Hidden Order in Quantum Many-body Dynamics of Driven-Dissipative Nonlinear Photonic Lattices
Quantum Physics
2019-04-17 v1
Abstract
We study the dynamics of nonlinear photonic lattices driven by two-photon parametric processes. By means of matrix-product-state based calculations, we show that a quantum many-body state with long-range hidden order can be generated from the vacuum. This order resembles that characterizing the Haldane insulator. A possible explanation highlighting the role of the symmetry of the drive, and the effect of photon loss are discussed. An implementation based in superconducting circuits is proposed and analyzed
Keywords
Cite
@article{arxiv.1806.10762,
title = {Hidden Order in Quantum Many-body Dynamics of Driven-Dissipative Nonlinear Photonic Lattices},
author = {Jirawat Tangpanitanon and Stephen R. Clark and V. M. Bastidas and Rosario Fazio and Dieter Jaksch and Dimitris G. Angelakis},
journal= {arXiv preprint arXiv:1806.10762},
year = {2019}
}
Comments
10 pages, 5 figures