Nanopinholes-Based Optical Superlens

Yongqi Fu, C. Du, Wei Zhou, L. Lim
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引用次数: 17

Abstract

A type of nanopinhole-based plasmonic structure is presented. It can realize superfocusing within micron-scale propagation distance with spatial resolution beyond diffraction limit. Cut-off wavelength effect is highlighted for understanding how periodicity distribution of the nanopinholes influences transmission and focusing through the structure. Redshift peak transmission occurs while the periodicity increases. In addition, focusing property of the plasmonic structures is analyzed for the monochromatic illumination with different incident wavelengths ranging from 400 nm to 750 nm. The easy fabrication and high focusing performance of the proposed structures may be used in data storage devices, bioimaging, and nanolithography.
基于纳米孔的光学超级透镜
提出了一种基于纳米孔的等离子体结构。它可以实现微米级传播距离内的超聚焦,空间分辨率超过衍射极限。强调了截止波长效应,以了解纳米孔的周期性分布如何影响通过结构的传输和聚焦。随着周期性的增加,出现了红移峰传输。此外,分析了在400 ~ 750 nm不同入射波长的单色光照下等离子体结构的聚焦特性。所提出的结构易于制造和高聚焦性能可用于数据存储设备,生物成像和纳米光刻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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