Photonic Lattice Simulation of Dissipation-induced Correlations in Bosonic Systems
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We propose an optical simulation of dissipation-induced correlations in one-dimensional (1D) interacting bosonic systems, using a two-dimensional (2D) array of linear photonic waveguides and only classical light. We show that for the case of two bosons in a 1D lattice, one can simulate on-site two-body dissipative dynamics using a linear 2D waveguide array with lossy diagonal waveguides. The intensity distribution of the propagating light directly maps out the wave function, allowing one to observe the dissipation-induced correlations with simple measurements. Beyond the on-site model, we also show that a generalised model containing nearest-neighbour dissipative interaction can be engineered and probed in the proposed set-up.
Reentrant phase behavior in systems with density-induced tunneling.
Krzywicka A, Polak T Sci Rep. 2024; 14(1):10364.
PMID: 38710763 PMC: 11631971. DOI: 10.1038/s41598-024-60955-1.