We develop a theoretical formalism to model the linear spectrum of a quantum dot embedded in a high-quality cavity, in the presence of an arbitrary mechanism modifying the homogeneous spectrum of the quantum dot. Within the simple assumption of Lorentzian broadening, we show how the known predictions of cavity quantum electrodynamics are recovered. We then apply our model to the case where the quantum dot interacts with an acoustic-phonon reservoir, producing phonon sidebands in the response of the bare dot. In this case, we show that the sidebands can sustain the spectral response of the cavitylike peak even at moderate dot-cavity detuning, thus, supporting recent experimental findings
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 ...
We present a semianalytic and asymptotically exact solution to the problem of phonon-induced decoher...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
We model the emission spectrum of a quantum dot embedded in a (e.g. photonic crystal) nanocavity, us...
Off -resonant quantum dot -cavity coupling is studied both experimentally and theoretically. A theor...
We present a quantum optics formalism to study the intensity power broadening of a semiconductor qua...
In the first part of this dissertation, a dissipative quantum dot (QD) -cavity system coupled to a l...
We describe the resonant excitation of a single quantum dot that is strongly coupled to a photonic c...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
© Published under licence by IOP Publishing Ltd. The influence of phonon and electron reservoirs on ...
We study the crucial role played by the solid-state environment in determining the photon emission c...
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 ...
We present a semianalytic and asymptotically exact solution to the problem of phonon-induced decoher...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
We model the emission spectrum of a quantum dot embedded in a (e.g. photonic crystal) nanocavity, us...
Off -resonant quantum dot -cavity coupling is studied both experimentally and theoretically. A theor...
We present a quantum optics formalism to study the intensity power broadening of a semiconductor qua...
In the first part of this dissertation, a dissipative quantum dot (QD) -cavity system coupled to a l...
We describe the resonant excitation of a single quantum dot that is strongly coupled to a photonic c...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
© Published under licence by IOP Publishing Ltd. The influence of phonon and electron reservoirs on ...
We study the crucial role played by the solid-state environment in determining the photon emission c...
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 ...
We present a semianalytic and asymptotically exact solution to the problem of phonon-induced decoher...