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SINGH, R. SINGH, N. CHAUHAN, R. MEHTA, M. SURYANARAYANA, S. MAKWANA, R. NAYAK, B. NAIK, H. NAG, T. KATOVSKÝ, K.
Original Title
Systematic study of the (n, 2n) reaction cross section for Sb-121 and Sb-123 isotopes
Type
journal article in Web of Science
Language
English
Original Abstract
The cross sections of the Sb-121(n, 2n) Sb-120(m) and Sb-123(n, 2n) Sb-122 reactions were measured at 12.50, 15.79 and 18.87 MeV neutron energies relative to the standard Al-27(n, alpha) Na-24 monitor reaction using neutron activation and offline gamma-ray spectrometry. Irradiation of the samples was performed at the BARC-TIFR Pelletron Linac Facility, Mumbai, India. The quasi-monoenergetic neutrons were generated via the Li-7(p, n) reaction. Statistical model calculations were performed by nuclear reaction codes TALYS (ver. 1.9) and EMPIRE (ver. 3.2.2) using various input parameters and nuclear level density models. The cross sections of the ground and the isomeric state as well as the isomeric cross section ratio were studied theoretically from reaction threshold to 26 MeV energies. The effect of preequilibrium emission is also discussed in detail using different theoretical models. The present measured cross sections were discussed and compared with the reported experimental data and evaluation data of the JEFF-3.3, ENDF/B-VIII.0, JENDL/AD-2017 and TENDL-2019 libraries. A detailed analysis of the uncertainties in the measured cross section data was performed using the covariance analysis method. Furthermore, a systematic study of the (n, 2n) reaction cross section for Sb-121 and Sb-123 isotopes was also performed within 14-15 MeV neutron energies using various systematic formulae. This work helps to overcome discrepancies in Sb data and illustrate a better understanding of pre-equilibrium emission in the (n, 2n) reaction channel.
Keywords
antimony; (n, 2n) reaction cross section; Li-7(p, n) reaction neutron source; neutron activation and offline gamma-ray spectrometry; systematic formulae; covariance analysis; TALYS (ver. 1.9) and EMPIRE (ver. 3.2.2) codes
Authors
SINGH, R.; SINGH, N.; CHAUHAN, R.; MEHTA, M.; SURYANARAYANA, S.; MAKWANA, R.; NAYAK, B.; NAIK, H.; NAG, T.; KATOVSKÝ, K.
Released
8. 5. 2022
Publisher
IOP Publishing Ltd
Location
BEIJING, CHINA
ISBN
1674-1137
Periodical
CHINESE PHYS C
Year of study
46
Number
5
State
People's Republic of China
Pages from
054002-1
Pages to
054002-18
Pages count
18
URL
https://iopscience.iop.org/article/10.1088/1674-1137/ac4a5a