Electromagnetic transitions of the singly charmed baryons with spin 3/2
Abstract
We investigate the electromagnetic transitions of the singly charmed baryons with spin 3/2, based on a pion mean-field approach, also known as the chiral quark-soliton model, taking into account the rotational corrections and the effects of flavor SU(3) symmetry breaking. We examine the valence- and sea-quark contributions to the electromagnetic transition form factors and find that the quadrupole form factors of the sea-quark contributions dominate over those of the valence-quark ones in the smaller region, whereas the sea quarks only provide marginal contributions to the magnetic dipole transition form factors of the baryon sextet with spin 3/2. The effects of the flavor SU(3) symmetry breaking are in general very small except for the forbidden transition by -spin symmetry. We also discuss the widths of the radiative decays for the baryon sextet with spin 3/2, comparing the present results with those from other works.
Keywords
Cite
@article{arxiv.2101.10653,
title = {Electromagnetic transitions of the singly charmed baryons with spin 3/2},
author = {June-Young Kim and Hyun-Chul Kim and Ghil-Seok Yang and Makoto Oka},
journal= {arXiv preprint arXiv:2101.10653},
year = {2021}
}
Comments
22 pages. 9 figures