Xiu-Ping 秀萍 Yue 岳,Zhi-Fu 志甫 Zhu 朱,Bin 彬 Tang 唐,Chang 畅 Huang 黄,Qian 潜 Yu 于,Shao-Jia 少佳 Chen 陈,Xiu-Ku 修库 Wang 王,Hong 虹 Xu 许,Shi-Hui 诗慧 Zhou 周,Xiao-Jie 小杰 Cai 蔡,Hao 浩 Yang 杨,Zhi-Yong 志勇 Wan 万,Zhi-Jia 志嘉 Sun 孙,Yun-Tao 云涛 Liu 刘
出处
期刊:Chinese Physics B [IOP Publishing] 日期:2023-06-30卷期号:32 (9): 090402-090402
标识
DOI:10.1088/1674-1056/ace316
摘要
The energy-resolved neutron imaging spectrometer (ERNI) will be installed in 2022 according to the spectrometer construction plan of the China Spallation Neutron Source (CSNS). The instrument requires neutron detectors with the coverage area of approximately 4 m 2 in 5°–170° neutron diffraction angle. The neutron detection efficiency needs to be better than 40% at 1 Å neutron wavelength. The spatial resolution should be better than 3 mm × 50 mm in the horizontal and vertical directions respectively. We develop a one-dimensional scintillator neutron detector which is composed of the 6 LiF/ZnS (Ag) scintillation screens, the wavelength-shifting fiber (WLSF) array, the silicon photomultipliers (SiPMs), and the self-designed application-specific integrated circuit (ASIC) readout electronics. The pixel size of the detector is designed as 3 mm × 50 mm, and the neutron-sensitive area is 50 mm × 200 mm. The performance of the detector prototype is measured using neutron beam 20# of the CSNS. The maximum counting rate of 247 kHz, and the detection efficiency of 63% at 1.59 Å are obtained. The test results show that the performance of the detector fulfills the physical requirements of the ERNI under construction at the CSNS.