English

$B \rightarrow \pi \ell \nu$ at zero recoil from lattice QCD with physical $u/d$ quarks

High Energy Physics - Lattice 2016-02-10 v1 High Energy Physics - Phenomenology

Abstract

The exclusive semileptonic decay BπνB \rightarrow \pi \ell \nu is a key process for the determination of the Cabibbo-Kobayashi-Maskawa matrix element VubV_{ub} from the comparison of experimental rates as a function of q2q^2 with theoretically determined form factors. The sensitivity of the form factors to the u/du/d quark mass has meant significant systematic uncertainties in lattice QCD calculations at unphysically heavy pion masses. Here we give the first lattice QCD calculations of this process for u/d quark masses going down to their physical values, calculating the f0f_0 form factor at zero recoil to 3\%. We are able to resolve a long-standing controversy by showing that the soft-pion theorem result f0(qmax2)=fB/fπf_0(q^2_{max}) = f_B/f_{\pi} does hold as mπ0m_{\pi} \rightarrow 0. We use the Highly Improved Staggered Quark formalism for the light quarks and show that staggered chiral perturbation theory for the mπm_{\pi} dependence is almost identical to continuum chiral perturbation theory for f0f_0, fBf_B and fπf_{\pi}. We also give results for other processes such as BsKνB_s \rightarrow K \ell \nu.

Keywords

Cite

@article{arxiv.1510.07446,
  title  = {$B \rightarrow \pi \ell \nu$ at zero recoil from lattice QCD with physical $u/d$ quarks},
  author = {B. Colquhoun and R. J. Dowdall and J. Koponen and C. T. H. Davies and G. P. Lepage},
  journal= {arXiv preprint arXiv:1510.07446},
  year   = {2016}
}

Comments

16 pages, 6 figures