English

Corrections of Order $\Lambda^2_{QCD}/m^2_c$ to Inclusive Rare B Decays

High Energy Physics - Phenomenology 2016-09-06 v1

Abstract

We calculate nonperturbative O(ΛQCD2/mc2){\cal O}(\Lambda^2_{QCD}/m^2_c) corrections to the dilepton invariant mass spectrum and the forward-backward charge asymmetry in BXse+eB\to X_se^+e^- decay using a heavy quark expansion approach. The method has recently been used to estimate long-distance effects in BXsγB\to X_s\gamma. We generalize this analysis to the case of nonvanishing photon invariant mass, q20q^2\not= 0, relevant for the rare decay mode BXse+eB\to X_se^+e^-. In the phenomenologically interesting q2q^2 region away from the ccˉc\bar c 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 O(ΛQCD2/mc2){\cal O}(\Lambda^2_{QCD}/m^2_c) corrections to the dilepton invariant mass spectrum and to the forward-backward asymmetry in BXse+eB\to X_se^+e^- amount to several percent at most for q2/mb2<0.3q^2/m^2_b < 0.3 and q2/mb2>0.6q^2/m^2_b > 0.6. The O(ΛQCD2/mc2){\cal O}(\Lambda^2_{QCD}/m^2_c) correction to the BXsγB\to X_s\gamma 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 BXsννˉB\to X_s\nu\bar\nu, 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)