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Total absorption γ -ray spectroscopy of the β -delayed neutron emitters Br87 , Br88 , and Rb94

Authors :
Stephen Rice
Viki-Veikko Elomaa
L. Batist
A. Porta
B. Gomez-Hornillos
T. Martinez
V. Gorlichev
P. H. Regan
D. Cano-Ott
E. Valencia
V. M. Bui
J. L. Tain
M. Fallot
E. Mendoza
Juha Äystö
P. J. R. Mason
M. Bowry
A. A. Sonzogni
A.-A. Zakari-Issoufou
Mikael Reponen
F. G. Kondev
Volker Sonnenschein
B. Rubio
W. Gelletly
M. D. Jordan
Juho Rissanen
Ari Jokinen
Heikki Penttilä
Iain Moore
Zsolt Podolyak
G. F. Farrelly
Alejandro Algora
E. Estevez
Veli Kolhinen
Tommi Eronen
Jani Hakala
A. R. García
R. Caballero-Folch
J. Agramunt
Source :
Physical Review C. 95
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

We investigate the decay of 87,88Br and 94Rb using total absorption γ -ray spectroscopy. These important fission products are β-delayed neutron emitters. Our data show considerable βγ intensity, so far unobserved in high-resolution γ -ray spectroscopy, from states at high excitation energy. We also find significant differences with the β intensity that can be deduced from existing measurements of the β spectrum. We evaluate the impact of the present data on reactor decay heat using summation calculations. Although the effect is relatively small it helps to reduce the discrepancy between calculations and integral measurements of the photon component for 235U fission at cooling times in the range 1–100 s. We also use summation calculations to evaluate the impact of present data on reactor antineutrino spectra. We find a significant effect at antineutrino energies in the range of 5 to 9 MeV. In addition, we observe an unexpected strong probability for γ emission from neutron unbound states populated in the daughter nucleus. The γ branching is compared to Hauser-Feshbach calculations, which allow one to explain the large value for bromine isotopes as due to nuclear structure. However the branching for 94Rb, although much smaller, hints of the need to increase the radiative width γ by one order of magnitude. This increase in γ would lead to a similar increase in the calculated (n,γ ) cross section for this very neutron-rich nucleus with a potential impact on r process abundance calculations.

Details

ISSN :
24699993 and 24699985
Volume :
95
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........51ab94a987d3f6ab06180bf5407fe772
Full Text :
https://doi.org/10.1103/physrevc.95.024320