English

Systematic estimation of theoretical uncertainties in the calculation of the pion-photon transition form factor using light-cone sum rules

High Energy Physics - Phenomenology 2016-06-22 v3

Abstract

We consider the calculation of the pion-photon transition form factor Fγγπ0(Q2)F^{\gamma^*\gamma\pi^0}(Q^2) within light-cone sum rules focusing attention to the low-mid region of momenta. The central aim is to estimate the theoretical uncertainties which originate from a wide variety of sources related to (i) the relevance of next-to-next-to-leading order radiative corrections (ii) the influence of the twist-four and the twist-six term (iii) the sensitivity of the results on auxiliary parameters, like the Borel scale M2M^2, (iv) the role of the phenomenological description of resonances, and (v) the significance of a small but finite virtuality of the quasireal photon. Predictions for Fγγπ0(Q2)F^{\gamma^*\gamma\pi^0}(Q^2) are presented which include all these uncertainties and found to comply within the margin of experimental error with the existing data in the Q2Q^2 range between 1 and 5 GeV2^2, thus justifying the reliability of the applied calculational scheme. This provides a solid basis for confronting theoretical predictions with forthcoming data bearing small statistical errors.

Keywords

Cite

@article{arxiv.1604.06391,
  title  = {Systematic estimation of theoretical uncertainties in the calculation of the pion-photon transition form factor using light-cone sum rules},
  author = {S. V. Mikhailov and A. V. Pimikov and N. G. Stefanis},
  journal= {arXiv preprint arXiv:1604.06391},
  year   = {2016}
}

Comments

15 pages, 4 figures. Version 3 includes complete Fig. 4 and all Eqs.(B7). Conclusions unchanged; matches version to appear in Phys. Rev. D