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首页> 外文期刊>Angewandte Chemie >Ultralong-Range Polariton-Assisted Energy Transfer in Organic Microcavities
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Ultralong-Range Polariton-Assisted Energy Transfer in Organic Microcavities

机译:Ultralong-Rangul-有机微腔中的极性辅助能量转移

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摘要

Non-radiative energy transfer between spatially-separated molecules in a microcavity can occur when an excitonic state on both molecules are strongly-coupled to the same optical mode, forming so-called "hybrid" polaritons. Such energy transfer has previously been explored when thin-films of different molecules are relatively closely spaced (approximate to 100 nm). In this manuscript, we explore strong-coupled microcavities in which thin-films of two J-aggregated molecular dyes were separated by a spacer layer having a thickness of up to 2 mu m. Here, strong light-matter coupling and hybridisation between the excitonic transition is identified using white-light reflectivity and photoluminescence emission. We use steady-state spectroscopy to demonstrate polariton-mediated energy transfer between such coupled states over "mesoscopic distances", with this process being enhanced compared to non-cavity control structures.
机译:当两个分子上的激子态强耦合到同一光学模式,形成所谓的“混合”极性时,微腔中空间分离的分子之间可能发生非辐射能量转移。当不同分子的薄膜间隔相对较近(约为100 nm)时,这种能量转移已经被探索过。在这篇手稿中,我们探索了强耦合微腔,其中两个J聚集分子染料的薄膜被厚度高达2μm的间隔层隔开。在这里,利用白光反射率和光致发光发射确定了激子跃迁之间的强光-物质耦合和杂交。我们使用稳态光谱来证明这种耦合态之间在“介观距离”上的极化子介导的能量转移,与非腔控制结构相比,这一过程得到了增强。

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