English

Experimental study of $\alpha$-induced reactions on $^{113}$In for astrophysical $p$-process

Nuclear Experiment 2024-01-15 v1 Solar and Stellar Astrophysics

Abstract

Neutron deficient nuclei from 74^{74}Se196-^{196}Hg are thought to be produced by γ\gamma-induced reactions (γ\gamma,n), (γ\gamma,p) and (γ,α\gamma,\alpha) processes. The relatively high abundance of 113^{113}In odd A pp-nuclei has inspired to study its production processes. As reaction with γ\gamma-beam is difficult to perform in the laboratory, γ\gamma-induced reaction rate is calculated from the inverse reaction data employing reciprocity theorem. Stacked foil activation method was used to measure the 113^{113}In(α,γ\alpha,\gamma) and 113^{113}In(α\alpha, n) reactions cross-section near the astrophysical energies. Theoretical statistical model calculations were performed with different nuclear input parameters and compared with the experimental results. An appropriate α\alpha-optical potential has been identified from the (α,γ\alpha,\gamma) and (α\alpha, n) fitting, which provides the major source of uncertainty in the statistical model calculations. The other nuclear input parameters like level density, and γ\gamma-ray strength function were also constrained for theoretical calculations. 113^{113}In(α,γ\alpha,\gamma)117^{117}Sb and 117^{117}Sb(α,γ\alpha,\gamma)113^{113}In reaction rates were calculated using best-fitted input parameters.

Keywords

Cite

@article{arxiv.2401.06478,
  title  = {Experimental study of $\alpha$-induced reactions on $^{113}$In for astrophysical $p$-process},
  author = {Dipali Basak and Tanmoy Bar and Abhijit Roy and Lalit Kumar Sahoo and Sukhendu Saha and Jagannath Datta and Sandipan Dasgupta and Chinmay Basu},
  journal= {arXiv preprint arXiv:2401.06478},
  year   = {2024}
}