Mapping quark-level kinematics to hadrons in a new hybrid model of semileptonic B meson decays

A bstract The need to map parton-level processes to color-neutral hadrons in a way that respects quark-hadron duality arises in several areas of physics, including in the semileptonic decays of B mesons. Integrated over large regions of phase space, the quark-level and hadron-level quantities are expected to be equal. However, the breakdown of duality is manifest at low hadron-system invariant masses, where discrete resonances dominate. In practice, this means independent simulations of decays to low-lying resonances and to higher-mass hadronic systems must be merged into a coherent model. We present a novel method to combine these resonant and non-resonant components in simulations of inclusive b → uℓν decays that uses an optimal transport algorithm. The method currently used in measurements of inclusive semileptonic B decay branching fractions introduces unphysical features in kinematic spectra such as large discontinuities and negative yields. The optimal transport method solves both of these issues and can be easily implemented in experimental studies of B → X u ℓν decays.

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Publication Details

Journal
Journal of High Energy Physics
Published
2026-09-10
DOI
https://doi.org/10.1007/jhep09(2026)137
Primary Topic
Particle physics theoretical and experimental studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Mapping quark-level kinematics to hadrons in a new hybrid model of semileptonic B meson decays

T. Martinov, R. Kowalewski, Philipp Horak
Journal of High Energy Physics
Particle physics theoretical and experimental studies
article

Mapping quark-level kinematics to hadrons in a new hybrid model of semileptonic B meson decays

T. Martinov, R. Kowalewski, Philipp Horak
article en

Abstract

A bstract The need to map parton-level processes to color-neutral hadrons in a way that respects quark-hadron duality arises in several areas of physics, including in the semileptonic decays of B mesons. Integrated over large regions of phase space, the quark-level and hadron-level quantities are expected to be equal. However, the breakdown of duality is manifest at low hadron-system invariant masses, where discrete resonances dominate. In practice, this means independent simulations of decays to low-lying resonances and to higher-mass hadronic systems must be merged into a coherent model. We present a novel method to combine these resonant and non-resonant components in simulations of inclusive b → uℓν decays that uses an optimal transport algorithm. The method currently used in measurements of inclusive semileptonic B decay branching fractions introduces unphysical features in kinematic spectra such as large discontinuities and negative yields. The optimal transport method solves both of these issues and can be easily implemented in experimental studies of B → X u ℓν decays.

Journal of High Energy PhysicsVol. 2026(9)
University of Victoria (CA), Istituto Nazionale di Fisica Nucleare, Sezione di Trieste (IT)
Natural Sciences and Engineering Research Council of Canada
Openalex Percentile: Top 73%
Particle physics theoretical and experimental studies
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Mapping quark-level kinematics to hadrons in a new hybrid model of semileptonic B meson decays — T. Martinov, R. Kowalewski, et al. · Journal of High Energy Physics (2026) | TGRS Research Map | TGRS