Publication | Closed Access
Scalable implementation of strongly coupled cavity-quantum dot devices
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Citations
15
References
2009
Year
Quantum SciencePhotonicsPillar MicrocavitiesEngineeringQuantum ComputingPhysicsQuantum DeviceCavity QedApplied PhysicsQuantum DotsSitu Optical LithographyLight–matter InteractionScalable ImplementationQuantum Photonic DeviceMicro-optical ComponentOptoelectronicsNanophotonicsLow Temperature
Using low temperature in situ optical lithography, we fabricate pillar microcavities with quality factors around 2×104. Each pillar embeds a spatially and spectrally resonant single InGaAs quantum dot (QD). Light-matter strong coupling regime is reached for 100% of the fabricated pillars for which the resonance can be tuned through temperature. This is a demonstration of scalable and deterministic implementation of strongly coupled cavity-QD devices.
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