Publication | Open Access
Electro-optical switching between polariton and cavity lasing in an InGaAs quantum well microcavity
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Citations
36
References
2014
Year
PhotonicsQuantum ScienceTemporal CoherenceEngineeringPolariton DynamicPhysicsCavity QedMicrocavity Exciton PolaritonsCavity LasingApplied PhysicsElectro-optical SwitchingOptomechanicsQuantum Photonic DeviceIngaas QuantumOptoelectronicsNanophotonicsPolariton Laser
We report on the condensation of microcavity exciton polaritons under optical excitation in a microcavity with four embedded InGaAs quantum wells. The polariton laser is characterized by a distinct non-linearity in the input-output-characteristics, which is accompanied by a drop of the emission linewidth indicating temporal coherence and a characteristic persisting emission blueshift with increased particle density. The temporal coherence of the device at threshold is underlined by a characteristic drop of the second order coherence function to a value close to 1. Furthermore an external electric field is used to switch between polariton regime, polariton condensate and photon lasing.
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