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Determining therp-Process Flow throughNi56: Resonances inCu57(p,γ)Zn58Identified with GRETINA

Authors :
Shumpei Noji
Filomena Nunes
J. Stevens
J. Wheeler
Richard H. Cyburt
C. Langer
H. L. Crawford
S. J. Quinn
Michael S. Smith
Alexandra Gade
S. R. Stroberg
J. Browne
Hendrik Schatz
D. W. Bardayan
Kathrin Wimmer
R. G. T. Zegers
E. Lunderberg
A. Nystrom
F. Recchia
G. Perdikakis
A. Spyrou
C. Domingo-Pardo
D. Weisshaar
Antonios Kontos
A. Lemasson
Z. Meisel
B. A. Brown
Sebastian George
Ani Aprahamian
Anna Simon
P. Hosmer
D. Bazin
M. Scott
Fernando Montes
I. Y. Lee
K. Siegl
Yukie Maeda
M. Matos
Laurens Keek
J. Pereira
Source :
Physical Review Letters. 113
Publication Year :
2014
Publisher :
American Physical Society (APS), 2014.

Abstract

An approach is presented to experimentally constrain previously unreachable (p, γ) reaction rates on nuclei far from stability in the astrophysical rp process. Energies of all critical resonances in the (57)Cu(p,γ)(58)Zn reaction are deduced by populating states in (58)Zn with a (d, n) reaction in inverse kinematics at 75 MeV/u, and detecting γ-ray-recoil coincidences with the state-of-the-art γ-ray tracking array GRETINA and the S800 spectrograph at the National Superconducting Cyclotron Laboratory. The results reduce the uncertainty in the (57)Cu(p,γ) reaction rate by several orders of magnitude. The effective lifetime of (56)Ni, an important waiting point in the rp process in x-ray bursts, can now be determined entirely from experimentally constrained reaction rates.

Details

ISSN :
10797114 and 00319007
Volume :
113
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........979a4368d425569408ab2d1cbdd11541