Measurements of Partial Branching Fractions of Inclusive $B \to X_u \, \ell^+\, \nu_{\ell}$ Decays with Hadronic Tagging
Belle Collaboration: L. Cao, W. Sutcliffe, R. Van Tonder, F. U., Bernlochner, I. Adachi, H. Aihara, S. Al Said, D. M. Asner, H. Atmacan, T., Aushev, R. Ayad, V. Babu, M. Bauer, P. Behera, K. Belous, J. Bennett, M., Bessner, V. Bhardwaj, T. Bilka, J. Biswal, G. Bonvicini

TL;DR
This paper measures partial branching fractions of inclusive $B o X_u \, \ell^+\, \nu_{\ell}$ decays using Belle data, employing machine learning to suppress backgrounds, and extracts the CKM matrix element $|V_{ub}|$ with improved precision.
Contribution
It introduces a novel machine learning approach to effectively reduce backgrounds in inclusive $B o X_u \, \ell^+\, \nu_{\ell}$ decay measurements, enabling more precise determination of $|V_{ub}|$.
Findings
Measured partial branching fractions in three phase-space regions.
Determined $|V_{ub}|$ with reduced uncertainties.
No evidence of isospin breaking or lepton flavor universality violation.
Abstract
We present measurements of partial branching fractions of inclusive semileptonic decays using the full Belle data set of 711 fb of integrated luminosity at the resonance and for . Inclusive semileptonic decays are CKM suppressed and measurements are complicated by the large background from CKM-favored transitions, which have a similar signature. Using machine learning techniques, we reduce this and other backgrounds effectively, whilst retaining access to a large fraction of the phase space and high signal efficiency. We measure partial branching fractions in three phase-space regions covering about to of the accessible phase space. The most inclusive measurement…
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