Decomposition of Feynman Integrals on the Maximal Cut by Intersection Numbers
Abstract
We elaborate on the recent idea of a direct decomposition of Feynman integrals onto a basis of master integrals on maximal cuts using intersection numbers. We begin by showing an application of the method to the derivation of contiguity relations for special functions, such as the Euler beta function, the Gauss hypergeometric function, and the Appell function. Then, we apply the new method to decompose Feynman integrals whose maximal cuts admit 1-form integral representations, including examples that have from two to an arbitrary number of loops, and/or from zero to an arbitrary number of legs. Direct constructions of differential equations and dimensional recurrence relations for Feynman integrals are also discussed. We present two novel approaches to decomposition-by-intersections in cases where the maximal cuts admit a 2-form integral representation, with a view towards the extension of the formalism to -form representations. The decomposition formulae computed through the use of intersection numbers are directly verified to agree with the ones obtained using integration-by-parts identities.
Cite
@article{arxiv.1901.11510,
title = {Decomposition of Feynman Integrals on the Maximal Cut by Intersection Numbers},
author = {Hjalte Frellesvig and Federico Gasparotto and Stefano Laporta and Manoj K. Mandal and Pierpaolo Mastrolia and Luca Mattiazzi and Sebastian Mizera},
journal= {arXiv preprint arXiv:1901.11510},
year = {2019}
}
Comments
115 pages, 29 figures; references added; additional examples added; matches published version