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远场光学超透镜

Far-field optical superlens.

作者信息

Liu Zhaowei, Durant Stéphane, Lee Hyesog, Pikus Yuri, Fang Nicolas, Xiong Yi, Sun Cheng, Zhang Xiang

机构信息

NSF Nanoscale Science and Engineering Center (NSEC), 5130 Etcheverry Hall, University of California, Berkeley, California 94720, USA.

出版信息

Nano Lett. 2007 Feb;7(2):403-8. doi: 10.1021/nl062635n.

Abstract

Far-field optical lens resolution is fundamentally limited by diffraction, which typically is about half of the wavelength. This is due to the evanescent waves carrying small scale information from an object that fades away in the far field. A recently proposed superlens theory offers a new approach by surface excitation at the negative index medium. We introduce a far-field optical superlens (FSL) that is capable of imaging beyond the diffraction limit. The FSL significantly enhances the evanescent waves of an object and converts them into propagating waves that are measured in the far field. We show that a FSL can image a subwavelength object consisting of two 50 nm wide lines separated by 70 nm working at 377 nm wavelength. The optical FSL promises new potential for nanoscale imaging and lithography.

摘要

远场光学透镜分辨率从根本上受到衍射的限制,衍射通常约为波长的一半。这是因为携带物体小尺度信息的倏逝波在远场中会逐渐消失。最近提出的超透镜理论通过在负折射率介质中进行表面激发提供了一种新方法。我们引入了一种能够突破衍射极限进行成像的远场光学超透镜(FSL)。该FSL显著增强了物体的倏逝波,并将它们转换为在远场中可测量的传播波。我们展示了一个FSL能够对一个亚波长物体成像,该物体由两条宽度为50 nm、间距为70 nm的线组成,工作波长为377 nm。光学FSL为纳米级成像和光刻带来了新的潜力。

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