)lif/zns(ag)闪烁体 闪烁体中子探测器 相对热中子探测效率 出射光产额 中国散裂中子源
下载PDF
Performance optimization of scintillator neutron detectors for EMD in CSNS
2
作者 蔡小杰 于潜 +5 位作者 黄畅 唐彬 周诗慧 王小胡 岳秀萍 孙志嘉 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第11期207-213,共7页
Chinese Spallation Neutron Source(CSNS) has successfully produced its first neutron beam in 28th August 2017. It has been running steadily from March, 2018. According to the construction plan, the engineering material... Chinese Spallation Neutron Source(CSNS) has successfully produced its first neutron beam in 28th August 2017. It has been running steadily from March, 2018. According to the construction plan, the engineering materials diffractometer(EMD) will be installed between 2019–2023. This instrument requires the neutron detectors with the cover area near3 m2in two 90° neutron diffraction angle positions, the neutron detecting efficiency is better than 40%@1A, and the spatial resolution is better than 4 mm×200 mm in horizontal and vertical directions respectively. We have developed a onedimensional position-sensitive neutron detector based on the oblique6Li F/Zn S(Ag) scintillators, wavelength shifting fibers,and Si PMs(silicon photomultipliers) readout. The inhomogeneity of the neutron detection efficiency between each pixel and each detector module, which caused by the inconsistency of the wave-length shifting fibers in collecting scintillation photons, needs to be mitigated before the installation. A performance optimization experiment of the detector modules was carried out on the BL20(beam line 20) of CSNS. Using water sample, the neutron beam with Φ5 mm exit hole was dispersed related evenly into the forward space. According to the neutron counts of each pixel of the detector module, the readout electronics threshold of each pixel is adjusted. Compared with the unadjusted detector module, the inhomogeneity of the detection efficiency for the adjusted one has been improved from 69% to 90%. The test result of the diffraction peak of the standard sample Si showed that the adjusted detector module works well. 展开更多
关键词 scintillator neutron detector silicon photomultipliers wavelength shifting fiber lif/zns scintil-lator detection efficiency inhomogeneity
下载PDF
Study of a position-sensitive scintillator neutron detector 被引量:3
3
作者 唐彬 孙志嘉 +7 位作者 张强 杨振 许虹 杨桂安 王艳凤 吴冲 陈元柏 杨雷 《Chinese Physics C》 SCIE CAS CSCD 2012年第11期1089-1094,共6页
The investigation of a novel thermal neutron detector is developed to fulfill the requirements of the high intensity power diffractometer (HIPD) at the Chinese Spallation Neutron Source (CSNS). It consists of two ... The investigation of a novel thermal neutron detector is developed to fulfill the requirements of the high intensity power diffractometer (HIPD) at the Chinese Spallation Neutron Source (CSNS). It consists of two layers of 6LiF/ZnS(Ag) scintillators, two layers of crossed WLSF arrays, several multi-anode photo multiplier tubes (MA-PMT), and the matching readout electronics. The neutron detection efficiency of the scintilltors, the light transportation ability of the WLSF, and the spatial linearity of the readout electronics are measured and discussed in this paper. It shows that the sandwich structure and the compact readout electronics could fulfill the needs of the HIPD. A prototype with a 10 cm×10 cm sensitive area has been constructed to further study the characteristics of the neutron scintillator detector. 展开更多
关键词 6lif/zns(ag) scintillator neutron detector wavelength shifting fiber detection efficiency
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部