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Slow-light enhanced optical detection in liquid-infiltrated photonic crystals

机译:液体渗透光子晶体中的慢光增强光学检测

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摘要

Slow-light enhanced optical detection in liquid-infiltrated photonic crystals is theoretically studied. Using a scattering-matrix approach and the Wigner-Smith delay time concept, we show that optical absorbance benefits both from slow-light phenomena as well as a high filling factor of the energy residing in the liquid. Utilizing strongly dispersive photonic crystal structures, we numerically demonstrate how liquid-infiltrated photonic crystals facilitate enhanced light-matter interactions, by potentially up to an order of magnitude. The proposed concept provides strong opportunities for improving existing miniaturized absorbance cells for optical detection in lab-on-a-chip systems.
机译:理论上研究了液体渗透光子晶体中的慢光增强光学检测。使用散射矩阵方法和Wigner-Smith延迟时间概念,我们表明光学吸收率既受益于慢速光现象,也受益于液体中能量的高填充因子。利用强分散的光子晶体结构,我们通过数值证明了液体渗透的光子晶体如何通过可能高达一个数量级的方式促进增强的光-物质相互作用。所提出的概念为改进现有的小型化吸收池提供了强大的机会,以用于芯片实验室系统中的光学检测。

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