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QED factorization of non-leptonic $B$ decays
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abstract
We show that the QCD factorization approach for $B$-meson decays to charmless hadronic two-body final states can be extended to include electromagnetic corrections. The presence of electrically charged final-state particles complicates the framework. Nevertheless, the factorization formula takes the same form as in QCD alone, with appropriate generalizations of the definitions of light-cone distribution amplitudes and form factors to include QED effects. More precisely, we factorize QED effects above the strong interaction scale $\Lambda_{\rm QCD}$ for the non-radiative matrix elements $\langle M_1 M_2|Q_i|\bar{B}\rangle$ of the current-current operators from the effective weak interactions. The rates of the branching fractions for the infrared-finite observables $\bar B\to M_1 M_2(\gamma)$ with photons of maximal energy $\Delta E\ll\Lambda_{\rm QCD}$ is then obtained by multiplying with the soft-photon exponentiation factors. We provide first estimates for the various electromagnetic corrections, and in particular quantify their impact on the $\pi K$ ratios and sum rules that are often used as diagnostics of New Physics.
Forward citations
Cited by 3 Pith papers
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The Simplest B Decay, Precisely
A complete QCD×QED, next-to-leading-power factorization now gives a percent-level prediction for B⁻→μ⁻ν̄(γ) with all structure-dependent electromagnetic corrections included.
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Renormalization of the Next-to-Leading-Power Soft Function for the Drell-Yan Off-diagonal Channel
The first renormalization-group kernel for the next-to-leading-power Drell-Yan off-diagonal soft function is derived and solved, with a factorized three-variable anomalous dimension.
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QED Corrections to $B^-\to\tau^-\bar{\nu}_\tau$
The B−→τ−ν̄τ rate with real and virtual QED corrections is derived to O(α) with resummed logarithmic corrections in a two-heavy-fermion EFT: percent-level effects, mild photon-veto dependence, and a structure-dependen...
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