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首页> 外文期刊>Physical review >Polaritonic cylinders as multifunctional metamaterials: Single scattering and effective medium description
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Polaritonic cylinders as multifunctional metamaterials: Single scattering and effective medium description

机译:Pararitonic气缸作为多功能超材料:单次散射和有效介质描述

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Polaritonic materials, owing to a strong phonon-polariton resonance in the THz and far-infrared parts of the electromagnetic spectrum, offer both high-index dielectric and metallic response. This complex response makes them suitable candidates for the design of metamaterial-related phenomena and applications. Here we show that one type of polaritonic-material-based structures that are particularly suitable for the achievement of a wide range of metamaterial properties are systems of polaritonic rods. To study the interplay between the material and the structural resonances in such systems, we employ as model systems rods of LiF and SiC and we calculate first the scattering properties of a single rod, identifying and discussing the behavior of the different resonances for different rod diameters. To analyze the response of ensembles of polaritonic rods, we employ an effective medium approach based on the coherent potential approximation (CPA), which is shown to be superior to the simple Maxwell-Garnett approximation for polaritonic and high-index dielectric metamaterials. Calculating and analyzing the CPA effective parameters, we find that our systems exhibit a large variety of interesting metamaterial properties, including hyperbolic dispersion, epsilon-near-zero and negative refractive index response. This rich response, achievable in almost any system of polariionic rods, is highly engineerable by properly selecting the radius and the filling ratio of the rods, making polaritonic rod systems an ideal platform for demonstration of multifunctional metamaterials.
机译:由于电磁谱的THz和远红外部件中的强子 - 极性振荡谐振,偏热性材料,提供高指数电介质和金属反应。这种复杂的响应使它们适用于模型相关现象和应用的设计。在这里,我们表明,一种特别适用于实现广泛的超材料性质的一种基于偏光的材料的结构是偏光杆的系统。为了研究这些系统中材料与结构共振之间的相互作用,我们用作LiF和SiC的模型系统杆,并且我们计算单个杆的散射特性,识别和讨论不同杆直径的不同共振的行为。为了分析偏振棒的集合响应,我们采用了一种基于相干电位近似(CPA)的有效介质方法,其被示出优于偏光极和高射电介质超材料的简单麦克斯韦尔-Garnett近似。计算和分析CPA有效参数,发现我们的系统具有各种有趣的超材料性质,包括双曲分散,epsilon - 近零和负折射率反应。 This rich response, achievable in almost any system of polariionic rods, is highly engineerable by properly selecting the radius and the filling ratio of the rods, making polaritonic rod systems an ideal platform for demonstration of multifunctional metamaterials.

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  • 来源
    《Physical review 》 |2020年第15期| 155310.1-155310.15| 共15页
  • 作者单位

    Department of Materials Science and Technology University of Crete 70013 Heraklion Crete Greece Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas N. Plastira 100 70013 Heraklion Crete Greece;

    Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas N. Plastira 100 70013 Heraklion Crete Greece;

    Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas N. Plastira 100 70013 Heraklion Crete Greece Department of Physics University of Crete 70013 Heraklion Greece;

    Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas N. Plastira 100 70013 Heraklion Crete Greece Ames Laboratory and Department of Physics and Astronomy Iowa State University Ames Iowa 50011 USA;

    Department of Materials Science and Technology University of Crete 70013 Heraklion Crete Greece Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas N. Plastira 100 70013 Heraklion Crete Greece;

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