English

Estimates of exchange topological contributions and $CP$-violating observables in $\Lambda_b\rightarrow \Lambda \phi$ decay

High Energy Physics - Phenomenology 2023-04-03 v2 High Energy Physics - Experiment

Abstract

The penguin-dominated two-body weak decay of ΛbΛϕ\Lambda_b\rightarrow \Lambda \phi is studied based on the perturbative QCD approach. In addition to the penguin emission diagrams, the penguin exchange and WW exchange ones are also accounted for. It is found that the penguin exchange contribution is in fact important and comparable to the penguin emission one, while the WW exchange contribution is highly Cabibbo-Kobayashi-Maskawa (CKM) suppressed. The predicted branching ratio, B(ΛbΛϕ)=6.92.01.6+1.9+1.8×106\mathcal{B}(\Lambda_b\rightarrow \Lambda \phi)=6.9^{+1.9+1.8}_{-2.0-1.6}\times10^{-6}, is larger than the previous theoretical estimates but in comparison with the data from Particle Data Group at the level of 1 standard deviation. We also explore some pertinent decay asymmetry parameters that characterize the angular decay distributions. The inclusion of the WW exchange contribution provides the nonzero weak phase difference,consequently, allowing us to estimate the direct CPCP violation and true triple product asymmetries in the concerned process. The numerical results demonstrate that the direct CPCP violation is at the level of a few percent, and the true triple product asymmetries are also predicted to be tiny, of order 10210410^{-2}-10^{-4}. The observed small CPCP-violating observables have shown no significant deviations from zero. Our predictions will be subject to stringent tests with precise data from LHCb in the future.

Keywords

Cite

@article{arxiv.2210.15357,
  title  = {Estimates of exchange topological contributions and $CP$-violating observables in $\Lambda_b\rightarrow \Lambda \phi$ decay},
  author = {Zhou Rui and Jia-Ming Li and Chao-Qi Zhang},
  journal= {arXiv preprint arXiv:2210.15357},
  year   = {2023}
}

Comments

22 pages,4 figures,12 tables, matches published version in PRD

R2 v1 2026-06-28T04:38:12.304Z