4.4 Article

The crossover between lasing and polariton condensation in optical microcavities

Journal

SOLID STATE COMMUNICATIONS
Volume 124, Issue 3, Pages 103-107

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/S0038-1098(02)00453-2

Keywords

optical properties; phase transition

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We study a model of a photon mode dipole-coupled to a medium of two-level oscillators in a microcavity in the presence of dephasing processes introduced by coupling to external baths. Decoherence processes can be classified as pair-breaking or non-pair-breaking in analogy with magnetic or non-magnetic impurities in superconductors. In the absence of dephasing, the ground state of the model is a polariton condensate with a gap in the excitation spectrum. Increase of the pair-breaking parameter gamma reduces the gap, which becomes zero at a critical value gamma(Cl); for large gamma, the conventional laser regime is obtained in a way that demonstrates its close analogy to a gapless superconductor. In contrast, weak non-pair-breaking processes have no qualitative effect on the condensate or the existence of a gap, although they lead to inhomogeneous broadening of the excitations. (C) 2002 Elsevier Science Ltd. All rights reserved.

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