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Hydrodynamic nucleation of vortices and solitons in a resonantly excited polariton superfluid
Published 24 Jun 2010 in cond-mat.other and physics.optics | (1006.4755v1)
Abstract: We present a theoretical study of the hydrodynamic properties of a quantum gas of exciton-polaritons in a semiconductor microcavity under a resonant laser excitation. The effect of a spatially extended defect on the superfluid flow is investigated as a function of the flow speed. The processes that are responsible for the nucleation of vortices and solitons in the wake of the defect are characterized, as well as the regimes where the superfluid flow remains unperturbed. Specific features due to the non-equilibrium nature of the polariton fluid are put in evidence.
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