The generation of coherent and indistinguishable single photons is a critical step for photonic quantum technologies in information processing and metrology. A promising system is the resonant optical excitation of solid-state emitters embedded in wavelength-scale three-dimensional cavities. However, the challenge here is to reject the unwanted excitation to a level below the quantum signal. We demonstrate this using coherent photon scattering from a quantum dot in a micropillar. The cavity is shown to enhance the fraction of light that is resonantly scattered toward unity, generating antibunched indistinguishable photons that are 16 times narrower than the time-bandwidth limit, even when the transition is near saturation. Finally, determin...
Semiconductor quantum dots embedded in micropillar cavities are a promising system for use in quantu...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
We report the efficient coherent photon scattering from a semiconductor quantum dot embedded in a pi...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Semiconductor quantum dots embedded in micropillar cavities are a promising system for use in quantu...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
We report the efficient coherent photon scattering from a semiconductor quantum dot embedded in a pi...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Semiconductor quantum dots embedded in micropillar cavities are a promising system for use in quantu...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...