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High-speed flow of interacting organic polaritons

机译:相互作用有机极化子的高速流动

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摘要

The strong coupling of an excitonic transition with an electromagnetic mode results in composite quasi-particles called exciton polaritons, which have been shown to combine the best properties of their individual components in semiconductor microcavities. However, the physics and applications of polariton flows in organic materials and at room temperature are still unexplored because of the poor photon confinement in such structures. Here, we demonstrate that polaritons formed by the hybridization of organic excitons with a Bloch surface wave are able to propagate for hundreds of microns showing remarkable third-order nonlinear interactions upon high injection density. These findings pave the way for the study of organic nonlinear light–matter fluxes and for a technologically promising route of the realization of dissipation-less on-chip polariton devices operating at room temperature.
机译:激子跃迁与电磁模的强耦合会产生称为激子极化子的复合准粒子,已证明它们结合了半导体微腔中各个成分的最佳性能。然而,由于这种结构中的光子限制较弱,因此在有机材料中以及在室温下极化子流的物理和应用仍未得到开发。在这里,我们证明了由有机激子与Bloch表面波杂交形成的极化子能够传播数百微米,在高注入密度下显示出显着的三阶非线性相互作用。这些发现为有机非线性光通量的研究以及实现在室温下运行的无损耗片上极化子器件的技术上有希望的途径铺平了道路。

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