A study of trends of neutron skin thickness and proton radii of mirror nuclei within the framework of covariant density functional theory

Author:

Kumar Pankaj1ORCID,Kaur Sarabjeet1ORCID,Thakur Virender2ORCID,Kumar Raj3ORCID,Dhiman Shashi K.34ORCID

Affiliation:

1. Department of Applied Sciences, CGC College of Engineering, Landran, Mohali 140307, India

2. Department of Physics, Government College Karsog, Mandi 175011, India

3. Department of Physics, Himachal Pradesh University, Summerhill, Shimla 171005, India

4. School of Applied Sciences, Himachal Pradesh Technical University, Hamirpur 177001, India

Abstract

The neutron skin of atomic nuclei impacts the structure of neutron-rich nuclei, but its accurate measurement is quite challenging. We present predictions for neutron skins and proton radii for light to medium mass nuclei by employing Covariant Density Functional Theory (CDFT) based on density-dependent meson-exchange interaction. Using our microscopic predictions, we find a linear correlation between the neutron skin and the isospin asymmetry. The calculations are also extended to find a linear relationship between proton and neutron radii of mirror nuclei. Using the charge symmetry property of nuclear forces, a correlation between the neutron skin of neutron-rich nuclei and difference between the proton radii of the corresponding mirror pair has also been investigated. The inclusion of ISB term is found to affect the mirror difference charge radii of [Formula: see text]Ca-[Formula: see text]Ni mirror pair.

Publisher

World Scientific Pub Co Pte Ltd

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