Bootstrapping six-gluon scattering in planar ${\cal N}=4$ super-Yang-Mills theory
Abstract
We describe the hexagon function bootstrap for solving for six-gluon scattering amplitudes in the large limit of super-Yang-Mills theory. In this method, an ansatz for the finite part of these amplitudes is constrained at the level of amplitudes, not integrands, using boundary information. In the near-collinear limit, the dual picture of the amplitudes as Wilson loops leads to an operator product expansion which has been solved using integrability by Basso, Sever and Vieira. Factorization of the amplitudes in the multi-Regge limit provides additional boundary data. This bootstrap has been applied successfully through four loops for the maximally helicity violating (MHV) configuration of gluon helicities, and through three loops for the non-MHV case.
Keywords
Cite
@article{arxiv.1407.4724,
title = {Bootstrapping six-gluon scattering in planar ${\cal N}=4$ super-Yang-Mills theory},
author = {Lance J. Dixon and James M. Drummond and Claude Duhr and Matt von Hippel and Jeffrey Pennington},
journal= {arXiv preprint arXiv:1407.4724},
year = {2014}
}
Comments
15 pages, 3 figures, 2 tables; contribution to the proceedings of Loops and Legs in Quantum Field Theory, 27 April - 2 May 2014, Weimar, Germany; v2, reference added