We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton-polaritons confined in a micropillar cavity. The statistics are acquired by means of a photon number resolving transition edge sensor. We directly observe that the photon-number distribution evolves with the non-resonant optical excitation power from geometric to quasi-Poissonian statistics, which is canonical for a transition from a thermal to a coherent state. Moreover, the photon-number distribution allows evaluating the higher-order photon correlations, shedding further light on the coherence formation and phase transition of the polariton condensate. The experimental data is analyzed in terms of thermal coherent states which allows one ...
A theoretical model is presented which explains the dominant decoherence process in a microcavity po...
We implement full polarization tomography on photon correlations in a spinor exciton-polariton conde...
In this work, we combine a systematic experimental investigation of the power- and temperature-depen...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
We have observed momentum- and position-resolved spectra and images of the photoluminescence from th...
© 2018 American Physical Society. We study the influence of spatial confinement on the second-order ...
A bosonic condensate of exciton polaritons in a semiconductor microcavity is a macroscopic quantum s...
The work was supported by the Russian Science Foundation (Grant No. 14-12-01372) and the State of Ba...
We investigate the appearance of spontaneous coherence in the parametric emission from planar semico...
In a standard semiconductor laser, electrons and holes recombine via stimulated emission to emit coh...
The authors acknowledge financial support from EPSRC program “TOPNES” (Grant No. EP/I031014/1) and E...
Optical trapping has been proven to be an effective method of separating exciton-polariton condensat...
We estimate the condensation temperature for microcavity polaritons, allowing for their internal str...
A theoretical model is presented which explains the dominant decoherence process in a microcavity po...
We implement full polarization tomography on photon correlations in a spinor exciton-polariton conde...
In this work, we combine a systematic experimental investigation of the power- and temperature-depen...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We measure the full photon-number distribution emitted from a Bose condensate of microcavity exciton...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
We have observed momentum- and position-resolved spectra and images of the photoluminescence from th...
© 2018 American Physical Society. We study the influence of spatial confinement on the second-order ...
A bosonic condensate of exciton polaritons in a semiconductor microcavity is a macroscopic quantum s...
The work was supported by the Russian Science Foundation (Grant No. 14-12-01372) and the State of Ba...
We investigate the appearance of spontaneous coherence in the parametric emission from planar semico...
In a standard semiconductor laser, electrons and holes recombine via stimulated emission to emit coh...
The authors acknowledge financial support from EPSRC program “TOPNES” (Grant No. EP/I031014/1) and E...
Optical trapping has been proven to be an effective method of separating exciton-polariton condensat...
We estimate the condensation temperature for microcavity polaritons, allowing for their internal str...
A theoretical model is presented which explains the dominant decoherence process in a microcavity po...
We implement full polarization tomography on photon correlations in a spinor exciton-polariton conde...
In this work, we combine a systematic experimental investigation of the power- and temperature-depen...