English

Three-body charmed baryon Decays with SU(3) flavor symmetry

High Energy Physics - Phenomenology 2019-04-17 v2 High Energy Physics - Experiment

Abstract

We study the three-body anti-triplet BcBnMM{\bf B_c}\to {\bf B_n}MM' decays with the SU(3)SU(3) flavor (SU(3)fSU(3)_f) symmetry, where Bc{\bf B_c} denotes the charmed baryon anti-triplet of (Ξc0,Ξc+,Λc+)(\Xi_c^0,-\Xi_c^+,\Lambda_c^+), and Bn{\bf B_n} and M(M)M(M') represent baryon and meson octets, respectively. By considering only the S-wave MMMM'-pair contributions without resonance effects, the decays of BcBnMM{\bf B_c}\to {\bf B_n}MM' can be decomposed into irreducible forms with 11 parameters under SU(3)fSU(3)_f, which are fitted by the 14 existing data, resulting in a reasonable value of χ2/d.o.f=2.8\chi^2/d.o.f=2.8 for the fit. Consequently, we find that the triangle sum rule of A(Λc+nKˉ0π+)A(Λc+pKπ+)2A(Λc+pKˉ0π0)=0{\cal A}(\Lambda_c^+\to n\bar K^0 \pi^+)-{\cal A}(\Lambda_c^+\to pK^- \pi^+)-\sqrt 2 {\cal A}(\Lambda_c^+\to p\bar K^0 \pi^0)=0 given by the isospin symmetry holds under SU(3)fSU(3)_f, where A{\cal A} stands for the decay amplitude. In addition, we predict that B(Λc+nπ+Kˉ0)=(0.9±0.8)×102{\cal B}(\Lambda_c^+\to n \pi^{+} \bar{K}^{0})=(0.9\pm 0.8)\times 10^{-2}, which is 343-4 times smaller than the BESIII observation, indicating the existence of the resonant states. For the to-be-observed BcBnMM{\bf B_c}\to {\bf B_n}MM' decays, we compute the branching fractions with the SU(3)fSU(3)_f amplitudes to be compared to the BESIII and LHCb measurements in the future.

Keywords

Cite

@article{arxiv.1810.01079,
  title  = {Three-body charmed baryon Decays with SU(3) flavor symmetry},
  author = {C. Q. Geng and Y. K. Hsiao and Chia-Wei Liu and Tien-Hsueh Tsai},
  journal= {arXiv preprint arXiv:1810.01079},
  year   = {2019}
}

Comments

14 pages, no figure, revised version accepted by PRD