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Constraining nova observables: Direct measurements of resonance strengths in33S(p,γ)34Cl

Authors :
K. J. Nelson
D.F. Ottewell
Uwe Greife
G. Lian
W. Liu
Shawn Bishop
B. R. Fulton
C. Herlitzius
Jason A. Clark
A. Chen
D. A. Hutcheon
Z. H. Li
B. Davids
S. Sjue
E. Li
P. D. Parker
Jennifer Fallis
Alison Laird
Y. Wang
L. Martin
Anuj Parikh
Christof Vockenhuber
U. Hager
B. Guo
Jordi José
P. F. Bertone
L. Buchmann
C. M. Deibel
John D'Auria
S. Reeve
G. Christian
Chris Ruiz
A. Rojas
Christopher Wrede
K. Setoodehnia
Source :
Physical Review C. 88
Publication Year :
2013
Publisher :
American Physical Society (APS), 2013.

Abstract

The ${}^{33}$S($p,\ensuremath{\gamma}$)${}^{34}$Cl reaction is important for constraining predictions of certain isotopic abundances in oxygen-neon novae. Models currently predict as much as 150 times the solar abundance of ${}^{33}$S in oxygen-neon nova ejecta. This overproduction factor may vary by orders of magnitude due to uncertainties in the ${}^{33}$S($p,\ensuremath{\gamma}$)${}^{34}$Cl reaction rate at nova peak temperatures. Depending on this rate, ${}^{33}$S could potentially be used as a diagnostic tool for classifying certain types of presolar grains. Better knowledge of the ${}^{33}$S($p,\ensuremath{\gamma}$)${}^{34}$Cl rate would also aid in interpreting nova observations over the S-Ca mass region and contribute to the firm establishment of the maximum endpoint of nova nucleosynthesis. Additionally, the total S elemental abundance which is affected by this reaction has been proposed as a thermometer to study the peak temperatures of novae. Previously, the ${}^{33}$S($p,\ensuremath{\gamma}$)${}^{34}$Cl reaction rate had only been studied directly down to resonance energies of 432 keV. However, for nova peak temperatures of $0.2--0.4$ GK there are seven known states in ${}^{34}$Cl both below the 432-keV resonance and within the Gamow window that could play a dominant role. Direct measurements of the resonance strengths of these states were performed using the DRAGON (Detector of Recoils And Gammas of Nuclear reactions) recoil separator at TRIUMF. Additionally two new states within this energy region are reported. Several hydrodynamic simulations have been performed, using all available experimental information for the ${}^{33}$S($p,\ensuremath{\gamma}$)${}^{34}$Cl rate, to explore the impact of the remaining uncertainty in this rate on nucleosynthesis in nova explosions. These calculations give a range of $\ensuremath{\approx}$20--150 for the expected ${}^{33}$S overproduction factor, and a range of $\ensuremath{\approx}$100--450 for the ${}^{32}$S/${}^{33}$S ratio expected in ONe novae.

Details

ISSN :
1089490X and 05562813
Volume :
88
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........c5b0a543e758c8c2e81149030bd480ac
Full Text :
https://doi.org/10.1103/physrevc.88.045801