English

Effective field theory for weakly bound two-neutron halo nuclei: corrections from neutron-neutron effective range

Nuclear Theory 2025-07-30 v1 Quantum Gases High Energy Physics - Theory

Abstract

Using an effective field-theoretical approach, we investigate the properties of weakly bound two-neutron halo nuclei (also known as Borromean nuclei) that do not support a low-energy ss-wave core-neutron resonance. Extending the recently formulated effective field theory for weakly bound Borromean nuclei, we incorporate corrections arising from the effective range of neutron-neutron scattering and evaluate their impact on the mean-square radii and electromagnetic response. In particular, we compute the ratio of the matter and charge radii, the shape of the E1E1 dipole strength function, and the electric polarizability. Our results indicate that these corrections remain numerically small when the two-neutron separation energy of the Borromean nucleus is much less than 1~MeV.

Keywords

Cite

@article{arxiv.2503.18519,
  title  = {Effective field theory for weakly bound two-neutron halo nuclei: corrections from neutron-neutron effective range},
  author = {Davi B. Costa and Masaru Hongo and Dam Thanh Son},
  journal= {arXiv preprint arXiv:2503.18519},
  year   = {2025}
}

Comments

26 pages, 13 figures