English

Structure-Dependent QED Effects in Exclusive B Decays at Subleading Power

High Energy Physics - Phenomenology 2026-01-23 v4

Abstract

We derive a factorization theorem for the structure-dependent QED effects in the weak exclusive process BνˉB^-\to\ell^-\bar\nu_\ell, i.e., effects probing the internal structure of the BB meson. The derivation requires a careful treatment of endpoint-divergent convolutions common to subleading-power factorization formulas. We find that the decay amplitude is sensitive to two- and three-particle light-cone distribution amplitudes of the BB meson as well as to a new hadronic parameter F(μ,Λ)F(\mu,\Lambda), which generalizes the notion of the BB-meson decay constant in the presence of QED effects. This is the first derivation of a subleading-power factorization theorem in which the soft functions are non-perturbative hadronic matrix elements.

Keywords

Cite

@article{arxiv.2212.14430,
  title  = {Structure-Dependent QED Effects in Exclusive B Decays at Subleading Power},
  author = {Claudia Cornella and Matthias König and Matthias Neubert},
  journal= {arXiv preprint arXiv:2212.14430},
  year   = {2026}
}

Comments

5 pages, 2 figures, v2: inclusion of soft-collinear modes in the factorization theorem, explicit expression for IR poles in the virtual amplitude given, references added, main conclusions unchanged, v3: clarifications added, definition of hadronic parameter F adjusted, matches journal version, v4: corrected operator definition, scheme-dep. terms and sign in three-particle contribution corrected