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Low loss negative index metamaterials with one type of meta-atom

机译:具有一种类型的超原子的低损耗负指数超材料

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Metamaterial building blocks from microwave to optical range are mainly based on metal-dielectric composites. In almost all structures with true negative index (not coming from losses), two kinds of meta-atoms (electric and magnetic) are mixed to drive simultaneously the effective permittivity and permeability to negative values leading in turn to a negative index of refraction. In this paper, we show that two coupled structures with localized plasmons modes (e.g. cut-wires or split ring resonators) can exhibit negative refractive index by their own, by appropriately controlling the hybridization scheme of the plasmons modes. Because of small metal filling factor and reduced optical losses, the resulting structures may pave the way to realistic applications of metamaterials at optical frequencies.
机译:从微波到光学范围的超材料构造块主要基于金属-介电复合材料。在几乎所有具有真正负折射率(不是来自损耗)的结构中,两种亚原子(电和磁)混合在一起,以同时将有效介电常数和磁导率驱动为负值,进而导致负折射率。在本文中,我们表明通过适当控制等离激元模式的混合方案,具有局部等离激元模式的两个耦合结构(例如,切割线或裂环谐振器)可以表现出负折射率。由于较小的金属填充因子和减少的光学损失,因此所得的结构可能为超材料在光学频率下的实际应用铺平了道路。

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