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Band-selective optical polarizer based on gold-nanowire plasmonic diffraction gratings

机译:基于金纳米线等离子体衍射光栅的带选择光学偏振器

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摘要

We report a plasmonic diffraction grating device as a new kind of optical polarizer. This simple device consists of periodically distributed gold nanowires on top of a transparent glass substrate and is based on the strong polarization dependence of the particle plasmon resonance of the gold nanowires. A high-efficiency secondary diffraction in the same device enhances the polarization extinction ratio significantly. Linearly polarized spectrum in the red with a bandwidth of 53 nm is selectively picked up from the nonpolarized white light, where a polarization extinction ratio higher than 100 at about 650 nm has been achieved. The idea of plasmonic diffraction grating is important for exploiting new detection and sensor techniques.
机译:我们报告了一种等离激元衍射光栅设备,作为一种新型的光学偏振器。这种简单的装置由周期性分布在透明玻璃基板顶部的金纳米线组成,并且基于金纳米线的粒子等离子体共振的强烈极化依赖性。同一器件中的高效二次衍射可显着提高偏振消光比。从非偏振白光中有选择地拾取带宽为53 nm的红色线性偏振光谱,其中在约650 nm处实现了大于100的偏振消光比。等离子衍射光栅的思想对于开发新的检测和传感器技术很重要。

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