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Spatiotemporal coherence of non-equilibrium multimode photon condensates

机译:非平衡多模光子凝聚物的时空相干性

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We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically pumped, dye-filled microcavity. We find that coherence is long-range in space and time above condensation threshold, but short-range below threshold, compatible with thermal-equilibrium theory. Far above threshold, the condensate is no longer at thermal equilibrium and is fragmented over non-degenerate, spatially overlapping modes. A microscopic theory including cavity loss, molecular structure and relaxation shows that this multimode condensation is similar to multimode lasing induced by imperfect gain clamping.
机译:我们报告了在光学泵浦,充满染料的微腔中观察到的玻色-爱因斯坦凝聚光子的量子相干性。我们发现,相干性在空间和时间上都高于凝结阈值,但在阈值以下却具有短距离,这与热平衡理论兼容。凝结水远远超过阈值,不再处于热平衡状态,并在非退化的空间重叠模式中破碎。包括空穴损失,分子结构和弛豫的微观理论表明,这种多模凝结类似于由不完全增益钳制引起的多模激射。

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