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Effective surface conductivity of optical hyperbolic metasurfaces: from far-field characterization to surface wave analysis

机译:光学双曲超表面的有效表面电导率:从远场表征到表面波分析

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摘要

Metasurfaces offer great potential to control near- and far-fields through engineering optical properties of elementary cells or meta-atoms. Such perspective opens a route to efficient manipulation of the optical signals both at nanoscale and in photonics applications. In this paper we show that a local surface conductivity tensor well describes optical properties of a resonant plasmonic hyperbolic metasurface both in the far-field and in the near-field regimes, where spatial dispersion usually plays a crucial role. We retrieve the effective surface conductivity tensor from the comparative analysis of experimental and numerical reflectance spectra of a metasurface composed of elliptical gold nanoparticles. Afterwards, the restored conductivities are validated by semi-analytic parameters obtained with the nonlocal discrete dipole model with and without interaction contribution between meta-atoms. The effective parameters are further used for the dispersion analysis of surface plasmons localized at the metasurface. The obtained effective conductivity describes correctly the dispersion law of both quasi-TE and quasi-TM plasmons in a wide range of optical frequencies as well as the peculiarities of their propagation regimes, in particular, topological transition from the elliptical to hyperbolic regime with eligible accuracy. The analysis in question offers a simple practical way to describe properties of metasurfaces including ones in the near-field zone with effective conductivity tensor extracting from the convenient far-field characterization.
机译:超颖表面具有通过基本细胞或超原子的工程光学特性控制近场和远场的巨大潜力。这种观点为在纳米级和光子学应用中有效地操纵光信号开辟了一条途径。在本文中,我们显示了局部表面电导率张量很好地描述了在远场和近场状态下共振等离激元双曲面的光学特性,其中空间色散通常起关键作用。我们从由椭圆形金纳米颗粒组成的超表面的实验和数值反射光谱的比较分析中检索到有效的表面电导张量。然后,通过使用非局部离散偶极子模型获得的半解析参数验证恢复的电导率,该模型具有或不具有亚原子之间的相互作用。有效参数还用于局部表面超子表面弥散分析。所获得的有效电导率正确地描述了准TE和准TM等离子体激元在很宽的光频率范围内的色散定律,以及它们的传播方式的特殊性,特别是从椭圆形到双曲线形的拓扑转换,具有适当的精度。 。所讨论的分析提供了一种简单实用的方法来描述超颖表面的特性,包括通过方便的远场表征提取有效电导率张量的包括在近场区域中的超颖表面。

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