Self-assembled quantum dots (QDs) are ideal structures in which to test theories of open quantum systems: confined exciton states can be coherently manipulated and their decoherence properties are dominated by interactions with acoustic phonons. We here describe the interaction of a pair of un-coupled, driven, QD excitons with a common phonon environment, and find that this coupling effectively generates two kinds of interaction between the two QDs: an elastic coupling mediated by virtual phonons and an inelastic coupling mediated by real phonons. We show that both of these interactions produce steady state entanglement between the two QD excitons. We also show that photon correlations in the emission of the QDs can provide a signature of t...
The coupling between longitudinal-optical (LO) phonons and neutral excitons in two different kinds o...
In a coupled quantum-dot–nanocavity system, the photoluminescence from an off-resonance cavity mode ...
We have developed a full quantum microscopic theory to analyze the time evolution of transversal and...
Semiconductor quantum dots have emerged as an especially promising platform for the generation of po...
We investigate the temperature dependence of photon coherence properties through two-photon interfer...
Recent proposals and advances in quantum simulations, quantum cryptography, and quantum communicatio...
We provide a self-contained review of master equation approaches to modelling phonon effects in opti...
We present an optical study of two closely stacked self-assembled InAs / GaAs quantum dots. Th...
V.P. is supported by the EPSRC Scottish Doctoral Training Centre in condensed matter physics (Grant ...
Solid state-based light emitters such as semiconductor quantum dots (QDs) have been demonstrated to ...
Les boîtes quantiques (BQ) semi-conductrices possèdent une structure électronique discrète qui en fa...
International audienceWe present a numerically complete study of the combined dynamics of a quantum ...
While many quantum-optical phenomena are already well established in the atomic systems, like the ph...
The most important difference between ultrastrong and non-ultrastrong coupling regimes is that the g...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
The coupling between longitudinal-optical (LO) phonons and neutral excitons in two different kinds o...
In a coupled quantum-dot–nanocavity system, the photoluminescence from an off-resonance cavity mode ...
We have developed a full quantum microscopic theory to analyze the time evolution of transversal and...
Semiconductor quantum dots have emerged as an especially promising platform for the generation of po...
We investigate the temperature dependence of photon coherence properties through two-photon interfer...
Recent proposals and advances in quantum simulations, quantum cryptography, and quantum communicatio...
We provide a self-contained review of master equation approaches to modelling phonon effects in opti...
We present an optical study of two closely stacked self-assembled InAs / GaAs quantum dots. Th...
V.P. is supported by the EPSRC Scottish Doctoral Training Centre in condensed matter physics (Grant ...
Solid state-based light emitters such as semiconductor quantum dots (QDs) have been demonstrated to ...
Les boîtes quantiques (BQ) semi-conductrices possèdent une structure électronique discrète qui en fa...
International audienceWe present a numerically complete study of the combined dynamics of a quantum ...
While many quantum-optical phenomena are already well established in the atomic systems, like the ph...
The most important difference between ultrastrong and non-ultrastrong coupling regimes is that the g...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
The coupling between longitudinal-optical (LO) phonons and neutral excitons in two different kinds o...
In a coupled quantum-dot–nanocavity system, the photoluminescence from an off-resonance cavity mode ...
We have developed a full quantum microscopic theory to analyze the time evolution of transversal and...