The large-scale modular BGO detection array(LAMBDA) design and test

被引:0
作者
YaoDe Sheng [1 ]
LuYang Song [1 ]
Jun Su [1 ]
ShiLun Jin [2 ]
Fei Lu [3 ]
YangPing Shen [4 ]
JunFeng Chen [5 ]
LiYong Zhang [1 ]
JianJun He [1 ,6 ]
XinYue Li [1 ,6 ]
HongNa Liu [1 ]
FengShou Zhang [1 ]
MengLin Qiu [1 ]
Shen Lin [1 ]
Hao Zhang [1 ]
LuoHuan Wang [1 ,7 ]
ZiMing Li [1 ]
YinJi Chen [1 ]
XinZhi Jiang [1 ]
Xin Chen [1 ]
ZhiLin Shen [1 ]
FengCheng Liu [1 ]
ZhiWei Qin [1 ]
Lin Wang [1 ]
YiTong Huang [1 ]
Xiang Li [5 ]
SiZe Chen [8 ]
YouBao Wang [4 ]
ZhiHong Li [4 ]
Bing Guo [4 ]
WeiPing Liu [4 ,9 ]
机构
[1] Key Laboratory of Beam Technology of Ministry of Education, School of Physics and Astronomy, Beijing Normal University
[2] Institute of Modern Physics, Chinese Academy of Sciences
[3] Shanghai Advanced Research Institute, Chinese Academy of Sciences
[4] China Institute of Atomic Energy
[5] Shanghai Institute of Ceramics, Chinese Academy of Sciences
[6] Key Laboratory of Nuclear Physics and Ion-Beam Application (MoE), Institute of Modern Physics, Fudan University
[7] School of Mathematics and Physics, Handan University
[8] Institute of Nuclear Energy Safety Technology, Hefei Institutes of Physical Science, Chinese Academy of Sciences
[9] Department of Physics, Southern University of Science and Technology
关键词
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中图分类号
TL329 [反应堆理论计算];
学科分类号
082701 ;
摘要
Total absorption gamma-ray spectroscopy(TAGS) is a powerful tool for measuring complex γ transitions, which has been effectively applied to the study of reactor decay heat. This paper presents the design of a new TAGS detector, the large-scale modular BGO detection array(LAMBDA), tailored for measuring β-decay intensity distributions of fission products. The modular design allows the LAMBDA detectors to be assembled in various configurations. The final version of LAMBDA consists of 102 identical 60 mm × 60 mm × 120 mm BGO crystals and exhibits a high full-energy peak efficiency exceeding 80% at 0.5~8 MeV based on a Monte Carlo simulation. Currently, approximately half of the LAMBDA modules have been manufactured. Tests using γ-ray sources and nuclear reactions demonstrated favorable energy resolution, energy linearity, and efficiency uniformity across the modules. Forty-eight modules have been integrated into the prototype LAMBDA-I. The capability of LAMBDA-I in β-delayed γ-decay experiments was evaluated by commissioning measurements using the 152 Eu source.
引用
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页码:230 / 238
页数:9
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