arXiv:2306.06057·v1·High Energy Physics — Lattice
Simulating Lattice Gauge Theory with the Variational Quantum Thermalizer
Michael Fromm🇩🇪 · Owe Philipsen🇩🇪 · Michael Spannowsky🇬🇧 · Christopher Winterowd🇩🇪
Abstract
The properties of strongly-coupled lattice gauge theories at finite density as well as in real time have largely eluded first-principles studies on the lattice. This is due to the failure of importance sampling for systems with a complex action. An alternative to evade the sign problem is quantum simulation. Although still in its infancy, a lot of progress has been made in devising algorithms to address these problems. In particular, recent efforts have addressed the question of how to produce thermal Gibbs states on a quantum computer. In this study, we apply a variational quantum algorithm to a low-dimensional model which has a local abelian gauge symmetry. We demonstrate how this approach can be applied to obtain information regarding the phase diagram as well as unequal-time correlation functions at non-zero temperature.
Comments: 9 pages, 10 figures