Neutron spectroscopy of Mg states: constraining the stellar neutron source Ne()Mg
arXiv:1702.04520 · doi:10.1016/j.physletb.2017.02.025
Abstract
This work reports on accurate, high-resolution measurements of the Mg()Mg and Mg() cross sections in the neutron energy range from thermal to about 300 keV, leading to a significantly improved Mg()Mg parametrization. The relevant resonances for Mg were characterized from a combined R-matrix analysis of the experimental data. This resulted in an unambiguous spin/parity assignment of the corresponding excited states in Mg. With this information experimental upper limits of the reaction rates for Ne()Mg and Ne()Mg were established, potentially leading to a significantly higher ()/() ratio than previously evaluated. The impact of these results have been studied for stellar models in the mass range 2 to 25 .
Preprint, 6 pages, 5 figures
References in corpus (1)
Cited by in corpus (4)
- Rubidium and zirconium abundances in massive Galactic asymptotic giant branch stars revisited
- The 95zr(n, gamma)96zr cross section from the surrogate ratio method and its effect on the s-process nucleosynthesis
- He-accreting WD: Nucleosynthesis in the extreme binary system (1.02+0.30) M
- Experimental nuclear astrophysics in Italy