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Optical magnetism and optical activity in nonchiral planar plasmonic metamaterials

机译:非手性平面等离子体超材料中的光学磁性和光学活性

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We investigate optical magnetism and optical activity in a simple planar metamolecule composed of double U-shaped metal split ring resonators (SRRs) twisted by 90 degrees with respect to one another. Compared to a single SRR, the resonant energy levels are split and strong magnetic response can be observed due to inductive and conductive coupling. More interestingly, the nonchiral structures exhibit strong optical gyrotropy (1100 degrees/lambda) under oblique incidence, benefiting from the strong electromagnetic coupling. A chiral molecule model is proposed to shed light on the physical origin of optical activity. These artificial chiral metamaterials could be utilized to control the polarization of light and promise applications in enantiomer sensing-based medicine, biology, and drug development. (C) 2016 Optical Society of America
机译:我们研究由一个双U形金属裂环谐振器(SRR)相对于彼此扭曲90度组成的简单平面大分子中的光学磁性和光学活性。与单个SRR相比,由于感应耦合和导电耦合,谐振能级被拆分,并且可以观察到强大的磁响应。更有趣的是,得益于强电磁耦合,非手性结构在斜入射下表现出强大的光学旋向性(1100度/λ)。提出了一种手性分子模型来阐明光学活性的物理起源。这些人工手性超材料可以用于控制光的偏振,并有望在基于对映异构体传感的医学,生物学和药物开发中得到应用。 (C)2016美国眼镜学会

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