Isospin Mixing Reveals P-30(P,Gamma)S-31 Resonance Influencing Nova Nucleosynthesis

M. B. Bennett,C. Wrede,B. A. Brown, S. N. Liddick,D. Perez-Loureiro, D. W. Bardayan,A. A. Chen,K. A. Chipps, C. Fry,B. E. Glassman, C. Langer,N. R. Larson, E. I. Mcneice,Z. Meisel, W. Ong, P. D. O'Malley,S. D. Pain,C. J. Prokop, H. Schatz, S. B. Schwartz, S. Suchyta, P. Thompson, M. Walters,X. Xu

PHYSICAL REVIEW LETTERS(2016)

引用 35|浏览2
暂无评分
摘要
The thermonuclear P-30(p,gamma)S-31 reaction rate is critical for modeling the final elemental and isotopic abundances of ONe nova nucleosynthesis, which affect the calibration of proposed nova thermometers and the identification of presolar nova grains, respectively. Unfortunately, the rate of this reaction is essentially unconstrained experimentally, because the strengths of key S-31 proton capture resonance states are not known, largely due to uncertainties in their spins and parities. Using the beta decay of Cl-31, we have observed the beta-delayed gamma decay of a S-31 state at E-x = 6390.2(7) keV, with a P-30(p,gamma)S-31 resonance energy of E-r = 259.3(8) keV, in the middle of the P-30(p,gamma)S-31 Gamow window for peak nova temperatures. This state exhibits isospin mixing with the nearby isobaric analog state at E-x = 6279.0(6) keV, giving it an unambiguous spin and parity of 3/2(+) and making it an important l = 0 resonance for proton capture on P-30.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要