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有效地将近红外光压缩到一个21纳米×24纳米的纳米点中。

Efficiently squeezing near infrared light into a 21 nm-by-24 nm nanospot.

作者信息

Yang Ruoxi, Abushagur Mustafa A G, Lu Zhaolin

机构信息

Microsystems Engineering, Kate Gleason College of Engineering, Rochester Institute of Technology, Rochester, New York 14623, USA.

出版信息

Opt Express. 2008 Nov 24;16(24):20142-8. doi: 10.1364/oe.16.020142.

Abstract

Recent work demonstrated light transmission through deep subwavelength slits or coupling light into waveguides with deep subwavelength dimension only in one direction. In this paper, we propose an approach to squeeze light (lambda = 1550 nm) from a dielectric waveguide into a deep subwavelength spot. Vertical confinement is achieved by efficiently coupling light from a dielectric waveguide into a 20-nm metal-dielectric-metal plasmonic waveguide. The horizontal dimension of the plasmonic waveguide is then tapered into 20 nm. Numerical simulation shows that light fed from a dielectric waveguide can be squeezed into a 21 nm-by-24 nm spot with efficiency 62%.

摘要

近期的研究表明,光只能沿一个方向透过深亚波长狭缝或将光耦合进具有深亚波长尺寸的波导中。在本文中,我们提出了一种将光(波长λ = 1550 nm)从介质波导压缩到深亚波长光斑中的方法。通过将光从介质波导高效耦合进一个20纳米的金属 - 介质 - 金属等离子体波导来实现垂直限制。然后将等离子体波导的水平尺寸逐渐缩小到20纳米。数值模拟表明,从介质波导馈入的光能够以62%的效率被压缩到一个21纳米×24纳米的光斑中。

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