English

Factorizing the position-space photon propagator in QED corrections to lattice QCD correlators

High Energy Physics - Lattice 2026-03-16 v1

Abstract

Electromagnetic corrections to the nn-point functions of lattice QCD can be evaluated using a position-space photon propagator defined in infinite volume. Here we address the computational challenge arising from the volume-squared sum over the endpoints of the photon propagator. We consider a class of integral representations of the photon propagator that lead to a factorization of the two volume-sums, the Fourier representation being one instance thereof. An alternative choice is based on expressing the free scalar propagator as the autoconvolution of the corresponding five-dimensional propagator. We compare the performance of three different choices in the context of electromagnetic corrections to the hadronic vacuum polarization, on a gauge ensemble of size 483×12848^3\times128 with a pion mass of 286 MeV. As an outlook, we discuss more generally the factorization of sums over internal vertices, taking as an example the hadronic light-by-light contribution to the muon (g2)(g-2).

Keywords

Cite

@article{arxiv.2603.13086,
  title  = {Factorizing the position-space photon propagator in QED corrections to lattice QCD correlators},
  author = {Dominik Erb and Harvey B. Meyer and Konstantin Ottnad},
  journal= {arXiv preprint arXiv:2603.13086},
  year   = {2026}
}
R2 v1 2026-07-01T11:18:36.598Z