Optical trapping has been proven to be an effective method of separating exciton-polariton condensates from the incoherent high-energy excitonic reservoir located at the pumping laser position. This technique has significantly improved the coherent properties of exciton-polariton condensates, when compared to a quasi-homogeneous spot excitation scheme. Here, we compare two experimental methods on a sample, where a single spot excitation experiment allowed only to observe photonic lasing in the weak coupling regime. In contrast, the ring-shaped excitation resulted in the two-threshold behavior, where an exciton-polariton condensate manifests itself at the first and photon lasing at the second threshold. Both lasing regimes are trapped in an ...
Semiconductor Microcavities in the strong coupling regime are an ideal test bed for studying light m...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
In a standard semiconductor laser, electrons and holes recombine via stimulated emission to emit coh...
Exciton-polaritons (polaritons herein) offer a unique nonlinear platform for studies of collective m...
Recent experiments in microcavity polaritons have shown many effects that can be associated with the...
This work has been supported by the State of Bavaria and the Australian Research Council (ARC). The ...
We report the mean field model of nonequilibrium polariton condensation in annular effective non-Her...
We demonstrate experimentally the condensation of exciton polaritons through optical trapping. The n...
We develop the many-body theory of dipolar exciton-polaritons in an optical microcavity in crossed t...
Exciton-polaritons in semiconductor microcavities have become a model system for the studies of dyna...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
A bosonic condensate of exciton polaritons in a semiconductor microcavity is a macroscopic quantum s...
The classic Bogoliubov theory of weakly interacting Bose gases rests upon the assumption that nearly...
Excitons in lead bromide perovskites exhibit high binding energy and high oscillator strength, allow...
Semiconductor Microcavities in the strong coupling regime are an ideal test bed for studying light m...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
In a standard semiconductor laser, electrons and holes recombine via stimulated emission to emit coh...
Exciton-polaritons (polaritons herein) offer a unique nonlinear platform for studies of collective m...
Recent experiments in microcavity polaritons have shown many effects that can be associated with the...
This work has been supported by the State of Bavaria and the Australian Research Council (ARC). The ...
We report the mean field model of nonequilibrium polariton condensation in annular effective non-Her...
We demonstrate experimentally the condensation of exciton polaritons through optical trapping. The n...
We develop the many-body theory of dipolar exciton-polaritons in an optical microcavity in crossed t...
Exciton-polaritons in semiconductor microcavities have become a model system for the studies of dyna...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
A bosonic condensate of exciton polaritons in a semiconductor microcavity is a macroscopic quantum s...
The classic Bogoliubov theory of weakly interacting Bose gases rests upon the assumption that nearly...
Excitons in lead bromide perovskites exhibit high binding energy and high oscillator strength, allow...
Semiconductor Microcavities in the strong coupling regime are an ideal test bed for studying light m...
We present a time-resolved study of energy relaxation and trapping dynamics of polariton condensates...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...