Optical nonlinearities at the single-photon level are key ingredients for future photonic quantum technologies. Prime candidates for the realization of the strong photon-photon interactions necessary for implementing quantum information processing tasks, as well as for studying strongly correlated photons in an integrated photonic device setting, are quantum dots embedded in photonic-crystal nanocavities. Here, we report strong quantum correlations between photons on picosecond timescales. We observe (i) photon antibunching upon resonant excitation of the lowest-energy polariton state, proving that the first cavity photon blocks the subsequent injection events, and (ii) photon bunching when the laser field is in two-photon resonance with th...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
International audienceCavity-polaritons in semiconductor microstructures have emerged as a promising...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
Optical nonlinearities at the single-photon level are key ingredients for future photonic quantum te...
Modern nano-fabrication technologies allow to realize photonic propagation and confinement to unprec...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
Quantum dots in photonic crystals are interesting because of their potential in quantum information ...
Quantum dots in photonic crystals are interesting both as a testbed for fundamental cavity quantum e...
The strong coupling regime between a single emitter and the mode of an optical resonator allows for ...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
Cavity–polaritons in semiconductor microstructures have emerged as a promising system for exploring...
Cavity–polaritons in semiconductor microstructures have emerged as a promising system for exploring...
A quantum dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
An as yet outstanding goal in quantum optics is the realization of fast optical nonlinearities at th...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
International audienceCavity-polaritons in semiconductor microstructures have emerged as a promising...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
Optical nonlinearities at the single-photon level are key ingredients for future photonic quantum te...
Modern nano-fabrication technologies allow to realize photonic propagation and confinement to unprec...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
Quantum dots in photonic crystals are interesting because of their potential in quantum information ...
Quantum dots in photonic crystals are interesting both as a testbed for fundamental cavity quantum e...
The strong coupling regime between a single emitter and the mode of an optical resonator allows for ...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
Cavity–polaritons in semiconductor microstructures have emerged as a promising system for exploring...
Cavity–polaritons in semiconductor microstructures have emerged as a promising system for exploring...
A quantum dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
An as yet outstanding goal in quantum optics is the realization of fast optical nonlinearities at th...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...
International audienceCavity-polaritons in semiconductor microstructures have emerged as a promising...
The photon-blockade effect, where nonlinearities at the single-photon level alter the quantum statis...