English

Study of $B_{(s)} \to (\pi\pi)(K\pi)$ decays in the perturbative QCD approach

High Energy Physics - Phenomenology 2021-09-16 v2

Abstract

In this work, we provide estimates of the branching ratios, direct CPCP asymmetries and triple product asymmetries in B(s)(ππ)(Kπ)B_{(s)} \to (\pi\pi)(K\pi) decays in the perturbative QCD approach, where the ππ\pi\pi and KπK\pi invariant mass spectra are dominated by the vector resonances ρ(770)\rho(770) and K(892)K^*(892), respectively. Some scalar backgrounds, such as f0(500,980)ππf_0(500,980) \to \pi\pi and K0(1430)KπK^*_0(1430) \to K\pi are also accounted for. The ρ(700)\rho(700) is parametrized by the Gounaris-Sakurai function. The relativistic Breit-Wigner formula for the f0(500)f_0(500) and Flatt\'e model for the f0(980)f_0(980) are adopted to parameterize the time-like scalar form factors FS(ω2)F_S(\omega^2). We also use the D.V. Bugg model to parameterize the f0(500)f_0(500) and compare the relevant theoretical predictions from different models. While in the region of KπK\pi invariant mass, the K0(1430)K^*_0(1430) is described with the LASS lineshape and the K(892)K^*(892) is modeled by the Breit-Wigner function. We find that the decay rates for the considered decay modes agree with currently available data within errors. As a by-product, we extract the branching ratios of two-body decays B(s)ρ(770)K(892)B_{(s)} \to \rho(770)K^*(892) from the corresponding four-body decay modes and calculate the relevant polarization fractions. Our prediction of longitudinal polarization fraction for B0ρ(770)0K(892)0B^0\to \rho(770)^0 K^*(892)^0 decay deviates a lot from the recent LHCb measurement, which should be resolved. It is shown that the direct CPCP asymmetries are large due to the sizable interference between the tree and penguin contributions, but they are small for the tree-dominant or penguin-dominant processes. The PQCD predictions for the triple product asymmetries are small which are expected in the standard model, and consistent with the current data reported by the LHCb Collaboration.Our results can be tested by the future precise data from the LHCb and Belle II experiments.

Keywords

Cite

@article{arxiv.2107.10684,
  title  = {Study of $B_{(s)} \to (\pi\pi)(K\pi)$ decays in the perturbative QCD approach},
  author = {Ya Li and Da-Cheng Yan and Zhou Rui and Zhen-Jun Xiao},
  journal= {arXiv preprint arXiv:2107.10684},
  year   = {2021}
}

Comments

29 pages, 2 figures