Publication | Closed Access
Efficient Single-Photon Sources Based on Low-Density Quantum Dots in Photonic-Crystal Nanocavities
280
Citations
24
References
2006
Year
Quantum PhotonicsEngineeringCavity QedColloidal NanocrystalsPhotonic CrystalsQuantum DotsPractical ImplementationLow-density Quantum DotsNanophotonicsPhotonicsQuantum ScienceEfficient Single-photon SourcesPhysicsNanotechnologyPhotonic MaterialsPhotonic-crystal NanocavitiesPhotonic DeviceEfficient Single-photon SourceQuantum OpticApplied PhysicsQuantum Photonic DeviceOptoelectronicsPolarization-encoded Schemes
An efficient single-photon source based on low-density InGaAs quantum dots in a photonic-crystal nanocavity is demonstrated. The single-photon source features the effects of a photonic band gap, yielding a single-mode spontaneous emission coupling efficiency as high as beta = 92% and a linear polarization degree up to p = 95%. This appealing performance makes it well suited for practical implementation of polarization-encoded schemes in quantum cryptography.
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