English

Radiative proton capture on $^{15}\mathrm{N}$ within effective field theory

Nuclear Theory 2024-01-31 v2 Nuclear Experiment

Abstract

The astrophysical SS factor for the radiative proton capture process on the 15N^{15}\mathrm{N} nucleus, i.e., 15N(p,γ)16O^{15}\mathrm{N}(p, \gamma)^{16}\mathrm{O}, at stellar energies are studied within the framework of the cluster effective field theory. The thermonuclear 15N(p,γ)16O^{15}\mathrm{N}(p, \gamma)^{16}\mathrm{O} reaction links the type-I to type-II cycles of the carbon-nitrogen-oxygen cycle and affects the abundances of elements in the univere. For investigating this reaction in the effective field theory formalism, we first construct an effective Lagrangian that is appropriate for this reaction at low-energies. Since the intermediate excited states of the 16O^{16}\mathrm{O} nucleus have a crucial role in this reaction, we include these resonances in the formalism. The corresponding radiative capture amplitudes and cross section are calculated, which lead to the astrophysical SS factor. The low energy constants introduced in the effective Lagrangian are determined by fitting the theoretical results to the observed SS factors in the range of 130 keV<Ep<2500 keV130~\mathrm{keV} < E_p < 2500~\mathrm{keV} using three different experimental data sets. Considering the recent data sets, we obtain S(0)=29.8\mbox34.1 keV bS(0) = 29.8\mbox{-}34.1~\mathrm{keV\ b}, which is in a good agreement with the estimates from RR-matrix approaches in the literature. The values of SS at the Gamow energy are found to be larger than S(0)S(0) values by about 10%10\%.

Keywords

Cite

@article{arxiv.2206.01407,
  title  = {Radiative proton capture on $^{15}\mathrm{N}$ within effective field theory},
  author = {Sangyeong Son and Shung-Ichi Ando and Yongseok Oh},
  journal= {arXiv preprint arXiv:2206.01407},
  year   = {2024}
}

Comments

12 pages, 6 figures, 3 tables, to be published in Phys. Rev. C

R2 v1 2026-06-24T11:37:56.909Z