Lattice N=4 super Yang-Mills at Strong Coupling
Abstract
In this paper we present results from numerical simulations of N=4 super Yang-Mills for two color gauge theory over a wide range of 't Hooft coupling using a supersymmetric lattice action \cite{Catterall:2009it}. Numerical study of this lattice theory has been stymied until recently by both sign problems and the occurrence of lattice artifact phases at strong coupling. We have recently developed a new action that appears capable of solving both problems. The resulting action possesses just rather than gauge symmetry. By explicit computations of the fermion Pfaffian we present evidence that the theory possesses no sign problem and exists in a single phase out to arbitrarily strong coupling. Furthermore, preliminary work shows that the logarithm of the supersymmetric Wilson loop varies as the square root of the 't Hooft coupling for large in agreement with holographic predictions.
Cite
@article{arxiv.2009.07334,
title = {Lattice N=4 super Yang-Mills at Strong Coupling},
author = {Simon Catterall and Joel Giedt and Goksu can Toga},
journal= {arXiv preprint arXiv:2009.07334},
year = {2021}
}
Comments
15 pages, 11 figures. Version to be published in JHEP