English

Exclusive Radiative Z-Boson Decays to Mesons with Flavor-Singlet Components

High Energy Physics - Phenomenology 2016-03-23 v1

Abstract

We present a detailed study of the exclusive radiative decays Zη()γZ\to\eta^{(\prime)}\gamma employing the QCD factorization approach. We derive a factorization formula for the decay amplitudes valid at leading power in an expansion in (ΛQCD/mZ)2(\Lambda_{QCD}/m_Z)^2, which includes convolutions of calculable hard-scattering kernels with the leading-twist quark and gluon light-cone distribution amplitudes of the mesons. Large logarithms arising in the evolution from the high scale mZm_Z down to hadronic scales are resummed using the renormalization group, carefully accounting for the effects of the heavy bottom and charm quarks. Our results for the branching ratios are very sensitive to hadronic input parameters, such as the decay constants and mixing angle characterizing the ηη\eta-\eta' system. Using the most recent estimates of these parameters, we obtain the branching ratios Br(Zηγ)1.61010Br(Z\to\eta\gamma)\sim 1.6\cdot 10^{-10} and Br(Zηγ)4.7109Br(Z\to\eta'\gamma)\sim 4.7\cdot 10^{-9}. A measurement of these processes at a future high-luminosity Z factory could provide interesting information on the gluon distribution amplitude.

Keywords

Cite

@article{arxiv.1512.09135,
  title  = {Exclusive Radiative Z-Boson Decays to Mesons with Flavor-Singlet Components},
  author = {Stefan Alte and Matthias Koenig and Matthias Neubert},
  journal= {arXiv preprint arXiv:1512.09135},
  year   = {2016}
}

Comments

16 pages plus appendix, 2 figures, 4 tables