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Biosensing Configurations Using Guided Wave Resonant Structures

机译:使用引导波谐振结构的生物静态配置

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摘要

Resonant structures are characterized by a high quality factor representing the sensitivity to perturbations in a cavity. In guided wave resonant structures the optical field is evanescent, forming a region where the resonance can be modified by externally varying the refractive index within this evanescence region. The resonance nature of these structures then allows high sensitivity to analytes, gases, or other external index perturbations down to the order of 10-8 RIU. In this article several configurations of guided wave resonant structures and their use for sensing are reviewed with special emphasis on grating coupled resonant structures. The sensor performance is discussed using analytic approaches based on planar waveguide sensors theory and using the 4 × 4 characteristic matrix approaches for multilayered structure and with homogenized grating treated as a uniaxial thin film. The results agree very well with experiment and with rigorous electromagnetic calculations even when the cover is anisotropic medium such as a liquid crystal that can be used for tunable filtering or temperature sensing.
机译:谐振结构的特征在于表示腔内对扰动的敏感性的高品质因数。在引导波谐振结构中,光场是渐变的,形成通过在外部改变该发泄区域内的折射率来修改共振的区域。这些结构的共振性质,然后允许对分析物,气体或其他外部指数扰动的高灵敏度降至10-8 riu的顺序。在本文中,通过特别强调光栅耦合谐振结构来审查引导波谐振结构及其用于感测的几个配置。使用基于平面波导传感器理论的分析方法讨论传感器性能,并使用用于多层结构的4×4特征矩阵方法,并用均质光栅作为单轴薄膜处理。结果非常吻合实验,并且即使盖子是各向异性介质,如液晶的各向异性介质也非常吻合,其可用于可调谐滤波或温度感测。

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