Charmed baryon decays: $SU(3)_F$ breaking and CP violation
Chang Yang, Xiao-Gang He, Chia-Wei Liu

TL;DR
This paper analyzes anti-triplet charmed baryon decays using $SU(3)_F$ symmetry, fitting experimental data, exploring symmetry breaking, and predicting CP violation effects up to $10^{-3}$ in key decay channels.
Contribution
It provides a comprehensive $SU(3)_F$ symmetry analysis with a minimal set of decay amplitudes and predicts enhanced CP violation in charmed baryon decays.
Findings
Global fit yields $ ext{chi}^2$/d.o.f. of 2.36
Discrepancies in certain branching fractions exceeding $2\sigma$
Predicted CP asymmetries up to $10^{-3}$ in golden channels
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 .…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Computational Physics and Python Applications · International Science and Diplomacy
