English

Enhanced electromagnetic correction to the rare $B$-meson decay $B_{s,d} \to \mu^+ \mu^-$

High Energy Physics - Phenomenology 2018-01-10 v1

Abstract

We investigate electromagnetic corrections to the rare BB-meson leptonic decay Bs,dμ+μB_{s,d} \to \mu^+\mu^- from scales below the bottom-quark mass mbm_b. Contrary to QCD effects, which are entirely contained in the BB-meson decay constant, we find that virtual photon exchange can probe the BB-meson structure, resulting in a "non-local annihilation" effect. We find that this effect gives rise to a dynamical enhancement by a power of mb/ΛQCDm_b/\Lambda_{\rm QCD} and by large logarithms. The impact of this novel effect on the branching ratio of Bs,dμ+μB_{s,d}\to\mu^+\mu^- is about 1%1\%, of the order of the previously estimated non-parametric theoretical uncertainty, and four times the size of previous estimates of next-to-leading order QED effects due to residual scale dependence. We update the Standard Model prediction to B(Bsμ+μ)SM=(3.57±0.17)109\overline{{\cal B}}(B_s \to \mu^+\mu^-)_{\rm SM} = (3.57 \pm 0.17) \cdot 10^{-9}.

Keywords

Cite

@article{arxiv.1708.09152,
  title  = {Enhanced electromagnetic correction to the rare $B$-meson decay $B_{s,d} \to \mu^+ \mu^-$},
  author = {Martin Beneke and Christoph Bobeth and Robert Szafron},
  journal= {arXiv preprint arXiv:1708.09152},
  year   = {2018}
}