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利用反对称表面等离激元模式的银超透镜

Silver superlens using antisymmetric surface plasmon modes.

作者信息

Lee Wook-Jae, Kim Jae-Eun, Park Hae Yong, Lee Myung-Hyun

机构信息

Department of Physics, KAIST, Daejeon 305-701, Korea.

出版信息

Opt Express. 2010 Mar 15;18(6):5459-65. doi: 10.1364/OE.18.005459.

Abstract

Silver lenses having super-resolution are analyzed in terms of antisymmetric modes of surface plasmon which have the ability to amplify evanescent waves in UV region. Antisymmetric surface plasmon modes excited by subwavelength grating enhances the resolution and contrast of silver superlens. By using a 20 nm-thick silver superlens, the half-pitch resolution of approximately lambda(0)/8 can be achieved with good contrast at a free space wavelength of 435 nm. The resolution of silver superlens can also be improved using shorter illumination wavelength. We show that the thinner the lens, the better the imaging ability of the silver superlens due to the excitation of antisymmetric surface plasmon modes of higher propagation wave vectors. The thickness of lens is varied from 20 to 40 nm in a three layer system, SiO(2)-Ag-SiO(2). Obtained results illustrate that practical application for patterning periodic structures with good contrast and penetration depth can be achieved by using antisymmetric surface plasmon modes.

摘要

具有超分辨率的银透镜是根据表面等离子体的反对称模式进行分析的,这些模式能够在紫外区域放大倏逝波。由亚波长光栅激发的反对称表面等离子体模式提高了银超透镜的分辨率和对比度。通过使用20纳米厚的银超透镜,在435纳米的自由空间波长下,可以实现约为λ(0)/8的半间距分辨率,且对比度良好。使用更短的照明波长也可以提高银超透镜的分辨率。我们表明,由于激发了更高传播波矢的反对称表面等离子体模式,透镜越薄,银超透镜的成像能力越好。在SiO(2)-Ag-SiO(2)三层系统中,透镜厚度在20至40纳米之间变化。所得结果表明,利用反对称表面等离子体模式可以实现对具有良好对比度和穿透深度的周期性结构进行图案化的实际应用。

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