Subleading power corrections to the pion-photon transition form factor in QCD
Abstract
We reconsider QCD factorization for the leading power contribution to the γ * γ → π 0 form factor F γ* γ→ π 0( Q 2) at one loop using the evanescent operator approach, and demonstrate the equivalence of the resulting factorization formulae derived with distinct prescriptions of γ 5 in dimensional regularization. Applying the light-cone QCD sum rules (LCSRs) with photon distribution amplitudes (DAs) we further compute the subleading power contribution to the pion-photon form factor induced by the "hadronic" component of the real photon at the next-to-leading-order in O({α}_s) , with both naive dimensional regularization and 't Hooft-Veltman schemes of γ 5. Confronting our theoretical predictions of F γ* γ→π0 ( Q 2) with the experimental measurements from the BaBar and the Belle Collaborations implies that a reasonable agreement can be achieved without introducing an "exotic" end-point behaviour for the twist-2 pion DA.
- Publication:
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Journal of High Energy Physics
- Pub Date:
- December 2017
- DOI:
- 10.1007/JHEP12(2017)037
- arXiv:
- arXiv:1706.05680
- Bibcode:
- 2017JHEP...12..037W
- Keywords:
-
- Perturbative QCD;
- Resummation;
- High Energy Physics - Phenomenology;
- High Energy Physics - Experiment;
- High Energy Physics - Lattice
- E-Print:
- 36 pages, 8 figures