English

Neutron skins: A perspective from dispersive optical models

Nuclear Theory 2024-09-24 v2

Abstract

An overview is presented of neutron skin predictions obtained using an empirical nonlocal dispersive optical model (DOM). The DOM links both scattering and bound-state experimental data through a subtracted dispersion relation which allows for fully-consistent, data-informed predictions for nuclei where such data exists. Large skins were predicted for both 48{}^{48}Ca (Rskin48=0.25±0.023R^{48}_\textrm{skin}=0.25 \pm 0.023 fm in 2017) and 208^{208}Pb (Rskin208=0.25±0.05R^{208}_\textrm{skin}=0.25 \pm 0.05 fm in 2020). While the DOM prediction in 208^{208}Pb is within 1σ\sigma of the subsequent PREX-2 measurement, the DOM prediction in 48^{48}Ca is over 2σ\sigma larger than the thin neutron skin resulting from CREX. From the moment it was revealed, the thin skin in 48{}^{48}Ca has puzzled the nuclear-physics community as no adequate theories simultaneously predict both a large skin in 208{}^{208}Pb and a small skin in 48{}^{48}Ca. The DOM is unique in its ability to treat both structure and reaction data on the same footing, providing a unique perspective on this RskinR_\textrm{skin} puzzle. It appears vital that more neutron data be measured in both the scattering and bound-state domain for 48{}^{48}Ca to clarify the situation.

Cite

@article{arxiv.2408.16097,
  title  = {Neutron skins: A perspective from dispersive optical models},
  author = {M. C. Atkinson and W. H. Dickhoff},
  journal= {arXiv preprint arXiv:2408.16097},
  year   = {2024}
}

Comments

21 pages, 9 figures, 2 tables. arXiv admin note: substantial text overlap with arXiv:1911.09020

R2 v1 2026-06-28T18:27:02.161Z