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Benchmarking the extraction of statistical neutron capture cross sections on short-lived nuclei for applications using the β-Oslo method

Authors :
Therese Renstrøm
S. J. Quinn
V. W. Ingeberg
F. Naqvi
Fabio Zeiser
B. V. Kheswa
E. Sahin
R. Lewis
Magne Guttormsen
S. J. Rose
L. Crespo Campo
D. L. Bleuel
Trine Wiborg Hagen
S. Mosby
C. J. Prokop
Ann-Cecilie Larsen
Sean Liddick
F. L. Bello Garrote
J. E. Midtbø
K. Hadynska-Klek
Andreas Görgen
M. Wiedeking
A. Spyrou
Aaron Couture
B. P. Crider
Alexander Dombos
F. Giacoppo
Gry Merete Tveten
Sunniva Siem
G. Perdikakis
Source :
Physical Review C
Publication Year :
2019
Publisher :
American Physical Society, 2019.

Abstract

Numerous scientific fields including astrophysics, nuclear power, and nuclear forensics require a knowledge of basic nuclear properties for large numbers of short-lived, radioactive isotopes far removed from stable nuclei. Neutron-capture cross sections are one such piece of nuclear data where direct measurements are not possible and theoretical predictions can vary by orders of magnitude. A recently developed indirect technique for inferring neutron capture rates, the β -Oslo method, has been introduced but not compared against a known, directly measured neutron capture cross section. To provide this benchmark, two indirect methods based on β decay and charged-particle reactions were used to extract the nuclear level density and γ -ray strength function of 51 Ti . The nuclear level density and γ -ray strength function from the two data sets were found to be equivalent and were used to extract the neutron capture cross section of 50 Ti which agrees with previous direct measurements at high neutron energies. The results demonstrate the validity of the β -Oslo method for extracting neutron capture cross sections of short-lived nuclei and provide a sufficiently small uncertainty to be used in various applications.

Details

ISSN :
05562813
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi.dedup.....135f6be119795e752a9bae761565abbd