改良三层鱼网超材料增强法诺共振

Libang Mao, T. Cao
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引用次数: 0

摘要

在由椭圆纳米孔阵列(ENA)嵌入金属/电介质/金属(MDM)多层材料组成的三维(3D)对称超材料(mm)中经常观察到Fano共振(FR)。理论表明,在近红外(NIR)波段,穿过MDM层的方形周期性ENA会产生FR响应。这种FR响应归因于亮模式和暗模式之间的相互作用,其中亮模式源于ENA引起的电共振(局域表面等离子体共振),暗模式源于MDM多层膜引起的磁共振(电感-电容共振)。值得注意的是,当椭圆纳米孔占据矩形晶格的位置时,由于磁共振与增强的电共振的相互作用,可以实现更窄的FR。此外,更高的晶格常数沿水平方向的变化程度允许具有更高质量因子值的FR以及透明窗的幅度和谐振频率的调谐。这种由磁偶极共振和电偶极共振之间的干扰产生的FR开辟了在对称多层mm中形成尖锐FR的替代方法,并且可以用于传感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of Fano resonance using modified trilayer fishnet metamaterials
Fano resonance (FR) is routinely observed in three dimensional(3D) symmetric metamaterials(MMs) consisting of elliptical nanoholes array (ENA) embedding through metal/dielectric/metal (MDM) multilayers. It is shown theoretically that a square periodic ENA perforating through MDM layers produces a FR response in the near infrared (NIR) regime. This FR response is attributed to the interplay between the bright modes and dark modes, where the bright modes originate from the electric resonance(localized surface plasmon resonance) caused by the ENA and the dark modes are due to the magnetic resonance(inductive-capacitive resonance) induced by the MDM multilayers. Notably, one can achieve a narrower FR when the elliptical nanoholes occupy the sites of a rectangular lattice, owing to the interaction of the magnetic resonances with the enhanced electric resonances. Moreover, a higher varying degree of the lattice constant along the horizontal direction allows for a FR with a higher value of the quality factor and the tuning of the amplitude and the resonant frequency of the transparency window. Such a FR created by the interference among the magnetic and electric dipolar resonances opens up an alternative way of forming a sharp FR in the symmetric multilayer MMs, and could be exploited for sensing.
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