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arXiv:1008.5201·v1·High Energy Physics — Phenomenology

Light scalar mesons and charmless hadronic decays in the perturbative QCD approach

Xin Liu🇨🇳 · Zhen-Jun Xiao🇨🇳

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Abstract

In this work, based on the assumption of two-quark structure of the scalars, the charmless hadronic decays(here, , , and denote the light scalar, pseudoscalar, and vector mesons, respectively) are investigated by employing the perturbative QCD(pQCD) factorization approach.From our numerical evaluations and phenomenological analysis, we find that (a) the pQCD predictions for the {\it CP}-averaged branching ratios(BRs) of the considered decays vary in the range of to , which will be tested in the ongoing LHCb and forthcoming Super-B experiments, while the {\it CP}-violating asymmetries for these modes are absent naturally in the standard model because only one type tree operator is involved; %% (b) analogous to decays, in the pQCD approach, which can be understood by the constructive and destructive interference between the and contributions to the and decays, however, is approximately equal to in both scenarios because the factorizable contributions from term play the dominant role in the considered two channels; %% (c) if and are the bound states, the pQCD predicted BRs for and decays will be in the range of , which are within the reach of the LHCb experiments and could be measured in the near future; and %% (d) for the and channels, the BRs for and modes in the pQCD approach are found to be and , respectively.

Comments: 24 pages, 1 figure, accepted for publication in Physical Review D

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