$B_{d,s}\to\gamma\ell\bar{\ell}$ decay with an energetic photon
Abstract
We calculate the differential branching fraction, lepton forward-backward asymmetry and direct CP asymmetry for decays with an energetic photon. We employ factorization methods, which result in rigorous next-to-leading order predictions in the strong coupling at leading power in the large-energy/heavy-quark expansion, together with estimates of power corrections and a resonance parameterization of sub-leading power form factors in the region of small lepton invariant mass . The decay shares features of the charged-current decay , and the FCNC decays . As in the former, the leading-power decay rates can be expressed in terms of the -meson light-cone distribution amplitude and short-distance factors. However, similar to , four-quark and dipole operators contribute to the decay in an essential way, limiting the calculation to GeV below the charmonium resonances in the lepton invariant mass spectrum. A detailed analysis of the main observables and theoretical uncertainties is presented.
Keywords
Cite
@article{arxiv.2008.12494,
title = {$B_{d,s}\to\gamma\ell\bar{\ell}$ decay with an energetic photon},
author = {Martin Beneke and Christoph Bobeth and Yu-Ming Wang},
journal= {arXiv preprint arXiv:2008.12494},
year = {2021}
}
Comments
50 pages, LaTeX; v2: Corrected sign typos in (3.48) and (3.52), results not affected