Infrared and transcendental structure of two-loop supersymmetric QCD amplitudes
Abstract
Using a careful choice of infrared (IR) subtraction scheme, we demonstrate the cancellation of all terms with transcendental weights 0,1,2 from the finite part of the full-color two-loop four-gluon supersymmetric QCD amplitude, with massless supersymmetric quarks. This generalizes the previously observed cancellation of weight-2 terms in the superconformal theory, where for gauge group SU. The subtraction scheme follows naturally both from general IR factorization principles and from an integrand-level analysis of divergences in this amplitude. The divergences are written in terms of scalar triangle integrals whose expressions are known to all orders in the dimensional regulator . We also present integrated expressions for the full-color two-loop four-point amplitudes with both matter and vectors on external legs in which lower-weight terms also cancel using an appropriate IR scheme. This provides us with values for the two-loop cusp, gluonic, and quark anomalous dimensions in supersymmetric QCD, which are cross-checked between the three different amplitudes.
Keywords
Cite
@article{arxiv.1911.10218,
title = {Infrared and transcendental structure of two-loop supersymmetric QCD amplitudes},
author = {Gregor Kälin and Gustav Mogull and Alexander Ochirov and Bram Verbeek},
journal= {arXiv preprint arXiv:1911.10218},
year = {2020}
}
Comments
36 pages + appendices + references; v2: fixed references and minor typos