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Giant circular dichroism in extrinsic chiral metamaterials excited by off-normal incident laser beams

机译:非正常入射激光束激发的外在手性超材料中的巨大圆二色性

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摘要

Recently it was shown by experiments that circular dichroism (CD) can be observed in the metamaterials of nonchiral structures when they were subjected to obliquely incident light (E. Plum, et al., Physical Review Letters 102, 113902, 2009). By far, external chirality simulation was only done for a particle array embedded in a homogenous medium (V. Yannopapas, Optics Letters 34, 5, 2009); no attempt has been made on simulating and modelling of circular dichroism in layered metamaterials (e.g., thin film on substrate structure). In this paper, we present the simulation of CD effect in layered external chiral metamaterials using CST software, theoretically investigate this intriguing phenomenon through a frequency domain finite integration technique, and optimize the metamaterial unit cell configurations (size, periodicity and film thickness) to maximize the CD phenomenon in near-infrared spectrum range. We show that the CD effect can be enhanced by five times using an optimized unit cell configuration, which is more than three times higher than the existing maximum theoretical results. The CD generation mechanism was elaborated with the help of induced surface current distributions.
机译:最近,通过实验表明,当非手性结构的超材料受到倾斜入射光时,可以在它们中观察到圆二色性(CD)(E. Plum等,Physical Review Letters 102,113902,2009)。到目前为止,仅对嵌入均质介质中的粒子阵列进行了外部手性模拟(V. Yannopapas,Optics Letters 34,5,2009);尚未尝试对层状超材料(例如,基板结构上的薄膜)中的圆二色性进行模拟和建模。在本文中,我们使用CST软件对层状外部手性超材料中的CD效应进行了模拟,通过频域有限积分技术从理论上研究了这种有趣的现象,并优化了超材料的单位晶胞结构(尺寸,周期性和膜厚度)以使其最大化在近红外光谱范围内的CD现象。我们显示,使用优化的晶胞配置可以将CD效果提高五倍,这比现有的最大理论结果高出三倍以上。借助感应表面电流分布详细阐述了CD生成机理。

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