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  • Photon-Number-Resolved Meas...
    Klaas, M; Schlottmann, E; Flayac, H; Laussy, F P; Gericke, F; Schmidt, M; Helversen, M V; Beyer, J; Brodbeck, S; Suchomel, H; Höfling, S; Reitzenstein, S; Schneider, C

    Physical review letters, 2018-Jul-27, Letnik: 121, Številka: 4
    Journal Article

    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 nonresonant 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 one to evaluate the higher-order photon correlations, shedding further light on the coherence formation and phase transition of the polariton condensate. The experimental data are analyzed in terms of thermal-coherent states, which gives direct access to the thermal and coherent fraction from the measured distributions. These results pave the way for a full understanding of the contribution of interactions in light-matter condensates in the coherence buildup at threshold.