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超薄平面腔超表面

Ultrathin Planar Cavity Metasurfaces.

作者信息

Wang Hsiang-Chu, Chu Cheng Hung, Wu Pin Chieh, Hsiao Hui-Hsin, Wu Hui Jun, Chen Jia-Wern, Lee Wei Hou, Lai Yi-Chieh, Huang Yao-Wei, Tseng Ming Lun, Chang Shu-Wei, Tsai Din Ping

机构信息

Research Center for Applied Sciences, Academia Sinica, Taipei, 11529, Taiwan.

Department of Physics, National Taiwan University, Taipei, 10617, Taiwan.

出版信息

Small. 2018 Apr;14(17):e1703920. doi: 10.1002/smll.201703920. Epub 2018 Apr 3.

Abstract

An ultrathin planar cavity metasurface is proposed based on ultrathin film interference and its practicability for light manipulation in visible region is experimentally demonstrated. Phase of reflected light is modulated by finely adjusting the thickness of amorphous silicon (a-Si) by a few nanometers on an aluminum (Al) substrate via nontrivial phase shifts at the interfaces and interference of multireflections generated from the planar cavity. A phase shift of π, the basic requirement for two-level phase metasurface systems, can be accomplished with an 8 nm thick difference. For proof of concept, gradient metasurfaces for beam deflection, Fresnel zone plate metalens for light focusing, and metaholograms for image reconstruction are presented, demonstrating polarization-independent and broadband characteristics. This novel mechanism for phase modulation with ultrathin planar cavity provides diverse routes to construct advanced flat optical devices with versatile applications.

摘要

基于薄膜干涉原理,提出了一种超薄平面腔超表面,并通过实验证明了其在可见光区域进行光操纵的实用性。通过在铝(Al)衬底上对非晶硅(a-Si)的厚度进行几纳米的精细调整,利用界面处的非平凡相移和平面腔产生的多次反射干涉,对反射光的相位进行调制。对于两级相位超表面系统的基本要求——π相移,可以通过8纳米的厚度差来实现。为了验证概念,展示了用于光束偏转的梯度超表面、用于光聚焦的菲涅耳波带片金属透镜以及用于图像重建的超全息图,证明了其与偏振无关和宽带的特性。这种利用超薄平面腔进行相位调制的新机制为构建具有多种应用的先进平面光学器件提供了多种途径。

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