We propose the simulation of quantum-optical systems in the ultrastrong-coupling regime using a variational quantum algorithm. More precisely, we introduce a short-depth variational form to prepare the groundstate of the multimode Dicke model on a quantum processor and present proof-of-principle results obtained via cloud access to an IBM device. We moreover provide an algorithm for characterizing the groundstate by Wigner state tomography. Our work is a first step towards digital quantum simulation of quantum-optical systems with potential applications to the spin-boson, Kondo and Jahn-Teller models.
@article{arxiv.1909.08640,
title = {Variational Quantum Simulation of Ultrastrong Light-Matter Coupling},
author = {Agustin Di Paolo and Panagiotis Kl. Barkoutsos and Ivano Tavernelli and Alexandre Blais},
journal= {arXiv preprint arXiv:1909.08640},
year = {2020}
}