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Slow-light enhanced absorption for bio-chemical sensing applications: potential of low-contrast lossy materials

机译:用于生物化学传感应用的慢光增强吸收:低对比度有损耗材料的潜力

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Slow-light enhanced absorption in liquid-infiltrated photonic crystals has recently been proposed as a route to compensate for the reduced optical path in typical lab-on-a-chip systems for bio-chemical sensing applications. A simple perturbative expression has been applied to ideal structures composed of lossless dielectrics. In this work we study the enhancement in structures composed of lossy dielectrics such as a polymer. For this particular sensing application we find that the material loss has an unexpected limited drawback and surprisingly, it may even add to increase the bandwidth for low-index contrast systems such as polymer devices.
机译:近年来,液体渗透的光子晶体中的慢光增强吸收被提出来补偿生物化学传感应用中典型的单芯片实验室系统中减小的光路。一个简单的摄动表达式已应用于由无损电介质组成的理想结构。在这项工作中,我们研究了由有损耗的电介质(例如聚合物)组成的结构的增强。对于这种特殊的传感应用,我们发现材料损失具有意想不到的局限性缺陷,令人惊讶的是,它甚至可能增加低折射率对比系统(如聚合物设备)的带宽。

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