论文标题

光在充满染料填充的微腔内的光的运输和定位

Transport and localization of light inside a dye-filled microcavity

论文作者

Dhar, Himadri S., Rodrigues, João D., Walker, Benjamin T., Oulton, Rupert F., Nyman, Robert A., Mintert, Florian

论文摘要

多模填充染料填充的微型腔内的光 - 物质相互作用的驱动性性质使其成为研究非平衡现象(例如运输)的理想系统。在这项工作中,我们研究了如何在这种微腔内有效地运输光线,并通过不连贯的吸收和发射过程介导。特别是,我们表明存在两个截然不同的运输制度,即。导电和局部化,是由染料分子的热效应与驾驶和损失的非平衡影响之间的复杂相互作用产生的。当几种局部腔模式经历了动力学相向凝结或激光状态时,导电状态下的光的传播发生。此外,我们观察到,尽管这种运输对腔电位中的弱疾病具有鲁棒性,但即使在良好的热疗中,强障碍也会导致光定位。重要的是,光的传输和局部定位是非平衡动力学的表现,而不是系统中的任何一致干扰。

The driven-dissipative nature of light-matter interaction inside a multimode, dye-filled microcavity makes it an ideal system to study nonequilibrium phenomena, such as transport. In this work, we investigate how light is efficiently transported inside such a microcavity, mediated by incoherent absorption and emission processes. In particular, we show that there exist two distinct regimes of transport, viz. conductive and localized, arising from the complex interplay between the thermalizing effect of the dye molecules and the nonequilibrium influence of driving and loss. The propagation of light in the conductive regime occurs when several localized cavity modes undergo dynamical phase transitions to a condensed, or lasing, state. Further, we observe that while such transport is robust for weak disorder in the cavity potential, strong disorder can lead to localization of light even under good thermalizing conditions. Importantly, the exhibited transport and localization of light is a manifestation of the nonequilibrium dynamics rather than any coherent interference in the system.

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