Fano Resonances in All-Dielectric Electromagnetic Metasurfaces

Habib Ammari, Bowen Li, Hongjie Li, Jun Zou
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Abstract

Multiscale Modeling &Simulation, Volume 22, Issue 1, Page 476-526, March 2024.
Abstract. We are interested in the resonant electromagnetic scattering by all-dielectric metasurfaces made of a two-dimensional lattice of nanoparticles with high refractive indices. In [Ammari, Li, and Zou, Trans. Amer. Math. Soc., 376 (2023), pp. 39–90], it has been shown that a single high-index nanoresonator can couple with the incident wave and exhibit a strong magnetic dipole response. Recent physics experiments reveal that when the particles are arranged in certain periodic configurations, they may have different anomalous scattering effects in the macroscopic scale, compared to the single-particle case. In this work, we shall develop a rigorous mathematical framework for analyzing the resonant behaviors of all-dielectric metasurfaces. We start with the characterization of subwavelength scattering resonances in such a periodic setting and their asymptotic expansions in terms of the refractive index of the nanoparticles. Then we show that real resonances always exist below the essential spectrum of the periodic Maxwell operator and that they are the simple poles of the scattering resolvent with the exponentially decaying resonant modes. By using group theory, we discuss the implications of the symmetry of the metasurface on the subwavelength band functions and their associated eigenfunctions. For the symmetric metasurfaces with the normal incidence, we use a variational method to show the existence of embedded eigenvalues (i.e., real subwavelength resonances embedded in the continuous radiation spectrum). Furthermore, we break the configuration symmetry either by introducing a small deformation of particles or by slightly deviating from the normal incidence and prove that Fano-type reflection and transmission anomalies can arise in both of these scenarios.
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全介质电磁元表面中的法诺共振
多尺度建模与仿真》,第 22 卷第 1 期,第 476-526 页,2024 年 3 月。 摘要我们对由二维高折射率纳米粒子晶格构成的全介电元表面的共振电磁散射很感兴趣。Ammari, Li, and Zou, Trans. Amer. Math. Soc., 376 (2023), pp.最近的物理实验发现,当粒子以一定的周期性构型排列时,它们在宏观尺度上可能会产生与单粒子情况不同的反常散射效应。在这项研究中,我们将建立一个严格的数学框架,用于分析全介电元表面的共振行为。我们首先描述了这种周期性设置下亚波长散射共振的特征,并根据纳米粒子的折射率对其进行渐近展开。然后,我们证明了实共振始终存在于周期性麦克斯韦算子的基本谱以下,并且它们是具有指数衰减共振模式的散射解析的简单极点。通过使用群论,我们讨论了元表面的对称性对亚波长带函数及其相关特征函数的影响。对于法线入射的对称元表面,我们使用变分法证明了嵌入特征值的存在(即嵌入连续辐射频谱的实亚波长共振)。此外,我们还通过引入微小的粒子变形或稍微偏离法线入射角来打破构型对称性,并证明在这两种情况下都可能出现法诺型反射和透射异常。
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