Study of localized violation in and the branching ratio of in the QCD factorization approach
arXiv:1811.10333 · doi:10.1016/j.nuclphysb.2019.114788
Abstract
In this work, within the QCD factorization approach, we study the localized integrated violation in the decay and the branching fraction of the decay. Both the resonance and nonresonance contributions are included when we study the localized asymmetry in the decay. The resonance contributions from the scalar and vector mesons are included. For the meson, we apply both the Breit-Wigner and Bugg models to deal with its propagator, and obtain and in these two models, respectively. We find that there is no allowed divergence parameters and to satisfy the experimental data in the region and and the upper limit of in the Breit-Wigner model, however, there exists the region and satisfying the data for and the upper limit of in the Bugg model. This reveals that the Bugg model is more plausible than the Breit-Wigner model to describe the propagator of the meson even though the finite width effects are considered in both models. The large values of indicate that the contributions from weak annihilation and hard spectator scattering processes are both large, especially, the weak annihilation contribution should not be negleted for decays to final states including a scalar meson.
arXiv admin note: substantial text overlap with arXiv:1811.02167
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