English

Proton-Neutron Pairing in N=Z Nuclei within the Quark-Meson-Coupling Energy Density Functional

Nuclear Theory 2026-03-27 v1

Abstract

We investigate the impact of isovector and isoscalar proton-neutron pairing correlations on the ground-state properties of even-even N=Z nuclei with mass numbers between A=16 and A=120. Nuclear mean fields are generated using the quark-meson coupling (QMC) energy density functional, while pairing correlations are treated within the quartet condensation model (QCM). Ground-state energies are obtained from axially deformed, self-consistent QMC+QCM calculations employing a zero-range pairing interaction with a density-dependent term derived consistently within the QMC framework. We show that proton-neutron pairing provides a significant contribution to the binding energies of N=Z nuclei, leading to improved agreement with experimental data.

Keywords

Cite

@article{arxiv.2603.25359,
  title  = {Proton-Neutron Pairing in N=Z Nuclei within the Quark-Meson-Coupling Energy Density Functional},
  author = {T. Popa and N. Sandulescu and D. Gambacurta},
  journal= {arXiv preprint arXiv:2603.25359},
  year   = {2026}
}

Comments

25 pages, 15 figures