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JOURNALS // Symmetry, Integrability and Geometry: Methods and Applications // Archive

SIGMA, 2021 Volume 17, 103, 54 pp. (Mi sigma1785)

This article is cited in 1 paper

Invariant Differential Forms on Complexes of Graphs and Feynman Integrals

Francis Brown

All Souls College, University of Oxford, Oxford, OX1 4AL, UK

Abstract: We study differential forms on an algebraic compactification of a moduli space of metric graphs. Canonical examples of such forms are obtained by pulling back invariant differentials along a tropical Torelli map. The invariant differential forms in question generate the stable real cohomology of the general linear group, as shown by Borel. By integrating such invariant forms over the space of metrics on a graph, we define canonical period integrals associated to graphs, which we prove are always finite and take the form of generalised Feynman integrals. Furthermore, canonical integrals can be used to detect the non-vanishing of homology classes in the commutative graph complex. This theory leads to insights about the structure of the cohomology of the commutative graph complex, and new connections between graph complexes, motivic Galois groups and quantum field theory.

Keywords: graph complexes, Outer space, tropical curves, motives, multiple zeta values, Feynman integrals, quantum field theory.

MSC: 18G85, 11F75, 11M32, 81Q30

Received: March 4, 2021; in final form November 14, 2021; Published online November 23, 2021

Language: English

DOI: 10.3842/SIGMA.2021.103



Bibliographic databases:
ArXiv: 2101.04419


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