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Multiresonance response in hyperbolic metamaterials

机译:双曲超材料中的多轴响应

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摘要

In this paper we demonstrate a new class of anisotropic 1D hyperbolic metamaterials (HMMs) possessing multi-resonant dispersion characteristics. With the help of an EMT-based model, we analyze HMMs with unit cells composed of layers characterized by various plasma frequencies, revealing multiple resonance transitions corresponding to the critical absorptions points. In particular, we show that relative locations of plasma frequencies of constituent materials and the unit cell's geometry determine the type of dispersion characteristics as well as spectral locations of critical absorption points. It is shown that a multispectral low-loss highly dispersive medium is achieved in a structure comprising layers of closely located plasma resonances. Moreover, we present that pure metallic multilayer structure can exhibit hyperbolic dispersion. The obtained results possess a significant potential in applications where a multispectral character is required, including phase matching, multiple-point perfect absorption, as well as diffractionless imaging and focusing. (c) 2018 Optical Society of America
机译:在本文中,我们展示了具有多谐振色散特性的新类各向异性1D双曲面超材料(HMMS)。在基于EMT的模型的帮助下,我们分析了由由各种等离子体频率特征的层组成的单元电池的HMM,揭示了与关键吸收点对应的多个共振转变。特别地,我们示出了组成材料等离子体频率的相对位置和单元电池的几何形状决定了分散特性的类型以及关键吸收点的光谱位置。结果表明,在包括紧密位的等离子体共振的层的结构中实现了多光谱低损耗高度分散介质。此外,我们介绍纯金属多层结构可以表现出双曲分散体。所得结果在需要多光谱特性的应用中具有显着的潜力,包括相位匹配,多点完美吸收,以及衍射成像和聚焦。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第9期|共7页
  • 作者单位

    Warsaw Univ Technol Inst Microelect &

    Optoelect 75 Koszykowa St PL-00662 Warsaw Poland;

    Warsaw Univ Technol Inst Microelect &

    Optoelect 75 Koszykowa St PL-00662 Warsaw Poland;

    Warsaw Univ Technol Inst Microelect &

    Optoelect 75 Koszykowa St PL-00662 Warsaw Poland;

    Warsaw Univ Technol Inst Microelect &

    Optoelect 75 Koszykowa St PL-00662 Warsaw Poland;

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  • 正文语种 eng
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