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arXiv:2106.00151·v1·Nuclear Theory

Isotopic analysis of 295 MeV proton scattering off Pb for improvement of neutron densities and radii

Yoshiko Kanada-En'yo

Abstract

A new method of reaction analysis for proton elastic scattering is proposed, combining systematic analyses of nuclear structure and reactions in a series of isotopes. This method is applied to Pb, Pb, and Pb at MeV to obtain improved neutron densities and radii from experimental cross section data. The reaction calculation is performed according to the relativistic impulse approximation using the modified Murdock and Horowitz model with density-dependent effective interaction. Analysis of Pb isotopes is performed using theoretical densities given by the relativistic Hartree-Bogoliubov and nonrelativistic Skyrme Hartree-Fock-Bogoliubov calculations and the experimental density extracted from the data at 295 MeV. The isotopic ratios () of the Pb-to-Pb cross sections are analyzed in connection with the isotopic differences ( and ) in neutron densities and radii between Pb and Pb. A hole-model analysis is performed, assuming Pb and Pb as a Pb core and neutron holes to clarify the one-to-one correspondence between isotopic structure properties such as and and the isotopic cross-section ratio. By fitting , the values of and are extracted from the experimental cross section data with less uncertainty of the structure and reaction models. The isotopic neutron radius difference between Pb and Pb was obtained as fm with an acceptable range of fm.

Comments: 20 pages, 24 figures

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