English

Lattice QCD form factor for $B_s\to D_s^* l\nu$ at zero recoil with non-perturbative current renormalisation

High Energy Physics - Lattice 2020-05-11 v2 High Energy Physics - Phenomenology

Abstract

We present details of a lattice QCD calculation of the BsDsB_s\to D_s^* axial form factor at zero recoil using the Highly Improved Staggered Quark (HISQ) formalism on the second generation MILC gluon ensembles that include up, down, strange and charm quarks in the sea. Using the HISQ action for all valence quarks means that the lattice axial vector current that couples to the WW can be renormalized fully non-perturbatively, giving a result free of the perturbative matching errors that previous lattice QCD calculations have had. We calculate correlation functions at three values of the lattice spacing, and multiple `bb'-quark masses, for physical cc and ss. The functional dependence on the bb-quark mass can be determined and compared to Heavy Quark Effective Theory expectations, and a result for the form factor obtained at the physical value of the bb-quark mass. We find FBsDs(1)=hA1s(1)=0.9020(96)stat(90)sys\mathcal{F}^{B_s\to D_s^*}(1) = h^s_{A_1}(1) = 0.9020(96)_{\text{stat}}(90)_{\text{sys}}. This is in agreement with earlier lattice QCD results, which use NRQCD bb quarks, with a total uncertainty reduced by more than a factor of two. We discuss implications of this result for the BDB\to D^* axial form factor at zero recoil and for determinations of VcbV_{cb}.

Keywords

Cite

@article{arxiv.1904.02046,
  title  = {Lattice QCD form factor for $B_s\to D_s^* l\nu$ at zero recoil with non-perturbative current renormalisation},
  author = {E. McLean and C. T. H. Davies and A. T. Lytle and J. Koponen},
  journal= {arXiv preprint arXiv:1904.02046},
  year   = {2020}
}

Comments

18 pages, 9 figures