arXiv · 1606.04755
Quantized Vortices and Four-Component Superfluidity of Semiconductor Excitons
Abstract
We study spatially indirect excitons of GaAs quantum wells, confined in a 10 microns electrostatic trap. Below a critical temperature of about 1 Kelvin, we detect macroscopic spatial coherence and quantised vortices in the weak photoluminescence emitted from the trap. These quantum signatures are restricted to a narrow range of density, in a dilute regime. They manifest the formation of a four-component superfluid, made by a low population of optically bright excitons coherently coupled to a dominant fraction of optically dark excitons.
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Romain Anankine, Mussie Beian, Suzanne Dang, Mathieu Alloing, Edmond Cambril, Kamel Merghem, Carmen Gomez Carbonell, Aristide Lemaitre, Francois Dubin. 2017-04-12. Quantized Vortices and Four-Component Superfluidity of Semiconductor Excitons. https://doi.org/10.1103/physrevlett.118.127402
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