Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single radiation-field mode. When an atom is in strong coupling with a cavity mode1,2, it is possible to realize key quantum information processing (QIP) tasks, such as controlled coherent coupling and entanglement of distinguishable quantum systems. Realizing these tasks in the solid state is clearly desirable, and coupling semiconductor self-assembled quantum dots (QDs) to monolithic optical cavities is a promising route to this end. However, validating the efficacy of QDs in QIP applications requires confirmation of the quantum nature of the QD-cavity system in the strong coupling regime. Here we find a confirmation by observing quantum correlati...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
A single quantum dot embedded in a photonic crystal defect cavity allows for the investigation of ca...
The experiments show that the coupled QD-cavity system is a promising candidate for probing CQED as ...
The experiments show that the coupled QD-cavity system is a promising candidate for probing CQED as ...
We describe the resonant excitation of a single quantum dot that is strongly coupled to a photonic c...
In this paper, we review some recent cavity quantum electrodynamic (CQED) experiments with single qu...
In this paper, we review some recent cavity quantum electrodynamic (CQED) experiments with single qu...
We demonstrate a deterministic approach to the implementation of solid-state cavity quantum electrod...
Off -resonant quantum dot -cavity coupling is studied both experimentally and theoretically. A theor...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
A single quantum dot embedded in a photonic crystal defect cavity allows for the investigation of ca...
The experiments show that the coupled QD-cavity system is a promising candidate for probing CQED as ...
The experiments show that the coupled QD-cavity system is a promising candidate for probing CQED as ...
We describe the resonant excitation of a single quantum dot that is strongly coupled to a photonic c...
In this paper, we review some recent cavity quantum electrodynamic (CQED) experiments with single qu...
In this paper, we review some recent cavity quantum electrodynamic (CQED) experiments with single qu...
We demonstrate a deterministic approach to the implementation of solid-state cavity quantum electrod...
Off -resonant quantum dot -cavity coupling is studied both experimentally and theoretically. A theor...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...