Quantum dots in photonic crystals are interesting both as a testbed for fundamental cavity quantum electrodynamics (QED) experiments and as a platform for quantum and classical information processing. We describe a technique to coherently access the QD-cavity system by resonant light scattering. Among other things, the coherent access enables a giant optical nonlinearity associated with the saturation of a single quantum dot strongly coupled to a photonic crystal cavity. We explore this nonlinearity to implement controlled phase and amplitude modulation between two modes of light at the single photon level—a nonlinearity observed so far only in atomic physics systems. We also measured the photon statistics of the reflected beam at various d...
Optical nonlinearities enable photon-photon interaction and lie at the heart of several proposals fo...
Abstract: Methods to improve single photon generation via photon-blockade in a photonic-crystal cavi...
Photonic crystal cavities can localize light into nanoscale volumes with high quality factors. This ...
A quantum dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
A quautmn dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
This article reviews our recent work on the development of nanophotonic devices for quantum informat...
This article reviews our recent work on the development of nanophotonic devices for quantum informat...
The strong coupling regime between a single emitter and the mode of an optical resonator allows for ...
Quantum dots in photonic crystals are interesting because of their potential in quantum information ...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
Optical nonlinearities enable photon-photon interaction and lie at the heart of several proposals fo...
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 ...
Optical nonlinearities enable photon-photon interaction and lie at the heart of several proposals fo...
Abstract: Methods to improve single photon generation via photon-blockade in a photonic-crystal cavi...
Photonic crystal cavities can localize light into nanoscale volumes with high quality factors. This ...
A quantum dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
A quautmn dot strongly coupled to a photonic crystal resonator is used to investigate cavity quantum...
We coherently probe a quantum dot that is strongly coupled to a photonic crystal nano-cavity by scat...
A single semiconductor quantum dot that is strongly coupled to a photonic crystal nanocavity yields ...
This article reviews our recent work on the development of nanophotonic devices for quantum informat...
This article reviews our recent work on the development of nanophotonic devices for quantum informat...
The strong coupling regime between a single emitter and the mode of an optical resonator allows for ...
Quantum dots in photonic crystals are interesting because of their potential in quantum information ...
We coherently probe a quantum dot, strongly coupled to a photonic crystal nano-cavity, using a reson...
Optical nonlinearities enable photon-photon interaction and lie at the heart of several proposals fo...
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 ...
Optical nonlinearities enable photon-photon interaction and lie at the heart of several proposals fo...
Abstract: Methods to improve single photon generation via photon-blockade in a photonic-crystal cavi...
Photonic crystal cavities can localize light into nanoscale volumes with high quality factors. This ...