Isospin symmetry breaking in atomic nuclei

Fuente: arXiv
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Auteurs principaux: Sheikh, J. A., Rouoof, S. P., Ali, R. N., Rather, N., Sarma, Chandan, Srivastava, P. C.
Format: Preprint
Publié: 2024
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author Sheikh, J. A.
Rouoof, S. P.
Ali, R. N.
Rather, N.
Sarma, Chandan
Srivastava, P. C.
author_facet Sheikh, J. A.
Rouoof, S. P.
Ali, R. N.
Rather, N.
Sarma, Chandan
Srivastava, P. C.
contents The importance of the isospin symmetry and its breaking in elucidating the properties of atomic nuclei is reviewed. The quark mass splitting and the electromagnetic origin of the isospin symmetry breaking (ISB) for nuclear many-body problem is discussed. The experimental data on isobaric analogue states cannot be described only with the Coulomb interaction, and ISB terms in the nucleon-nucleon interaction are needed to discern the observed properties. In the present work, the ISB terms are explicitly considered in nuclear energy density functional and spherical shell model approaches, and a detailed investigation of the analogue states and other properties of nuclei is performed. It is observed that isospin mixing is largest for the $N=Z$ system in the density functional approach.
format Preprint
id arxiv_https___arxiv_org_abs_2405_04946
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Isospin symmetry breaking in atomic nuclei
Sheikh, J. A.
Rouoof, S. P.
Ali, R. N.
Rather, N.
Sarma, Chandan
Srivastava, P. C.
Nuclear Theory
The importance of the isospin symmetry and its breaking in elucidating the properties of atomic nuclei is reviewed. The quark mass splitting and the electromagnetic origin of the isospin symmetry breaking (ISB) for nuclear many-body problem is discussed. The experimental data on isobaric analogue states cannot be described only with the Coulomb interaction, and ISB terms in the nucleon-nucleon interaction are needed to discern the observed properties. In the present work, the ISB terms are explicitly considered in nuclear energy density functional and spherical shell model approaches, and a detailed investigation of the analogue states and other properties of nuclei is performed. It is observed that isospin mixing is largest for the $N=Z$ system in the density functional approach.
title Isospin symmetry breaking in atomic nuclei
topic Nuclear Theory
url https://arxiv.org/abs/2405.04946