Calculation of the $B\to K_{0,2}^*(1430)f_0(980)/\sigma$ decays in the Perturbative QCD Approach
Qi-Xin Li, Lei Yang, Zhi-Tian Zou, Ying Li, Xin Liu

TL;DR
This paper calculates specific B meson decay rates involving scalar mesons using perturbative QCD, highlighting the importance of meson mixing and predicting measurable branching fractions and CP asymmetries.
Contribution
First perturbative QCD calculation of these decay modes considering scalar meson mixing, providing predictions for branching ratios and CP asymmetries.
Findings
Branching fractions predicted as 10^{-4}, 10^{-5}, 10^{-6}
Large direct CP asymmetries due to meson mixing
Results can help determine scalar meson structure and mixing angle
Abstract
Motivated by the observations of the decays and from BaBar collaboration, we study the decays in the perturbative QCD approach for the first time. In the absence of reliable nonperturbative wave functions we only assume the scalar meson and are two-quark ground states. In our calculations, these decays are all dominated by the hard-scattering emission and annihilation diagrams, while the factorizable emission diagrams are forbidden or suppressed heavily by the vector decay constants. Furthermore, the branching fractions are sensitive to the mixing between and . Comparing our results with the experimental data, a large mixing angle is favored. Taking , the orders of branching fractions of $B \to…
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