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Single-particle shell strengths near the doubly magic nucleus 56Ni and the 56Ni(p,γ)57Cu reaction rate in explosive astrophysical burning

Authors :
A. Estrade
W.-J. Ong
E. Lunderberg
Philip Woods
D. Bazin
R. G. T. Zegers
Alexandra Gade
D. Kahl
D. Weisshaar
Claudia Lederer-Woods
Brenden Longfellow
T. Poxon-Pearson
J. Pereira
Hendrik Schatz
Fernando Montes
P. C. Bender
Brandon Elman
S. Lipschutz
S. J. Lonsdale
Thomas Baumann
R. Taverner
Anu Kankainen
C. Sullivan
Filomena Nunes
G. Perdikakis
B. A. Brown
J. Belarge
Source :
Physics Letters B, Vol 797, Iss, Pp-(2019), Kahl, D, Woods, P J, Poxon-Pearson, T, Nunes, F M, Brown, B A, Schatz, H, Baumann, T, Bazin, D, Belarge, J A, Bender, P C, Elman, B, Estrade, A, Gade, A, Kankainen, A, Lederer-Woods, C, Lipschutz, S, Longfellow, B, Lonsdale, S-J, Lunderberg, E, Montes, F, Ong, W J, Perdikakis, G, Pereira, J, Sullivan, C, Taverner, R, Weisshaar, D & Zegers, R 2019, ' Single-particle shell strengths near the doubly magic nucleus 56Ni and the 56Ni(p,γ)57Cu reaction rate in explosive astrophysical burning ', Physics Letters B, vol. 797 . https://doi.org/10.1016/j.physletb.2019.134803
Publication Year :
2019
Publisher :
Elsevier, 2019.

Abstract

Angle-integrated cross-section measurements of the $^{56}$Ni(d,n) and (d,p) stripping reactions have been performed to determine the single-particle strengths of low-lying excited states in the mirror nuclei pair $^{57}$Cu-$^{57}$Ni situated adjacent to the doubly magic nucleus $^{56}$Ni. The reactions were studied in inverse kinematics utilizing a beam of radioactive $^{56}$Ni ions in conjunction with the GRETINA $\gamma$-array. Spectroscopic factors are compared with new shell-model calculations using a full $pf$ model space with the GPFX1A Hamiltonian for the isospin-conserving strong interaction plus Coulomb and charge-dependent Hamiltonians. These results were used to set new constraints on the $^{56}$Ni(p,$\gamma$)$^{57}$Cu reaction rate for explosive burning conditions in x-ray bursts, where $^{56}$Ni represents a key waiting point in the astrophysical rp-process.<br />Comment: Final version accepted and published. 5 pages, 2 figures

Details

Language :
English
ISSN :
03702693
Volume :
797
Database :
OpenAIRE
Journal :
Physics Letters B
Accession number :
edsair.doi.dedup.....d1331481ef26a530670a3e398ebfef1b