Factorization and dispersion relations for radiative leptonic $B$ decay
Yu-Ming Wang

TL;DR
This paper computes QCD corrections to the soft contribution in radiative leptonic B decay using dispersion relations, demonstrating factorization at one loop and evaluating sub-leading power contributions from three-particle B-meson DAs.
Contribution
It provides a detailed analysis of QCD factorization and power corrections for B to gamma decay form factors, including one-loop calculations and three-particle DA contributions.
Findings
Next-to-leading-order QCD correction shifts the form factor by 10-20%.
Soft two-particle correction can reduce leading power predictions by 10-30%.
Three-particle B-meson DAs contribute about 1% to the form factors.
Abstract
Applying the dispersion approach we compute perturbative QCD corrections to the power suppressed soft contribution of at leading twist. QCD factorization for the form factors is demonstrated explicitly for the hard-collinear transverse polarized photon at one loop, with the aid of the method of regions. While the one-loop hard function is identical to the matching coefficient of the QCD weak current in soft-collinear effective theory, the jet function from integrating out the hard-collinear fluctuations differs from the corresponding one entering the factorization formula of . Furthermore, we evaluate the sub-leading power contribution to the form factors from the three-particle -meson distribution amplitudes (DAs) at tree level. The soft…
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