English

$B \rightarrow D^*$ vector, axial-vector and tensor form factors for the full $q^2$ range from lattice QCD

High Energy Physics - Lattice 2024-01-29 v2 High Energy Physics - Phenomenology

Abstract

We compute the complete set of SM and tensor B(s)D(s)νˉB_{(s)}\to D_{(s)}^*\ell\bar{\nu} semileptonic form factors across the full kinematic range of the decay using second generation MILC nf=2+1+1n_f=2+1+1 HISQ gluon field configurations and HISQ valence quarks, with the heavy-HISQ method. Lattice spacings range from 0.09fm0.09\mathrm{fm} to 0.044fm0.044\mathrm{fm} with pion masses from 300MeV\approx 300\mathrm{MeV} down to the physical value and heavy quark masses ranging between 1.5mc\approx 1.5 m_c and 4.1mc0.9mb4.1 m_c \approx 0.9 m_b; currents are normalised nonperturbatively. Using the recent B(s)D(s)νˉB_{(s)}\to D^*_{(s)}\ell\bar{\nu}_\ell data from Belle and LHCb together with our form factors we determine a model independent value of Vcb=39.03(56)exp(67)latt×103V_{cb}=39.03(56)_\mathrm{exp}(67)_\mathrm{latt}\times 10^{-3}, in agreement with previous exclusive determinations and in tension with the inclusive result at the level of 3.6σ3.6\sigma. We observe a 1σ\approx 1\sigma tension between the shape of the differential decay rates computed using our form factors and those measured by Belle. We compute a lattice-only SM value for the ratio of semitauonic and semimuonic decay rates, R(D)=0.273(15)R(D^*)=0.273(15), which we find to be closer to the recent Belle measurement and HFLAV average than theory predictions using fits to experimental differential rate data for BDνˉB\to D^*\ell\bar{\nu}_\ell. Determining VcbV_{cb} using the total rate for BDνB\to D^*\ell\nu gives a value in agreement with inclusive results. We compute the longitudinal polarisation fraction for the semitauonic mode, FLD=0.395(24)F_L^{D^*}=0.395(24), which is in tension at the level of 2.2σ2.2\sigma with the recent Belle measurement. Our calculation combines BDB\to D^* and BsDsB_s\to D_s^* lattice results, and we provide an update which supersedes our previous lattice computation of the BsDsB_s\to D_s^* form factors. We also give the chiral perturbation theory needed to analyse the tensor form factors.

Keywords

Cite

@article{arxiv.2304.03137,
  title  = {$B \rightarrow D^*$ vector, axial-vector and tensor form factors for the full $q^2$ range from lattice QCD},
  author = {Judd Harrison and Christine T. H. Davies},
  journal= {arXiv preprint arXiv:2304.03137},
  year   = {2024}
}

Comments

49 pages, 27 figures