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Multi-band giant circular dichroism based on conjugated bilayer twisted-semicircle nanostructure at optical frequency

机译:基于共轭双层扭曲 - 半圆形纳米结构的多带巨型圆形二色性

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摘要

Plasmonic circular dichroism (CD) effect has been drawn great attention increasingly for its wide application in the fields of bio-sensing, biological detection, pharmaceuticals, and analytical chemistry. In this paper, we propose a chiral metasurface (CMS) to achieve strong multi-band CD effect at optical frequency. The designed CMS is composed of a periodic array of conjugated bilayer twisted-semicircle nanostructures. The numerical simulation results show that the CMS can produce strong multi-band CD effect due to the different coupling resonance modes under the excitations of left-handed circular polarization (LCP) light and right-handed circular polarization (RCP) light. It is shown that the chiral-selective absorption peaks can reach 89.4% and 95% for LCP light, 79% and 78.2% for RCP light, and the maximum CD is about 0.69 and -0.61 at 198.75 THz and 352.25 THz, 0.69 and -0.54 at 291.75 THz and 402.25 THz, respectively. The mechanism of the giant CD effect of the CSM has been revealed by analyzing the coupling mode of electric dipoles on the top and bottom layer through surface current distributions. Furthermore, the geometric parameter dependences of CD effect in the proposed CMS have been also studied numerically. The present results will guide the design of plasmonic chiral nanostructures for enhancing the CD effect. (C) 2020 Elsevier B.V. All rights reserved.
机译:等离子体圆形二色性(CD)效应越来越受到广泛应用于生物传感,生物检测,药品和分析化学领域的广泛关注。在本文中,我们提出了一种手性元表面(CMS)来实现光学频率的强大多频段CD效应。设计的CMS由周期性阵列的共轭双层扭曲 - 半圆纳米结构组成。数值模拟结果表明,由于左手圆极化(LCP)光和右手圆偏振(RCP)光的激发下,CMS可以产生强大的多频段CD效应。结果表明,对于LCP光的手性选择性吸收峰可以达到89.4%和95%,对于RCP光,79%和78.2%,最大CD为约0.69和-0.61,198.75六六茨和352.25六号,0.69和 - 0.54分别为291.75六号和4022.25至THz。通过表面电流分布分析顶层和底层的电偶极级耦合模式,揭示了CSM的巨型CD效应的机制。此外,还在数值上进行了数量地研究了在所提出的CMS中的CD效应的几何参数依赖性。目前的结果将引导血浆手性纳米结构的设计,以增强CD效应。 (c)2020 Elsevier B.v.保留所有权利。

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