English

Charmed baryon decays: $SU(3)_F$ breaking and CP violation

High Energy Physics - Phenomenology 2025-09-16 v2 High Energy Physics - Experiment

Abstract

We present a comprehensive study of anti-triplet charmed baryon decays into octet baryons and pseudoscalar mesons using the SU(3)FSU(3)_F 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 λb=VcbVub\lambda_b = V_{cb}^*V_{ub} are neglected. The independent number becomes 27 with leading SU(3)FSU(3)_F breaking effects. A global fit to 51 experimental measurements yields a χ2\chi^2/d.o.f. of 2.36 and provides precise values for the decay amplitudes. Notable discrepancies are observed in the fitted branching fractions of Ξc0Ξπ+\Xi_c^0 \to \Xi^- \pi^+ and Ξc+Ξπ+π+\Xi_c^+ \to \Xi^- \pi^+ \pi^+, which exceed current measurements by more than 2σ2\sigma. Incorporating final-state rescattering effects to recover the main effects of terms proportional to λb\lambda_b, we predict enhanced CP violation, with ACPA_{CP} reaching up to 10310^{-3} in golden channels such as Ξc0pK\Xi_c^0 \to p K^- and Ξc0Σ+π\Xi_c^0 \to \Sigma^+ \pi^-. Our analysis also finds that the branching ratio for Ξc+Λπ+\Xi_c^+ \to \Lambda \pi^+ is enhanced to (9.7±1.2)×104(9.7 \pm 1.2) \times 10^{-4} 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