Publication | Open Access
Fully tuneable, Purcell-enhanced solid-state quantum emitters
28
Citations
39
References
2015
Year
Quantum PhotonicsEngineeringCavity QedFull Energy ControlSemiconductor Cavity-emitter SystemProgrammable PhotonicsPhotonic CrystalsQuantum ComputingSingle Exciton TransitionNanophotonicsPhotonicsQuantum SciencePhysicsQuantum DevicePhotonic DeviceQuantum TechnologyApplied PhysicsQuantum Photonic DeviceOptoelectronics
We report the full energy control over a semiconductor cavity-emitter system, consisting of single Stark-tunable quantum dots embedded in mechanically reconfigurable photonic crystal membranes. A reversible wavelength tuning of the emitter over 7.5 nm as well as an 8.5 nm mode shift are realized on the same device. Harnessing these two electrical tuning mechanisms, a single exciton transition is brought on resonance with the cavity mode at several wavelengths, demonstrating a ten-fold enhancement of its spontaneous emission. These results open the way to bring several cavity-enhanced emitters mutually into resonance and therefore represent a key step towards scalable quantum photonic circuits featuring multiple sources of indistinguishable single photons.
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