Hadronic photon correction to γ γ f2(1270) at next-to-leading order
Bing-Xin Liu, Shen-Qiang Ren
Abstract
Within the framework of light-cone sum rules, we calculate the hadronic photon corrections to the γ*γ f2(1270) transition form factors induced by the leading-twist photon distribution amplitude of the real photon. We establish the factorization formula for the vacuum-to-photon correlation function at next-to-leading order in αs, and extract the perturbative hard matching coefficients by applying the method of regions. The parametrically large logarithms appearing in the hard functions are resummed to next-to-leading logarithmic accuracy by solving the two-loop evolution equation for the corresponding light-ray tensor operator. Combining the resulting light-cone sum rules with the known leading-power contributions from QCD collinear factorization, we provide updated theoretical predictions for the three helicity form factors T0(Q2), T1(Q2) and T2(Q2), including an estimate of the theoretical uncertainties.
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