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Metallic film optimization in a surface plasmon resonance biosensor by the extended Rouard method

机译:扩展Rouard方法在表面等离子体共振生物传感器中优化金属膜

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摘要

The extended Rouard method is applied to the computation of a multi-absorbing-layer system for the optimization of surface plasmon resonance (SPR) sensors. Specifically, the effect of the properties of a metallic layer on the shape of the reflectivity and sensitivity curve is demonstrated in the case of a Kretschmann configuration. This theoretical investigation allows us to establish the best optical properties of the metal to obtain a localized SPR, given the illuminating beam properties. Toward the development of a sensitive biosensor based on SPR, we quantify the changes in reflectivity of such an optical biosensor induced by the deposition of a nanometric biochemical film as a function of the metal film characteristics and the illumination operating conditions. The sensitivity of the system emphasizes the potential of such biophotonic technology using metallic multilayer configurations, especially with envisioned metamaterials.
机译:扩展的Rouard方法被应用于多吸收层系统的计算中,以优化表面​​等离子体激元共振(SPR)传感器。具体地,在克雷奇曼构造的情况下,证明了金属层的性质对反射率和灵敏度曲线的形状的影响。这种理论研究使我们能够在给定照明光束特性的情况下,建立金属的最佳光学特性以获得局部SPR。为了开发基于SPR的灵敏生物传感器,我们对这种光学生物传感器的反射率变化进行了量化,该反射率是由纳米生化膜的沉积引起的,该反射率随金属膜特性和照明操作条件而变化。该系统的灵敏度强调了使用金属多层配置(尤其是设想的超材料)的这种生物光子技术的潜力。

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