Corrections of Order $\Lambda^2_{QCD}/m^2_c$ to Inclusive Rare B Decays
Abstract
We calculate nonperturbative corrections to the dilepton invariant mass spectrum and the forward-backward charge asymmetry in decay using a heavy quark expansion approach. The method has recently been used to estimate long-distance effects in . We generalize this analysis to the case of nonvanishing photon invariant mass, , relevant for the rare decay mode . In the phenomenologically interesting region away from the resonances, the heavy quark expansion approach should provide a reasonable description of possible nonperturbative corrections. In particular this picture is preferable to the model-dependent approach relying on the tails of Breit-Wigner resonances, which has been employed so far in the literature to account for these effects. We find that the corrections to the dilepton invariant mass spectrum and to the forward-backward asymmetry in amount to several percent at most for and . The correction to the decay rate is also computed and found to be +3%, which agrees in magnitude with previous calculations. Finally, we comment on long-distance effects in , which in this case are extremely suppressed due to the absence of virtual photon contributions.
Keywords
Cite
@article{arxiv.hep-ph/9705253,
title = {Corrections of Order $\Lambda^2_{QCD}/m^2_c$ to Inclusive Rare B Decays},
author = {G. Buchalla and G. Isidori and S. -J. Rey},
journal= {arXiv preprint arXiv:hep-ph/9705253},
year = {2016}
}
Comments
Latex, 15 pages, 3 figures (included)