English

Reaction cross section of proton scattering consistent with PREX-II (published in Results in Physics)

Nuclear Theory 2025-07-01 v4

Abstract

Background: The neutron skin thickness RskinPVR_{\rm skin}^{\rm PV} of PREX-II is presented in Phys. Rev. Lett. {\bf 126}, 172502 (2021). The reaction cross section σR\sigma_R is useful to determine the matter radius RmR_m and RskinR_{\rm skin}. For proton scattering, the reaction cross section σR\sigma_R are available for Ein>400E_{\rm in} > 400 MeV. Method and results: We determine Rnexp=5.727±0.071R_n^{\rm exp}=5.727 \pm 0.071 fm and Rmexp=5.617±0.044R_m^{\rm exp}=5.617 \pm 0.044 fm from RpexpR_p^{\rm exp} = 5.444 fm and RskinPVR_{\rm skin}^{\rm PV}. The RpGHFBR_p^{\rm GHFB} calculated with D1S-GHFB with the angular momentum projection (AMP). agrees with RpexpR_p^{\rm exp}. The neutron density calculated with GHFB+AMP is scaled so as to Rnscaling=5.727R_n^{\rm scaling}=5.727 fm. The Love-Franey tt-matrix model with the scaled densities reproduces the data on σR\sigma_R. Aim: Our aim is to find the σR\sigma_R of proton scattering consistent with RskinPVR_{\rm skin}^{\rm PV}. Conclusion: The σR\sigma_R of proton scattering consistent with RskinPVR_{\rm skin}^{\rm PV} are σRexp\sigma_R^{\rm exp} at Ein=534.1,549,806E_{\rm in} = 534.1, 549, 806 MeV.

Keywords

Cite

@article{arxiv.2105.08903,
  title  = {Reaction cross section of proton scattering consistent with PREX-II (published in Results in Physics)},
  author = {Tomotsugu Wakasa and Shingo Tagami and Jun Matsui and Masanobu Yahiro and Maya Takechi},
  journal= {arXiv preprint arXiv:2105.08903},
  year   = {2025}
}

Comments

arXiv admin note: text overlap with arXiv:2010.02450