Neutron skin thickness of Pb, Sn, and Ca determined from reaction cross sections of He scattering
arXiv:2107.06441 · doi:10.1103/PhysRevC.104.054613
Abstract
[Background] We constructed the Kyushu chiral -matrix and confirmed its reliability at ~MeV and ~MeV for C scattering. Reaction cross section data of He scattering are available for some nuclides including Pb. PREX II collaboration reported a thick neutron skin for Pb. [Purpose] Our purpose is to deduce neutron skin thicknesses of Pb and some other nuclides from reaction cross sections calculated in terms of the double folding model with the -matrix. [Methods] We fold the -matrix and densities given by mean field calculations. In order to remedy less-constrainedness of the neutron sector, we renormalize densities so as to reproduce the observed cross sections. [Results] We found that a 3.4~ renormalization is necessary for Pb. The neutron density obtained from renormalization results in 0.4160.146 fm by confronting the precision proton radius. [Conclusions] Our result is consistent with PREX II and therefore supports larger slope parameter . Results for Ca and Sn are also consistent with deduced from other experiments. For Sn the present method gives thicker skins.
arXiv admin note: substantial text overlap with arXiv:2003.06168
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