Revisiting charmless hadronic B decays to scalar mesons
Abstract
Hadronic charmless B decays to scalar mesons are studied within the framework of QCD factorization (QCDF). Considering two different scenarios for scalar mesons above 1 GeV, we find that the data favor the scenario in which the scalars and are the lowest lying bound states. This in turn implies a preferred four-quark nature for light scalars below 1 GeV. Assuming being a lowest lying state, we show that the data of and can be accommodated in QCDF without introducing power corrections induced from penguin annihilation, while the predicted and are too small compared to experiment. In principle, the data of modes can be explained if penguin-annihilation induced power corrections are taken into account. However, this will destroy the agreement between theory and experiment for . Contrary to the pseudoscalar meson sector where has the largest rate in 2-body decays of the meson, we show that . The decay is found to have a rate much smaller than that of in QCDF, while it is the other way around in pQCD. Experimental measurements of these two modes will help discriminate between these two different approaches. Assuming 2-quark bound states for and , the observed large rates of and modes can be explained in QCDF with the mixing angle in the vicinity of .
Keywords
Cite
@article{arxiv.1303.4403,
title = {Revisiting charmless hadronic B decays to scalar mesons},
author = {Hai-Yang Cheng and Chun-Khiang Chua and Kwei-Chou Yang and Zhi-Qing Zhang},
journal= {arXiv preprint arXiv:1303.4403},
year = {2013}
}
Comments
25 pages, 3 figures