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arXiv · 2606.02266

Studies of $\rm ^{144,148}Sm+α$ potential for the $p$-process nucleosynthesis

Abstract

Nucleosynthesis reaction networks leading to $p$-nuclei involve a combination of different types of photodisintegration and capture reactions, as well as $β^+$ decays or electron captures. Photodisintegration reactions involving $α$ particles present a particular interest as they serve as branching points of the reaction networks. The cross sections of these reactions depend crucially on the $α$-nucleus interaction. The $α$ optical model potential (AOMP) is determined mostly by means of experimental differential elastic scattering distributions. Several previous studies have focused on the case of $\rm ^{144}Sm$, an intriguing $p$-nucleus that is semi-magic with 82 neutrons. This work presents new experimental data on $α$ elastic and inelastic scattering on $\rm ^{148}Sm$, its closest stable isotope. Isotopic effects on the description of the AOMP are studied, as well as their consequences on the prediction of $α$-induced reaction cross sections at astrophysical energies. It is shown that the isotopic ratio for $(α,γ)$ cross sections can be multiplied up to a factor of two when these effects are included.

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BibTeXRIS

C. Soto, C. Ducoin, N. Millard-Pinard, B. M. Rebeiro, O. Stézowski, N. de Séréville, F. Hammache, A. Chalil, Y. Demane, C. Bachelet, J. -C. Thomas, M. Assié, M. Benhatchi, V. Girard-Alcindor, S. V. Harissopulos, H. Jacob, A. Lagoyannis, S. Morard, S. Nandi, J. Pépin, L. Perrot, A. M. Sánchez-Benítez, I. Stefan, T. Zanatta-Martinez. 2026-09-18. Studies of $\rm ^{144,148}Sm+α$ potential for the $p$-process nucleosynthesis. https://doi.org/10.1103/fhd5-vtkr

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