Publication | Open Access
Time-resolved and antibunching experiments on single quantum dots at 1300nm
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Citations
24
References
2006
Year
Quantum SciencePhotonicsPhotoluminescenceEngineeringPhysicsPlanar MicrocavityNatural SciencesQuantum DeviceApplied PhysicsQuantum DotsAtomic PhysicsBiexciton TransitionsPhotonic Integrated CircuitQuantum EntanglementQd PlQuantum Photonic DeviceOptoelectronicsSingle Quantum Dots
We present time integrated and time-resolved photoluminescence (PL) measurements on a single InAs∕GaAs quantum dot (QD), embedded in a planar microcavity, emitting in the 1300nm telecom band. The results of both measurements clearly identify the exciton and biexciton transitions from a single QD. By optimizing the extraction efficiency of the QD PL into the single mode fibers and carefully tuning two InGaAs avalanche photodiodes, we were able to measure the second order correlation function with integration times comparable to those made with silicon based technology. These measurements demonstrate that our single QDs are efficient sources of triggered single photons for quantum key distribution in the O band.
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