Measurement of the decay $B\to D\ell\nu_\ell$ in fully reconstructed events and determination of the Cabibbo-Kobayashi-Maskawa matrix element $|V_{cb}|$
R. Glattauer, C. Schwanda, A. Abdesselam, I. Adachi, K. Adamczyk, H., Aihara, S. Al Said, D. M. Asner, T. Aushev, R. Ayad, T. Aziz, I. Badhrees, A., M. Bakich, V. Bansal, E. Barberio, B. Bhuyan, J. Biswal, G. Bonvicini, A., Bozek, M. Bra\v{c}ko, F. Breibeck, T. E. Browder

TL;DR
This paper measures the CKM matrix element |V_{cb}| using B to D l nu decays with a large data set from Belle, employing full and partial reconstruction techniques, and compares results with theoretical form-factor predictions.
Contribution
It provides a precise determination of |V_{cb}| from B to D l nu decays using advanced reconstruction methods and compares different theoretical form-factor parameterizations.
Findings
Measured the branching fraction of B to D l nu decay.
Determined |V_{cb}| with two different form-factor models.
Achieved improved precision in |V_{cb}| measurement.
Abstract
We present a determination of the magnitude of the Cabibbo-Kobayashi-Maskawa matrix element using the decay () based on 711 fb of data recorded by the Belle detector and containing pairs. One meson in the event is fully reconstructed in a hadronic decay mode while the other, on the signal side, is partially reconstructed from a charged lepton and either a or meson in a total of 23 hadronic decay modes. The isospin-averaged branching fraction of the decay is found to be . Analyzing the differential decay rate as a function of the hadronic recoil with the parameterization of Caprini, Lelouch and Neubert and using the form-factor prediction…
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