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Artificial optical activity in chiral resonant nanogratings

机译:手性共振纳米光栅中的人工光学活性

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Nanogratings with chiral geometry are found to produce artificial optical activity (i.e., the ability of rotating the light polarization), though the composing materials are not optical active. This paper presents a thorough review of our recent study, from theory to experiment, on the optical activity in two types of chiral nanogratings: the dielectric gratings exhibiting the largest polarization rotation (up to 26.5°) observed to date, and the metallic ones producing simultaneous enhance transmission and enhanced optical activity. The polarization properties of the chiral gratings are demonstrated and the enhancement mechanism of optical activity due to various resonance processes are also revealed and interpreted.
机译:尽管组成材料不是光学活性的,但是发现具有手性几何形状的纳米光栅会产生人工光学活性(即,旋转光偏振的能力)。本文从理论到实验全面回顾了我们最近对两种类型的手性纳米光栅的光学活性的研究:迄今为止观察到的最大偏振旋转(高达26.5°)的介电光栅,以及产生的金属光栅。同时增强透射和增强的光学活性。证明了手性光栅的偏振特性,并揭示和解释了由于各种共振过程引起的光学活性的增强机理。

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