We report the efficient coherent photon scattering from a semiconductor quantum dot embedded in a pillar microcavity. We show that a surface acoustic wave can periodically modulate the energy levels of the quantum dot but has a negligible effect on the cavity mode. The scattered narrow-band laser is converted into a pulsed single-photon stream, displaying an anti-bunching dip characteristic of single-photon emission. Multiple phonon sidebands are resolved in the emission spectrum, due to the absorption and emission of vibrational quanta in each scattering event
The correlation between the photons emitted by an optically pumped single quantum dot is investigate...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
We report the efficient coherent photon scattering from a semiconductor quantum dot embedded in a pi...
We demonstrate that single photons can be generated from single InAs/GaAs quantum dots in photolitho...
Although extensive research on nanostructures has led to the discovery of a number of efficient ways...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
We demonstrate the controlled transfer of photoexcited carriers by a surface acoustic wave (SAW) bet...
This thesis presents work on a series of devices for the generation of photonic quantum states based...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
Experiments towards a periodically pumped single-photon source are presented. The lateral piezoelect...
We develop a theoretical formalism to model the linear spectrum of a quantum dot embedded in a high-...
International audienceThe strong-coupling regime of cavity quantum electrodynamics (QED) represents ...
The correlation between the photons emitted by an optically pumped single quantum dot is investigate...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
We report the efficient coherent photon scattering from a semiconductor quantum dot embedded in a pi...
We demonstrate that single photons can be generated from single InAs/GaAs quantum dots in photolitho...
Although extensive research on nanostructures has led to the discovery of a number of efficient ways...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
We demonstrate the controlled transfer of photoexcited carriers by a surface acoustic wave (SAW) bet...
This thesis presents work on a series of devices for the generation of photonic quantum states based...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
The generation of coherent and indistinguishable single photons is a critical step for photonic quan...
Experiments towards a periodically pumped single-photon source are presented. The lateral piezoelect...
We develop a theoretical formalism to model the linear spectrum of a quantum dot embedded in a high-...
International audienceThe strong-coupling regime of cavity quantum electrodynamics (QED) represents ...
The correlation between the photons emitted by an optically pumped single quantum dot is investigate...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...