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Quantum phase transitions of light

journal contribution
posted on 2024-11-01, 10:22 authored by Andrew Greentree, C Tahan, Jared ColeJared Cole, L Hollenberg
The ability to conduct experiments at length scales and temperatures at which interesting and potentially useful quantum-mechanical phenomena emerge in condensed-matter or atomic systems is now commonplace. In optics, though, the weakness with which photons interact with each other makes exploring such behaviour more difficult. Here we describe an optical system that exhibits strongly correlated dynamics on a mesoscopic scale. By adding photons to a two-dimensional array of coupled optical cavities each containing a single two-level atom in the photon-blockade regime, we form dressed states, or polaritons, that are both long-lived and strongly interacting. Our results predict that at zero temperature the system will undergo a characteristic Mott insulator (excitations localized on each site) to superfluid ( excitations delocalized across the lattice) quantum phase transition. Moreover, the ability to couple light to and from individual cavities of this system could be useful in the realization of tuneable quantum simulators and other quantum-mechanical devices.

History

Journal

Nature Physics

Volume

2

Issue

12

Start page

856

End page

861

Total pages

6

Publisher

Nature Publishing Group

Place published

United Kingdom

Language

English

Copyright

© 2006 Nature Publishing Group

Former Identifier

2006028314

Esploro creation date

2020-06-22

Fedora creation date

2011-11-14

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