A lattice QCD calculation extracts the structure-dependent form factors for radiative leptonic decays of kaons and D mesons, with preliminary results that agree qualitatively with chiral perturbation theory.
Electromagnetic corrections to leptonic decay rates of charged pseudoscalar mesons: finite-volume effects
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abstract
In Carrasco et al. we have recently proposed a method to calculate $O(e^2)$ electromagnetic corrections to leptonic decay widths of pseudoscalar mesons. The method is based on the observation that the infrared divergent contributions (that appear at intermediate stages of the calculation and that cancel in physical quantities thanks to the Bloch-Nordsieck mechanism) are universal, i.e. depend on the charge and the mass of the meson but not on its internal structure. In this talk we perform a detailed analysis of the finite-volume effects associated with our method. In particular we show that also the leading $1/L$ finite-volume effects are universal and perform an analytical calculation of the finite-volume leptonic decay rate for a point-like meson.
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Real photon emissions in leptonic decays
A lattice QCD calculation extracts the structure-dependent form factors for radiative leptonic decays of kaons and D mesons, with preliminary results that agree qualitatively with chiral perturbation theory.