Charmed baryon decays: $SU(3)_F$ breaking and CP violation
Abstract
We present a comprehensive study of anti-triplet charmed baryon decays into octet baryons and pseudoscalar mesons using the flavor symmetry framework. By decomposing the flavor structure, all decay amplitudes are parametrized with a minimal set of irreducible amplitudes, and the K\"{o}rner-Pati-Woo theorem further reduces the number of independent parameters from the original 35 to 19 under exact symmetry when small terms proportional to are neglected. The independent number becomes 27 with leading breaking effects. A global fit to 51 experimental measurements yields a /d.o.f. of 2.36 and provides precise values for the decay amplitudes. Notable discrepancies are observed in the fitted branching fractions of and , which exceed current measurements by more than . Incorporating final-state rescattering effects to recover the main effects of terms proportional to , we predict enhanced CP violation, with reaching up to in golden channels such as and . Our analysis also finds that the branching ratio for is enhanced to due to significant cancellations.
Keywords
Cite
@article{arxiv.2506.19005,
title = {Charmed baryon decays: $SU(3)_F$ breaking and CP violation},
author = {Chang Yang and Xiao-Gang He and Chia-Wei Liu},
journal= {arXiv preprint arXiv:2506.19005},
year = {2025}
}
Comments
14 pages, 9 figures