Quantum critical regime in a quadratically-driven nonlinear photonic lattice
Abstract
We study an array of coupled optical cavities in presence of two-photon driving and dissipation. The system displays a critical behavior similar to that of a quantum Ising model at finite temperature. Using the corner-space renormalization method, we compute the steady-state properties of finite lattices of varying size, both in one- and two-dimensions. From a finite-size scaling of the average of the photon number parity, we highlight the emergence of a critical point in regimes of small dissipations, belonging to the quantum Ising universality class. For increasing photon loss rates, a departure from this universal behavior signals the onset of a quantum critical regime, where classical fluctuations induced by losses compete with long-range quantum correlations.
Keywords
Cite
@article{arxiv.1809.10138,
title = {Quantum critical regime in a quadratically-driven nonlinear photonic lattice},
author = {Riccardo Rota and Fabrizio Minganti and Cristiano Ciuti and Vincenzo Savona},
journal= {arXiv preprint arXiv:1809.10138},
year = {2019}
}
Comments
Accepted for publication on Physical Review Letters