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基于白光中子源的197Au中子辐射俘获截面测量及共振参数分析

Translated title of the contribution: Neutron capture reaction cross-section data processing and resonance parameter analysis of 197Au based on white light neutron source
  • Hao Tian Luo
  • , Qi Wei Zhang*
  • , Guang Yuan Luan
  • , Xiao Yu Wang
  • , Chong Zou
  • , Jie Ren
  • , Xi Chao Ruan*
  • , Guo Zhu He
  • , Jie Bao
  • , Qi Sun
  • , Han Xiong Huang
  • , Zhao Hui Wang
  • , Hong Yi Wu
  • , Min Hao Gu
  • , Tao Yu
  • , Li Kun Xie
  • , Qi An
  • , Yong Hao Chen
  • , Huai Yong Bai
  • , Yu Bao
  • Ping Cao, Hao Lei Chen, Qi Ping Chen, Yu Kai Chen, Zhen Chen, Zeng Qi Cui, Rui Rui Fan, Chang Qing Feng, Ke Qing Gao, Chang Cai Han, Zi Jie Han, Yong Cheng He, Yang Hong, Wei Ling Huang, Xi Ru Huang, Xiao Lu Ji, Xu Yang Ji, Wei Jiang, Hao Yu Jiang, Zhi Jie Jiang, Han Tao Jing, Ling Kang, Ming Tao Kang, Bo Li, Chao Li, Jia Wen Li, Lun Li, Qiang Li, Xiao Li, Yang Li, Rong Liu, Shu Bin Liu, Xing Yan Liu, Qi Li Mu, Chang Jun Ning, Bin Bin Qi, Zhi Zhou Ren, Ying Peng Song, Zhao Hui Song, Hong Sun, Kang Sun, Xiao Yang Sun, Zhi Jia Sun, Zhi Xin Tan, Hong Qing Tang, Jing Yu Tang, Xin Yi Tang, Bin Bin Tian, Li Jiao Wang, Peng Cheng Wang, Qi Wang, Tao Feng Wang, Jie Wen, Zhong Wei Wen, Qing Biao Wu, Xiao Guang Wu, Xuan Wu, Yi Wei Yang, Li Yu, Han Yi, Yong Ji Yu, Guo Hui Zhang, Lin Hao Zhang, Xian Peng Zhang, Yu Liang Zhang, Zhi Yong Zhang, Yu Bin Zhao, Lu Ping Zhou, Zu Ying Zhou, Dan Yang Zhu, Ke Jun Zhu, Peng Zhu, Xing Hua Zhu
*Corresponding author for this work
  • China National Nuclear Corporation
  • CAS - Institute of High Energy Physics
  • Spallation Neutron Source Science Center
  • University of Science and Technology of China
  • Peking University
  • China Academy of Engineering Physics
  • Northwest Institute of Nuclear Technology
  • University of Chinese Academy of Sciences
  • University of Science and Technology of China
  • Huaneng Shandong Shidao Bay Nuclear Power Co. Ltd.

Research output: Contribution to journalArticlepeer-review

Abstract

Neutron capture reaction is one of the neutron reactions and plays an important role in using reactor control rods and shell materials, designing nuclear device structures, and studying nuclear astrophysics S processes and element origins. The 4π BaF2 detection device has advantages such as high time resolution, low neutron sensitivity, and high detection efficiency, thus making it suitable for measuring neutron radiation capture reaction cross-section data. In order to fill the gap in our neutron capture reaction data in the keV energy range and improve their accuracy, the Key Laboratory of Nuclear Data at the Chinese Institute of Atomic Energy (CIAE) has established a Gamma Total Absorption Facility (GTAF), which consists of 28 hexagonal BaF2 crystals and 12 pentagonal BaF2 crystals to form a spherical shell with an external diameter of 25 cm and an internal diameter of 10 cm, covering 95.2% of the solid angles. The Back-n beam line of the Chinese Spallation Neutron Source (CSNS) is a back-streaming white beam line that covers neutron energy ranging from a few eV to several hundred MeV, making it suitable for measuring neutron capture cross-sections. The reaction cross-section data of 197Au is measured by using GTAF on the Back-n beam line. The measurement data are preliminarily background deducted through energy screening, PSD method, and crystal multiplicity screening. Subsequently, the background is analyzed and deducted based on the measurement data of natC and empty samples, and the yield of 197Au capture reaction is obtained. Resonance parameters are a set of parameters extracted from experimental data to describe the resonance curve, which can eliminate the influence of experimental conditions on resonance data and are more important than the cross-section obtained from experiments. The resonance energy, neutron resonance width, and gamma resonance width parameters of 197 Au at 1–100 eV are fitted by using the SAMMY program. From the comparison between the resonance curves obtained from experimental measurements and the resonance parameters obtained from fitting with the ENDF/B-VIII.0 database, it can follow that the experimental measurement results are in good agreement with the database, nevertheless, there exist some differences in the resonance parameter, which may be due to the GTAF energy resolution, Back-n neutron spectrum measurement accuracy, and the experimental background deduction method. Our next work is to identify the sources of difference.

Translated title of the contributionNeutron capture reaction cross-section data processing and resonance parameter analysis of 197Au based on white light neutron source
Original languageChinese (Traditional)
Article number072801
JournalWuli Xuebao/Acta Physica Sinica
Volume73
Issue number7
DOIs
StatePublished - 5 Apr 2024

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