论文标题

对北极星声速的深色和热储层贡献

Dark and thermal reservoir contributions to polariton sound velocity

论文作者

Grudinina, A. M., Voronova, N. S.

论文摘要

尽管固有​​的驱动驱动性系统,但光学微腔中的激子 - 孔子可以形成宏观连贯的状态。与平衡的玻璃体流体相比,极化冷凝水具有多种特殊性,使它们与著名的教科书示例不同。这样的特殊性就是存在由泵与光学活性颗粒一起产生的深色激子。它们可以极大地影响冷凝水的基本激发频谱,从而改变其超流体特性。在这里,我们从理论上分析了明亮和黑暗的“水库”人群对不连贯驱动的北极星的声速$ c_s $的影响。考虑了基本不同的凝聚态与固化比率的脉冲和连续泵送方案。我们表明,深色激子的贡献导致$ C_S $的大幅降低,并偏离了系统化学电位上的平方根行为(可衡量的冷凝物蓝光)。重要的是,我们的模型允许通过实验跟踪$ C_S $针对冷凝物蓝光来定义系统中深色激子的密度,并在给定的温度下拟合依赖性。

Exciton-polaritons in an optical microcavity can form a macroscopically coherent state despite being an inherently driven-dissipative system. In comparison with equilibrium bosonic fluids, polaritonic condensates possess multiple peculiarities that make them behave differently from well-known textbook examples. One such peculiarity is the presence of dark excitons which are created by the pump together with optically-active particles. They can considerably affect the spectrum of elementary excitations of the condensate and hence change its superfluid properties. Here, we theoretically analyze the influence of the bright and dark ``reservoir'' populations on the sound velocity $c_s$ of incoherently-driven polaritons. Both pulsed and continuous-wave pumping schemes characterized by essentially different condensate-to-reservoir ratio are considered. We show that the dark exciton contribution leads to considerable lowering of $c_s$ and to its deviation from the square-root-like behavior on the system's chemical potential (measurable condensate blueshift). Importantly, our model allows to unambiguously define the density of dark excitons in the system by experimentally tracking $c_s$ against the condensate blueshift and fitting the dependence at a given temperature.

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