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Measurement of the neutron capture cross sections of rhenium up to stellar s- and r-process temperatures at the China Spallation Neutron Source Back-n facility

Authors :
Gaole Yang
Zhendong An
Wei Jiang
Xiankai Li
Weiwei Qiu
Zhengfa Liao
Ziyue Zhuang
Xiaoping Zhang
Shengli Chen
Chenchen Guo
Erxi Xiao
Xiao Fang
Xinxiang Li
Hongwei Wang
Xinrong Hu
Bing Jiang
Wenqing Shen
Jincheng Wang
Jie Ren
Xichao Ruan
Dexin Wang
Su-Yalatu Zhang
Wen Luo
Zhichao Zhu
Haoyang Lan
Zongwei Cao
Xu Ma
Yingdu Liu
Pusen Wang
Yi Yang
Ping Su
Xiangai Deng
Wanbing He
Yugang Ma
Chunwang Ma
Yuting Wang
Zhitao Dai
Ertao Li
Pengqin He
RenGuang Tang
Tao Zhou
Jing Wang
Han Yi
Yue Zhang
Yonghao Chen
Ruirui Fan
Keqing Gao
Qiang Li
Kang Sun
Zhixin Tan
Minhao Gu
Hantao Jing
Jingyu Tang
Source :
Physical Review Research, Vol 6, Iss 1, p 013225 (2024)
Publication Year :
2024
Publisher :
American Physical Society, 2024.

Abstract

The neutron capture measurement of natural rhenium was performed with the time-of-flight technique at the Back-n facility of the China Spallation Neutron Source in the energy range from 1 to 500 eV of the resolved resonance region (RRR) and from 5 to 400 keV in the unresolved resonance region (URR). Prompt γ-rays originating from neutron-induced capture events were detected by four C_{6}D_{6} detectors. The pulse height weighting technique and the double-bunch unfolding method based on the Bayesian theory were used in the data analysis. To obtain reliable measurement results, background subtraction, normalization, and corrections were carefully considered. The multilevel R-matrix Bayesian code SAMMY was used to extract the resonance parameters in the RRR. An absence of resonance near 392 eV is observed in our measurement, which has been observed in previous works. The average cross sections in the URR of natural rhenium relative to ^{197}Au were obtained in logarithmical equidistant energy bins with 20 bins per energy decade. The talys code was used to describe the average cross sections in the URR; the Maxwellian-averaged cross sections (MACSs) of ^{185}Re and ^{187}Re are given from kT=5 to 100 keV. At a thermal energy of kT=30 keV, the MACS value for ^{185}Re (1469±127 mb) is in good agreement with the Karlsruhe Astrophysical Database of Nucleosynthesis in Stars (KADoNIS) recommended value (1535±62 mb) within the error bars. By contrast, the value of 1361±118 mb for ^{187}Re shows a discrepancy with the KADoNiS recommended value (1160±57 mb).

Subjects

Subjects :
Physics
QC1-999

Details

Language :
English
ISSN :
26431564
Volume :
6
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Physical Review Research
Publication Type :
Academic Journal
Accession number :
edsdoj.1fe1d6fac2e84a4ba08b47441e56e9b0
Document Type :
article
Full Text :
https://doi.org/10.1103/PhysRevResearch.6.013225