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From the Cover: Enabling enhanced emission and low-threshold lasing of organic molecules using special Fano resonances of macroscopic photonic crystals

机译:从封面开始:利用宏观光子晶体的特殊Fano共振增强有机分子的发射和低阈值发射

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摘要

The nature of light interaction with matter can be dramatically altered in optical cavities, often inducing nonclassical behavior. In solid-state systems, excitons need to be spatially incorporated within nanostructured cavities to achieve such behavior. Although fascinating phenomena have been observed with inorganic nanostructures, the incorporation of organic molecules into the typically inorganic cavity is more challenging. Here, we present a unique optofluidic platform comprising organic molecules in solution suspended on a photonic crystal surface, which supports macroscopic Fano resonances and allows strong and tunable interactions with the molecules anywhere along the surface. We develop a theoretical framework of this system and present a rigorous comparison with experimental measurements, showing dramatic spectral and angular enhancement of emission. We then demonstrate that these enhancement mechanisms enable lasing of only a 100-nm thin layer of diluted solution of organic molecules with substantially reduced threshold intensity, which has important implications for organic light-emitting devices and molecular sensing.
机译:光与物质相互作用的性质可以在光腔中发生显着变化,通常会引起非经典行为。在固态系统中,激子需要在空间上并入纳米结构的腔内以实现这种行为。尽管在无机纳米结构中观察到了令人着迷的现象,但将有机分子掺入典型的无机腔中却更具挑战性。在这里,我们提出了一个独特的光流体平台,该平台包含悬浮在光子晶体表面上的溶液中的有机分子,它支持宏观的Fano共振,并允许与表面上任何位置的分子发生强烈且可调谐的相互作用。我们开发了该系统的理论框架,并与实验测量结果进行了严格的比较,显示了发射的光谱和角度增强。然后,我们证明了这些增强机制仅能发射激光,从而仅发射100 nm稀释的有机分子稀溶液薄层,且阈值强度大大降低,这对有机发光器件和分子传感具有重要意义。

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