Semileptonic form factors for $B \to D^\ast\ell\nu$ at nonzero recoil from 2 + 1-flavor lattice QCD
A. Bazavov (Michigan State U), C.E. DeTar (U Utah), Daping Du, (Syracuse U), A.X. El-Khadra (U Illinois), E. G\'amiz (U Granada), Z. Gelzer, (U Illinois), Steven Gottlieb (Indiana U), U.M. Heller (APS), A.S. Kronfeld, (FNAL), J. Laiho (Syracuse U), P.B. Mackenzie (FNAL)

TL;DR
This paper reports the first unquenched lattice-QCD calculation of $B o D^* o u o o$ form factors at nonzero recoil, leading to a precise determination of the CKM matrix element $|V_{cb}|$ and the ratio $R(D^*)$, highlighting existing tensions.
Contribution
It provides the first unquenched lattice-QCD results for $B o D^*$ form factors at nonzero recoil, enabling a joint fit with experimental data to extract $|V_{cb}|$ and $R(D^*)$ with quantified uncertainties.
Findings
Determined $|V_{cb}| = (38.40 imes 10^{-3})$ with combined uncertainties.
Predicted $R(D^*) = 0.265 \
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Abstract
We present the first unquenched lattice-QCD calculation of the form factors for the decay at nonzero recoil. Our analysis includes 15 MILC ensembles with flavors of asqtad sea quarks, with a strange quark mass close to its physical mass. The lattice spacings range from fm down to fm, while the ratio between the light- and the strange-quark masses ranges from 0.05 to 0.4. The valence and quarks are treated using the Wilson-clover action with the Fermilab interpretation, whereas the light sector employs asqtad staggered fermions. We extrapolate our results to the physical point in the continuum limit using rooted staggered heavy-light meson chiral perturbation theory. Then we apply a model-independent parametrization to extend the form factors to the full kinematic range. With this parametrization we perform a joint…
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