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Hyperbolic hybrid waves and optical topological transitions in few-layer anisotropic metasurfaces

机译:少数各向异性元胶中的双曲杂交波和光学拓扑过渡

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摘要

A comprehensive analysis of hybrid TM-TE polarized surface electromagnetic waves supported by different few-layer anisotropic metasurfaces is presented. A generalized 4 x 4 T-matrix formalism for arbitrary anisotropic two-dimensional (2D) layers is developed, from which the general relations for the surface waves dispersions and scattering coefficients are deduced. Using this formalism and the effective conductivity approach, the dispersions and iso-frequency contours (IFCs) topology of the surface waves in various hybrid uniaxial metasurfaces are studied. The existence of hyperbolic plasmon-exciton polaritons in plasmon-exciton hybrids and hyperbolic acoustic waves with strong confinement in both out-of-plane and in-plane directions in uniaxial plasmonic bilayers are predicted. In plasmonic uniaxial metasurfaces on metal films, the elliptic and hyperbolic backward surface waves with negative group velocity are predicted and additional topological transitions in both elliptic and hyperbolic IFCs of the hybrid surface waves are revealed. Ultrathin twisted uniaxial plasmonic bilayers are proposed as systems with the IFCs topological transitions highly sensitive to the layers twist. The developed formalism may become a useful tool in the calculation of multifunctional few-layer metasurfaces or van der Waals heterostructures based on 2D materials with in-plane anisotropy, where the TM-TE polarization mixing must be considered. The predicted effects may open new horizons in the development and applications of planar optical technologies.
机译:由不同的少层各向异性metasurfaces载体杂化TM-TE偏振面的电磁波的综合分析呈现。对于任意的各向异性的二维(2D)层A广义4×4 T矩阵形式主义发达,从这对于表面波分散体和散射系数的一般关系推导出。使用这种形式主义和有效电导率的方法,在各种混合单轴metasurfaces的表面波的分散体和异频轮廓(的IFC)拓扑结构进行了研究。在等离子体激元激子杂交和双曲线声波双曲线等离子体激元激子极化的与单轴电浆双层既出平面外和平面内的方向强约束的存在进行预测。在上金属膜电浆单轴metasurfaces,具有负的群速度的椭圆和双曲向后表面波预测并在混合表面波的椭圆两者和双曲的IFC附加拓扑转换显露。超薄扭曲单轴电浆双层被提出作为与的IFC拓扑转换到层捻高度敏感的系统。发达形式主义可能成为多功能的少层metasurfaces或范德瓦基于二维材料具有面内各向异性,其中,TM-TE偏振混合必须考虑范德华异质结构的计算的有用工具。预测的影响可能打开发展新的视野和平面光学技术的应用。

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