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Semi-analytical approach for refractive index sensors based on reflective metasurfaces

机译:基于反射元尺度的折射率传感器半分析方法

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We present a semi-analytical approach for the analysis and design of refractive index sensors based on metal-insulator-metal (MIM) metasurfaces. While numerical methods require extensive calculations for all values of geometrical parameters, the semi-analytical approach provides straightforward guidelines for a design of optimal metasurfaces with maximized sensitivity. Semi-analytical formulas for refractive index sensitivities are derived from equations of the temporal coupled mode theory and standing-wave resonance model. They require three numerically calculated parameters (resonant frequency and radiative and non-radiative decay rates of the resonant mode), obtained by the fitting of reflectance spectra. Generality of the presented approach allows us to consider the operation of metasurface sensors in three different interrogation methods: spectral (frequency), intensity (reflectance), and phase. Validity of the proposed approach is confirmed by a good agreement with numerical results. Starting from semi-analytical formulas, we derive working frequencies of metasurface based sensors, prove that the critical coupling with equal decay rates of the resonant mode is the optimal working regime, and demonstrate that optimal MIM metasurfaces should have periods as large as possible with the thickness of MIM cavities determined by the critical coupling condition. (C) 2021 Optical Society of America
机译:我们提出了一种基于金属-绝缘体-金属(MIM)亚表面的折射率传感器分析和设计的半解析方法。虽然数值方法需要对所有几何参数值进行大量计算,但半解析方法为以最大灵敏度设计最佳超曲面提供了直接的指导。从时间耦合模理论方程和驻波共振模型出发,推导了折射率灵敏度的半解析公式。它们需要通过拟合反射光谱获得三个数值计算的参数(共振频率以及共振模式的辐射和非辐射衰减率)。所提出的方法的一般性允许我们考虑在三种不同的询问方法:光谱(频率)、强度(反射率)和相位的元面传感器的操作。数值计算结果表明,该方法是有效的。从半解析公式出发,我们推导了亚表面传感器的工作频率,证明了谐振模式衰减率相等的临界耦合是最佳工作区,并证明了最佳MIM亚表面应具有尽可能大的周期,MIM腔的厚度由临界耦合条件决定。(2021)美国光学学会

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