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Open Quantum Systems Decoherence Quantum Simulation

Antibunching in locally driven dissipative Lieb lattices

arXiv
Authors: Alex Ferrier, Michał Matuszewski, Piotr Deuar, Marzena H. Szymańska

Year

2025

Paper ID

16387

Status

Preprint

Abstract Read

~2 min

Abstract Words

119

Citations

N/A

Abstract

In Lieb lattices, geometric frustration and destructive interference of hopping cancels the occupation of certain sites, leading to flat-band physics. Here, we show numerically how, in the driven-dissipative Bose-Hubbard (DDBH) model arranged into Lieb lattices and related geometries, specific localised driving schemes can repurpose this interference to generate enhanced antibunching via a mechanism similar to the so-called unconventional photon blockade. Stochastic simulations using the positive-P method allow us to calculate occupations and second order correlations exactly for extended lattices. We use this to optimise the parameters for the possible observation of this effect in polariton micropillar experiments. This work demonstrates the possibility of using localised driving and interference effects to generate non-trivial quantum correlations in open quantum lattice systems.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • In Lieb lattices, geometric frustration and destructive interference of hopping cancels the occupation of certain sites, leading to flat-band physics.

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