We demonstrate the simultaneous dressing of both vacuum-to-exciton and exciton-to-biexciton transitions of a single semiconductor quantum dot in a high-Q micropillar cavity, using photoluminescence spectroscopy. Resonant two-photon excitation of the biexciton is achieved by spectrally tuning the quantum dot emission with respect to the cavity mode. The cavity couples to both transitions and amplifies the Rabi-frequency of the likewise resonant cw laser, driving the transitions. We observe strong-field splitting of the emission lines, which depend on the driving Rabi field amplitude and the cavity-laser detuning. A dressed state theory of a driven 4-level atom correctly predicts the distinct spectral transitions observed in the emission spec...
Under a degenerate two-photon resonant excitation, the Rabi oscillation of the four-level biexciton ...
We show how cavity quantum electrodynamics using a tunable photonic crystal nanocavity in the strong...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
The authors acknowledge financial support of the Deutsche Forschungsgemeinschaft (DFG) within the SF...
We introduce the regime of simultaneous dressing of the biexciton-exciton and exciton-ground transit...
Semiconductor quantum-dot cavity systems are promising sources for solid-state-based on-demand gener...
Semiconductor quantum dots are promising sources for polarization-entangled photons. As an alternati...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
In this work we present an extensive experimental and theoretical investigation of different regimes...
A major challenge in generating single photons with a single emitter is to excite the emitter while ...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
Abstract Optical microcavities have widely been employed to enhance either the optical excitation or...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
A strongly coupled quantum dot-micropillar cavity system is studied under variation of the excitatio...
We report on the observation of the strong coupling regime between a single GaAs quantum dot and a m...
Under a degenerate two-photon resonant excitation, the Rabi oscillation of the four-level biexciton ...
We show how cavity quantum electrodynamics using a tunable photonic crystal nanocavity in the strong...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
The authors acknowledge financial support of the Deutsche Forschungsgemeinschaft (DFG) within the SF...
We introduce the regime of simultaneous dressing of the biexciton-exciton and exciton-ground transit...
Semiconductor quantum-dot cavity systems are promising sources for solid-state-based on-demand gener...
Semiconductor quantum dots are promising sources for polarization-entangled photons. As an alternati...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
In this work we present an extensive experimental and theoretical investigation of different regimes...
A major challenge in generating single photons with a single emitter is to excite the emitter while ...
We present a quantum optics approach to describe the influence of electron-acoustic phonon coupling ...
Abstract Optical microcavities have widely been employed to enhance either the optical excitation or...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
A strongly coupled quantum dot-micropillar cavity system is studied under variation of the excitatio...
We report on the observation of the strong coupling regime between a single GaAs quantum dot and a m...
Under a degenerate two-photon resonant excitation, the Rabi oscillation of the four-level biexciton ...
We show how cavity quantum electrodynamics using a tunable photonic crystal nanocavity in the strong...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...