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Spectroscopic study of the radionuclide Na21 for the astrophysical F17(α,p)Ne20 reaction rate

Authors :
B. Manning
M. E. Howard
R. L. Kozub
S. M. Cha
Steven D. Pain
S. T. Pittman
W. A. Peters
Kelly Chipps
J. A. Cizewski
M. Matos
Michael Scott Smith
Kyujin Kwak
D. W. Bardayan
Sunghoon Ahn
K. Y. Chae
Patrick O'Malley
Andrew Ratkiewicz
S. Strauss
Source :
Physical Review C. 96
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

The $^{24}\mathrm{Mg}(p,\ensuremath{\alpha})^{21}\mathrm{Na}$ reaction was measured at the Holifield Radioactive Ion Beam Facility of the Oak Ridge National Laboratory to study the spectroscopy of the radionuclide $^{21}\mathrm{Na}$. A 31-MeV proton beam from the 25 MV tandem accelerator bombarded isotopically enriched $^{24}\mathrm{Mg}$ targets. Recoiling $^{4}\mathrm{He}$ particles were identified by an annular silicon strip detector array. Two energy levels at ${E}_{x}=6.594$ and 7.132 MeV were observed for the first time. By comparing the experimentally obtained angular distributions and distorted wave Born approximation calculations, the spins and parities of $^{21}\mathrm{Na}$ energy levels were constrained. The astrophysically-important $^{17}\mathrm{F}(\ensuremath{\alpha},p)^{20}\mathrm{Ne}$ reaction rate was also calculated for the first time using resonance parameters for 12 energy levels.

Details

ISSN :
24699993 and 24699985
Volume :
96
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........98d99266fb1e24630bf6b4f664b495eb
Full Text :
https://doi.org/10.1103/physrevc.96.025810