English

Precision lattice QCD computation of the $B^*B\pi$ coupling

High Energy Physics - Lattice 2015-06-19 v1

Abstract

The static BBπB^{*}B\pi coupling, g^χ\hat{g}_\chi, a low energy constant in the leading order heavy meson chiral Lagrangian, is determined using Nf=2N_\mathrm{f} = 2 lattice QCD. We use CLS ensembles with lattice spacings and pion masses down to a=0.05fma = 0.05\mathrm{fm} and mπ=270MeVm_{\pi}=270\mathrm{MeV}, and perform combined continuum and chiral extrapolations of our results which have a much better accuracy than previous numbers in the literature. As a by-product, we determine the coupling between the first radial excitations in the BB and BB^{*} channels (g^22\hat{g}_{22}). Accounting for all uncertainties, which are dominated by the chiral extrapolation, we obtain g^χ=0.492(29)\hat{g}_\chi = 0.492(29), while g^22\hat{g}_{22} is somewhat smaller. The comparison to a precise quenched computation suggests that there is little influence by the sea quarks and g^χ\hat{g}_\chi will not change much when a dynamical strange quark is included.

Keywords

Cite

@article{arxiv.1404.6951,
  title  = {Precision lattice QCD computation of the $B^*B\pi$ coupling},
  author = {Fabio Bernardoni and John Bulava and Michael Donnellan and Rainer Sommer},
  journal= {arXiv preprint arXiv:1404.6951},
  year   = {2015}
}

Comments

14 pages, all included

R2 v1 2026-06-22T04:00:19.301Z