Cross section of -induced reactions on Au at sub-Coulomb energies
arXiv:1910.09888 · doi:10.1103/PhysRevC.100.065803
Abstract
Statistical model calculations have to be used for the determination of reaction rates in large-scale reaction networks for heavy-element nucleosynthesis. A basic ingredient of such a calculation is the a-nucleus optical model potential. Several different parameter sets are available in literature, but their predictions of a-induced reaction rates vary widely, sometimes even exceeding one order of magnitude. This paper presents the result of a-induced reaction cross-section measurements on gold which could be carried out for the first time very close to the astrophysically relevant energy region. The new experimental data are used to test statistical model predictions and to constrain the a-nucleus optical model potential. For the measurements the activation technique was used. The cross section of the (a,n) and (a,2n) reactions was determined from g-ray counting, while that of the radiative capture was determined via X-ray counting. The cross section of the reactions was measured below E~MeV. In the case of the Au(a,2n)Tl reaction down to 17.5~MeV with 0.5-MeV steps, reaching closer to the reaction threshold than ever before. The cross section of Au(a,n)Tl and Au(a,g)Tl was measured down to E and 14.0~MeV, respectively, with 0.5-MeV steps above the (a,2n) reaction threshold and with 1.0-MeV steps below that. The new dataset is in agreement with the available values from the literature, but is more precise and extends towards lower energies. Two orders of magnitude lower cross sections were successfully measured than in previous experiments which used g-ray counting only, thus providing experimental data at lower energies than ever before. The new precision dataset allows us to find the best-fit a-nucleus optical model potential and to predict cross sections in the Gamow window with smaller uncertainties.
Accepted for publication in Phys. Rev. C
References in corpus (11)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Further explorations of the alpha-particle optical model potential at low energies for the mass range A=45-209
- The activation method for cross section measurements in nuclear astrophysics
- Uncertainties in the production of p nuclides in thermonuclear supernovae determined by Monte Carlo variations
- Alpha induced reaction cross section measurements on 162Er for the astrophysical gamma process
- Test of statistical model cross section calculations for -induced reactions on Ag at energies of astrophysical interest
- Statistical model analysis of -induced reaction cross sections of Zn at low energies
- -scattering and -induced reaction cross sections of Zn at low energies
- Cross section of -induced reactions on iridium isotopes obtained from thick target yield measurement for the astrophysical process
- Experimental study of the astrophysical gamma-process reaction 124Xe(alpha,gamma)128Ba
- Cross sections at sub-Coulomb energies: full optical model vs.\ barrier transmission for Ca +