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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Local circular polarizations in nanostructures induced by linear polarization via optical near-fields
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Local circular polarizations in nanostructures induced by linear polarization via optical near-fields

机译:通过光近场通过线性极化在纳米结构中诱导局部圆形极化

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摘要

We previously reported [Sci. Rep. 4, 6077 (2014)] that the geometrical randomness of disk-shaped silver nanoparticles, which exhibit high reflection at near-infrared wavelengths, serves as the origin of a particle-dependent localization and hierarchical distribution of optical near-fields in the vicinity of the nanostructure. In this study, we show that the induced polarizations are circular, particularly at resonant wavelengths. We formulate optical near-field processes between nanostructures, accounting for their polarizations and geometries, and attribute circular polarization to the layout-dependent phase difference between the electrical susceptibilities associated with longitudinal and transverse-electric components. This study clarifies the fundamental optical properties of random nanostructured matter and offers generic theoretical concepts for implementing nanoscale polarizations of optical near-fields. (C) 2015 Optical Society of America
机译:我们之前曾报道过[Sci。 Rep。4,6077(2014)]认为,盘状银纳米颗粒的几何随机性在近红外波长处表现出高反射性,是依赖颗粒的光学近场局部化和分层分布的起源。纳米结构的附近。在这项研究中,我们表明感应偏振是圆形的,尤其是在共振波长处。我们制定了纳米结构之间的光学近场过程,考虑了它们的极化和几何形状,并将圆极化归因于与纵向和横向电组件相关的电化率之间与布局有关的相位差。这项研究阐明了随机纳米结构物质的基本光学性质,并为实现光学近场的纳米级偏振提供了通用的理论概念。 (C)2015年美国眼镜学会

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