English

$\vert V_{cb} \vert$ and $R(D^{(*)})$ using lattice QCD and unitarity

High Energy Physics - Phenomenology 2022-02-16 v3 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

The Cabibbo-Kobayashi-Maskawa (CKM) matrix element Vcb|V_{cb}| is extracted from exclusive semileptonic BD()B \to D^{(*)} decays adopting a novel unitarity-based approach which allows to determine in a full non-perturbative way the relevant hadronic form factors (FFs) in the whole kinematical range. By using existing lattice computations of the BD()B \to D^{(*)} FFs at small recoil from FNAL/MILC and JLQCD Collaborations, we show that it is possible to extrapolate their behavior also at large recoil without assuming any specific momentum dependence and without constraining their shape using experimental data. Thus, we address the extraction of Vcb|V_{cb}| from the experimental data on the semileptonic BD()νB \to D^{(*)} \ell \nu_\ell decays, obtaining Vcb=(41.0±1.2)103\vert V_{cb}\vert = (41.0 \pm 1.2 ) \cdot 10^{-3} from BDB \to D using as input the final FNAL/MILC lattice data for the FFs and Vcb=(40.4±1.8)103|V_{cb}| = (40.4 \pm 1.8 ) \cdot 10^{-3} from BDB \to D^* using the preliminary JLQCD lattice data. Our result from BDB \to D is consistent within 1\sim 1 standard deviation with the most recent inclusive determination Vcbincl=(42.00±0.65)103|V_{cb}|_{incl} = (42.00 \pm 0.65) \cdot 10^{-3}. The resulting uncertainty is comparable with those obtained in literature using experimental data to constrain the shape of the FFs. Our result from BDB \to D^*, though consistent with Vcbincl|V_{cb}|_{incl} , is still based on preliminary lattice data for the FFs and its uncertainty is greater than the ones obtained in literature using experimental data to constrain the shape of the FFs. We investigate also the issue of Lepton Flavor Universality thanks to new theoretical estimates of the ratios R(D())R(D^{(*)}), namely R(D)=0.296(8)R(D) = 0.296(8) using final FNAL/MILC lattice results, and R(D)=0.261(20)R(D^{*}) = 0.261(20) using preliminary JLQCD and FNAL/MILC lattice data. Our findings differ by 1.4σ\sim 1.4\sigma from the latest experimental determinations.

Keywords

Cite

@article{arxiv.2105.08674,
  title  = {$\vert V_{cb} \vert$ and $R(D^{(*)})$ using lattice QCD and unitarity},
  author = {G. Martinelli and S. Simula and L. Vittorio},
  journal= {arXiv preprint arXiv:2105.08674},
  year   = {2022}
}

Comments

48 pages, 15 figures, 6 tables. Matches the published version in PRD

R2 v1 2026-06-24T02:14:01.164Z