Flow-oriented perturbation theory

Open Access
Authors
  • M. Borinsky
  • Z. Capatti
  • E. Laenen ORCID logo
  • A. Salas-Bernárdez
Publication date 01-2023
Journal Journal of High Energy Physics
Article number 172
Volume | Issue number 2023 | 1
Number of pages 52
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract

We introduce a new diagrammatic approach to perturbative quantum field theory, which we call flow-oriented perturbation theory (FOPT). Within it, Feynman graphs are replaced by strongly connected directed graphs (digraphs). FOPT is a coordinate space analogue of time-ordered perturbation theory and loop-tree duality, but it has the advantage of having combinatorial and canonical Feynman rules, combined with a simplified iε dependence of the resulting integrals. Moreover, we introduce a novel digraph-based representation for the S-matrix. The associated integrals involve the Fourier transform of the flow polytope. Due to this polytope’s properties, our S-matrix representation exhibits manifest infrared singularity factorization on a per-diagram level. Our findings reveal an interesting interplay between spurious singularities and Fourier transforms of polytopes.

Document type Article
Language English
Related publication Flow Oriented Perturbation Theory
Published at https://doi.org/10.1007/JHEP01(2023)172
Other links https://www.scopus.com/pages/publications/85147160646
Downloads
JHEP01(2023)172 (Final published version)
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