English

The massless higher-loop two-point function

Algebraic Geometry 2009-03-24 v1 High Energy Physics - Phenomenology Number Theory

Abstract

We introduce a new method for computing massless Feynman integrals analytically in parametric form. An analysis of the method yields a criterion for a primitive Feynman graph GG to evaluate to multiple zeta values. The criterion depends only on the topology of GG, and can be checked algorithmically. As a corollary, we reprove the result, due to Bierenbaum and Weinzierl, that the massless 2-loop 2-point function is expressible in terms of multiple zeta values, and generalize this to the 3, 4, and 5-loop cases. We find that the coefficients in the Taylor expansion of planar graphs in this range evaluate to multiple zeta values, but the non-planar graphs with crossing number 1 may evaluate to multiple sums with 6th6^\mathrm{th} roots of unity. Our method fails for the five loop graphs with crossing number 2 obtained by breaking open the bipartite graph K3,4K_{3,4} at one edge.

Keywords

Cite

@article{arxiv.0804.1660,
  title  = {The massless higher-loop two-point function},
  author = {Francis Brown},
  journal= {arXiv preprint arXiv:0804.1660},
  year   = {2009}
}
R2 v1 2026-06-21T10:29:33.300Z