arXiv · 0709.1743
Experimental evidence of a natural parity state in $^{26}$Mg and its impact to the production of neutrons for the s process
Abstract
We have studied natural parity states in $^{26}$Mg via the $^{22}$Ne($^{6}$Li,d)$^{26}$Mg reaction. Our method significantly improves the energy resolution of previous experiments and, as a result, we report the observation of a natural parity state in $^{26}$Mg. Possible spin-parity assignments are suggested on the basis of published $γ$-ray decay experiments. The stellar rate of the $^{22}$Ne($α$,$γ$)$^{26}$Mg reaction is reduced and may give rise to an increase in the production of s-process neutrons via the $^{22}$Ne($α$,n)$^{25}$Mg reaction.
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C. Ugalde, A. E. Champagne, S. Daigle, C. Iliadis, R. Longland, J. R. Newton, E. Osenbaugh-Stewart, J. A. Clark, C. Deibel, A. Parikh, P. D. Parker, C. Wrede. 2007-09-12. Experimental evidence of a natural parity state in $^{26}$Mg and its impact to the production of neutrons for the s process. https://doi.org/10.1103/physrevc.76.025802
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