English

Next-to-leading-order corrections to exclusive processes in $k_T$ factorization

High Energy Physics - Phenomenology 2008-11-26 v2

Abstract

We calculate next-to-leading-order (NLO) corrections to exclusive processes in kTk_T factorization theorem, taking πγγ\pi\gamma^*\to\gamma as an example. Partons off-shell by kT2k_T^2 are considered in both the quark diagrams from full QCD and the effective diagrams for the pion wave function. The gauge dependences in the above two sets of diagrams cancel, when deriving the kTk_T-dependent hard kernel as their difference. The gauge invariance of the hard kernel is then proven to all orders by induction. The light-cone singularities in the kTk_T-dependent pion wave function are regularized by rotating the Wilson lines away from the light cone. This regularization introduces a factorization-scheme dependence into the hard kernel, which can be minimized in the standard way. Both the large double logarithms ln2kT\ln^2k_T and ln2x\ln^2 x, xx being a parton momentum fraction, arise from the loop correction to the virtual photon vertex, the former being absorbed into the pion wave function and organized by the kTk_T resummation, and the latter absorbed into a jet function and organized by the threshold resummation. The NLO corrections are found to be only few-percent for πγγ\pi\gamma^*\to\gamma, if setting the factorization scale to the momentum transfer from the virtual photon.

Keywords

Cite

@article{arxiv.0704.3790,
  title  = {Next-to-leading-order corrections to exclusive processes in $k_T$ factorization},
  author = {Soumitra Nandi and Hsiang-nan Li},
  journal= {arXiv preprint arXiv:0704.3790},
  year   = {2008}
}
R2 v1 2026-06-21T08:23:09.393Z