Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investigate quantum optical effects in solid-state systems. These include quantum interference, Rabi oscillations, as well as photon antibunching, and were previously observable only in isolated atoms or ions. In addition, QDs can be integrated into optical microcavities, making them attractive for applications in quantum information processing and high efficiency quantum light sources. Despite much progress towards these goals, one area that was little explored is coherent control of such solid-state quantum emitters in cavities. The main technical hurdle lies in overcoming the laser background scattering. By using a sample structure in which QDs a...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
International audienceThe strong-coupling regime of cavity quantum electrodynamics (QED) represents ...
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...
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...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
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...
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 strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
International audienceThe strong-coupling regime of cavity quantum electrodynamics (QED) represents ...
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...
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...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
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...
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 strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
International audienceThe strong-coupling regime of cavity quantum electrodynamics (QED) represents ...