Measurements of Dy() at energies relevant for astrophysical process
arXiv:2105.07249 · doi:10.3847/1538-4357/ac00b1
Abstract
Rare information on photodisintegration reactions of nuclei with mass numbers at astrophysical conditions impedes our understanding of the origin of -nuclei. Experimental determination of the key () cross sections has been playing an important role to verify nuclear reaction models and to provide rates of relevant () reactions in -process. In this paper we report the first cross section measurements of Dy()Ho and Dy()Ho in the beam energy range of 3.4 - 7.0 MeV, partially covering the Gamow window. Such determinations are possible by using two targets with various isotopic fractions. The cross section data can put a strong constraint on the nuclear level densities and gamma strength functions for 160 in the Hauser-Feshbach statistical model. Furthermore, we find the best parameters for TALYS that reproduce the A 160 data available, Dy()Ho and Er()Tm, and recommend the constrained Ho()Dy reaction rates over a wide temperature range for -process network calculations. Although the determined Ho(, p) stellar reaction rates at the temperature of 1 to 2 GK can differ by up to one order of magnitude from the NON-SMOKER predictions, it has a minor effect on the yields of Dy and accordingly the -nuclei, Dy. A sensitivity study confirms that the cross section of Dy(, )Ho is measured precisely enough to predict yields of -nuclei in the -process.
12 pages,9 figures
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- Constraining the Synthesis of the Lightest p Nucleus 74Se
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