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Optimized fan-shaped chiral metamaterial as an ultrathin narrow-band circular polarizer at visible frequencies

机译:优化的扇形手性超材料,如可见频率的超窄带圆偏振器

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摘要

Chiral metamaterials have the great ability to manipulate the circular polarizations of light, which can be utilized to build ultrathin circular polarizers. Here we build a narrow-band circular polarizer at visible frequencies based on plasmonic fan-shaped chiral nanostructures. In order to achieve the best optical performance, we systematically investigate how different fabrication factors affect the chiral optical response of the fan-shaped chiral nanostructures, including incident angle of vapor depositions, nanostructure thickness, and post-deposition annealing. The optimized fan-shaped nanostructures show two narrow bands for different circular polarizations with the maximum extinction ratios 7.5 and 6.9 located at wavelength 687 nm and 774 nm, respectively.
机译:手性超材料具有操纵光圆极化的能力,可用于构建超薄圆偏振器。 这里我们在基于等离子体扇形手性纳米结构的可见频率下构建一个窄带圆偏振器。 为了实现最佳光学性能,我们系统地研究了不同的制造因素如何影响风扇形手性纳米结构的手性光学响应,包括气相沉积,纳米结构厚度和沉积后退火的入射角。 优化的扇形纳米结构示出了用于不同圆偏振的两个窄带,其具有位于波长687nm和774nm处的最大消光比例7.5和6.9。

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