English

Non-leptonic two-body decays of $\Lambda_b^0$ in light-front quark model

High Energy Physics - Phenomenology 2021-02-12 v1 High Energy Physics - Experiment

Abstract

We study the non-leptonic two-body weak decays of Λb0pM\Lambda_b^0 \to p M with M=(π,K) M=(\pi^-,K^-) and (ρ,K)(\rho^-,K^{*-}) in the light-front quark model under the generalized factorization ansatz. By considering the Fermi statistic between quarks and determining spin-flavor structures in baryons, we calculate the branching ratios (B{\cal B}s) and CP-violating rate asymmetries (ACP\mathcal{A}_{CP}s) in the decays. Explicitly, we find that B(Λb0pπ,pK)=(4.18±0.15±0.30,5.76±0.88±0.23)×106{\cal B}( \Lambda_b^0 \to p \pi^- ,pK^-)=(4.18\pm0.15\pm0.30, 5.76\pm0.88\pm0.23)\times10^{-6} and ACP(Λb0pπ,pK)=(3.60±0.14±0.14,6.36±0.21±0.18)%{\mathcal{A}_{CP}}( \Lambda_b^0 \to p \pi^- ,\,pK^-)=(-3.60\pm0.14\pm0.14, 6.36\pm0.21\pm0.18)\% in comparison with the data of B(Λb0pπ,pK)=(4.5±0.8,5.4±1.0)×106{\cal B}( \Lambda_b^0 \to p \pi^- ,pK^-)=(4.5\pm0.8, 5.4\pm1.0)\times10^{-6} and ACP(Λb0pπ,pK)=(2.5±2.9,2.5±2.2)%{\mathcal{A}_{CP}}( \Lambda_b^0 \to p \pi^- ,pK^-)=(-2.5\pm 2.9, -2.5\pm2.2)\% given by the Particle Data Group, respectively. We also predict that B(Λb0pρ,pK)=(12.13±3.27±0.91,2.58±0.87±0.13)×106{\cal B}( \Lambda_b^0 \to p \rho^-,pK^{*-} )=(12.13\pm3.27\pm0.91, 2.58\pm0.87\pm0.13)\times 10^{-6} and ACP(Λb0pρ,pK)=(3.32±0.00±0.14,19.25±0.00±0.80)%{\mathcal{A}_{CP}}( \Lambda_b^0 \to p \rho^-,pK^{*-} )=(-3.32\pm0.00\pm0.14,19.25\pm0.00\pm0.80)\%, which could be observed by the experiments at LHCb.

Keywords

Cite

@article{arxiv.2102.01552,
  title  = {Non-leptonic two-body decays of $\Lambda_b^0$ in light-front quark model},
  author = {C. Q. Geng and Chia-Wei Liu and Tien-Hsueh Tsai},
  journal= {arXiv preprint arXiv:2102.01552},
  year   = {2021}
}

Comments

16 pages, 1 figure, accepted for publication in PLB. arXiv admin note: text overlap with arXiv:2002.10612