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Sensing Based on Fano-Type Resonance Response of All-Dielectric Metamaterials

机译:全介电超材料的Fano型共振响应的传感

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摘要

A new sensing approach utilizing Mie resonances in metamaterial arrays composed of dielectric resonators is proposed. These arrays were found to exhibit specific, extremely high-Q factor (up to 15,000) resonances at frequencies corresponding to the lower edge of the array second transmission band. The observed resonances possessed with features typical for Fano resonances (FRs), which were initially revealed in atomic processes and recently detected in macro-structures, where they resulted from interference between local resonances and a continuum of background waves. Our studies demonstrate that frequencies and strength of Fano-type resonances in all-dielectric arrays are defined by interaction between local Mie resonances and Fabry-Perot oscillations of Bloch eigenmodes that makes possible controlling the resonance responses by changing array arrangements. The opportunity for obtaining high-Q responses in compact arrays is investigated and promising designs for sensing the dielectric properties of analytes in the ambient are proposed.
机译:提出了一种在介电共振器组成的超材料阵列中利用米氏共振的新型传感方法。发现这些阵列在对应于阵列第二传输带下边缘的频率上显示出特定的,极高的Q因子(高达15,000)共振。所观察到的共振具有Fano共振(FR)的典型特征,这些特征最初是在原子过程中揭示的,最近在宏观结构中被检测到,在宏观结构中,它们是由局部共振和连续背景波之间的干扰引起的。我们的研究表明,全电介质阵列中Fano型共振的频率和强度是由局部Mie共振和Bloch本征模的Fabry-Perot振动之间的相互作用所定义的,从而可以通过改变阵列排列来控制共振响应。研究了在紧凑阵列中获得高Q响应的机会,并提出了用于感测环境中分析物介电特性的有前途的设计。

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