English

Towards all-order factorization of QED amplitudes at next-to-leading power

High Energy Physics - Phenomenology 2021-03-01 v2

Abstract

We generalise the factorization of abelian gauge theory amplitudes to next-to-leading power (NLP) in a soft scale expansion, following a recent generalisation for Yukawa theory. From an all-order power counting analysis of leading and next-to-leading regions, we infer the factorized structure for both a parametrically small and zero fermion mass. This requires the introduction of new universal jet functions, for non-radiative and single-radiative QED amplitudes, which we compute at one-loop order. We show that our factorization formula reproduces the relevant regions in one- and two-loop scattering amplitudes, appropriately addressing endpoint divergences. It provides a description of virtual collinear modes and accounts for non-trivial hard-collinear interplay present beyond the one-loop level, making this a first step towards a complete all-order factorization framework for gauge-theory amplitudes at NLP.

Keywords

Cite

@article{arxiv.2008.01736,
  title  = {Towards all-order factorization of QED amplitudes at next-to-leading power},
  author = {E. Laenen and J. Sinninghe Damsté and L. Vernazza and W. Waalewijn and L. Zoppi},
  journal= {arXiv preprint arXiv:2008.01736},
  year   = {2021}
}

Comments

31 pages, 18 figures. v2: as in journal version