Recent experiments have demonstrated an open system realization of the Dicke quantum phase transition in the motional degrees of freedom of an optically driven Bose–Einstein condensate in a cavity. Relevant collective excitations of this light–matter system are polaritonic in nature, allowing access to the quantum critical behavior of the Dicke model through light leaking out of the cavity. This opens the path to using photodetection-based quantum optical techniques to study the dynamics and excitations of this elementary quantum critical system. We first discuss the photon flux observed at the cavity face and find that it displays a different scaling law near criticality than that obtained from the mean-field theory for the equivalent clos...
The ability to conduct experiments at length scales and temperatures at which interesting and potent...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
This work was supported by the Swiss National Science Foundation (SNSF) through a DACH project 20002...
Recent experiments have demonstrated an open system realization of the Dicke quantum phase transitio...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
Information about quantum phase transitions in conventional condensed matter systems, must be sough...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We observe dramatic changes in the near-field and far-field emission from a semiconductor microcavit...
An extended Dicke model, which includes atom-atom interactions and a driving classical laser field, ...
We analyze the quantum phase transition-like behavior in the lowest energy state of a two-site coupl...
Organic molecular materials have unique optoelectronic properties, which make them especially well s...
Exciton-polaritons are composite quasiparticles that result from the coupling of excitonic transitio...
In this work, we study the exciton-polariton condensate phase transition in a microcavity matter-lig...
The ability to conduct experiments at length scales and temperatures at which interesting and potent...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
This work was supported by the Swiss National Science Foundation (SNSF) through a DACH project 20002...
Recent experiments have demonstrated an open system realization of the Dicke quantum phase transitio...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
Information about quantum phase transitions in conventional condensed matter systems, must be sough...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We observe dramatic changes in the near-field and far-field emission from a semiconductor microcavit...
An extended Dicke model, which includes atom-atom interactions and a driving classical laser field, ...
We analyze the quantum phase transition-like behavior in the lowest energy state of a two-site coupl...
Organic molecular materials have unique optoelectronic properties, which make them especially well s...
Exciton-polaritons are composite quasiparticles that result from the coupling of excitonic transitio...
In this work, we study the exciton-polariton condensate phase transition in a microcavity matter-lig...
The ability to conduct experiments at length scales and temperatures at which interesting and potent...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
This work was supported by the Swiss National Science Foundation (SNSF) through a DACH project 20002...