English

Characterizing the nuclear models informed by PREX and CREX: a view from Bayesian inference

Nuclear Theory 2025-09-03 v2 Solar and Stellar Astrophysics

Abstract

New measurements of the weak charge density distributions of 48^{48}Ca and 208^{208}Pb challenge existing nuclear models. In the post-PREX-CREX era, it is unclear if current models can simultaneously describe weak charge distributions along with accurate measurements of binding energy and charge radii. In this letter, we explore the parameter space of relativistic and non-relativistic models to study the differences between the electric and weak form factors, ΔF=FchFW\Delta F=F_{ch}-F_{W}, in 48^{48}Ca and 208^{208}Pb. We show, for the first time, which aspects of mean-field models are the most important in determining the relative magnitude of the neutron skin in lead and calcium nuclei. We carefully disentangle the tension between the PREX-2/CREX constraints and the ability of the RMF and Skyrme models to accurately describe binding energies and charge radii. We find that the nuclear symmetry energy coefficient SVS_V and the isovector spin-orbit coefficient b4b'_4 play different roles in determining ΔF\Delta F of 48^{48}Ca and 208^{208}Pb. Consequently, adjusting SVS_V or b4b'_4 shifts predicted ΔF\Delta F values toward or away from PREX-2/CREX measurements. Additionally, SVS_V and the slope L are marginally correlated given the prior constraints of our Bayesian inference, allowing us to infer them separately from PREX-2/CREX data.

Keywords

Cite

@article{arxiv.2406.05267,
  title  = {Characterizing the nuclear models informed by PREX and CREX: a view from Bayesian inference},
  author = {Tianqi Zhao and Zidu Lin and Bharat Kumar and Andrew W. Steiner and Madappa Prakash},
  journal= {arXiv preprint arXiv:2406.05267},
  year   = {2025}
}

Comments

6 pages, 3 figures in the letter, 11 pages, 10 figures in the supplemental material

R2 v1 2026-06-28T16:57:53.271Z