Abstract
We propose an all-optical nonlinear router based on a double barrier gate connected to periodically modulated guides. A semiconductor microcavity is driven nonresonantly in-between the barriers to form an exciton-polariton condensate on a discrete state that is subject to the exciton blueshift. The subsequent coherent optical signal is allowed to propagate through a guide provided that the condensate energy is resonant with a miniband or is blocked if it faces a gap. While a symmetric sample operates as an optical switch, its asymmetric counterpart embodies a router turned to be polarization selective under applied magnetic field. © 2013 AIP Publishing LLC.
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CITATION STYLE
Flayac, H., & Savenko, I. G. (2013). An exciton-polariton mediated all-optical router. Applied Physics Letters, 103(20). https://doi.org/10.1063/1.4830007
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