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几何相位编码超表面:从偏振相关的定向电磁波散射到类扩散散射

Geometric phase coded metasurface: from polarization dependent directive electromagnetic wave scattering to diffusion-like scattering.

作者信息

Chen Ke, Feng Yijun, Yang Zhongjie, Cui Li, Zhao Junming, Zhu Bo, Jiang Tian

机构信息

Department of Electronic Engineering, School of Electronic Science and Engineering, Nanjing University, Nanjing, 210093, China.

出版信息

Sci Rep. 2016 Oct 24;6:35968. doi: 10.1038/srep35968.

Abstract

Ultrathin metasurface compromising various sub-wavelength meta-particles offers promising advantages in controlling electromagnetic wave by spatially manipulating the wavefront characteristics across the interface. The recently proposed digital coding metasurface could even simplify the design and optimization procedures due to the digitalization of the meta-particle geometry. However, current attempts to implement the digital metasurface still utilize several structural meta-particles to obtain certain electromagnetic responses, and requiring time-consuming optimization especially in multi-bits coding designs. In this regard, we present herein utilizing geometric phase based single structured meta-particle with various orientations to achieve either 1-bit or multi-bits digital metasurface. Particular electromagnetic wave scattering patterns dependent on the incident polarizations can be tailored by the encoded metasurfaces with regular sequences. On the contrast, polarization insensitive diffusion-like scattering can also been successfully achieved by digital metasurface encoded with randomly distributed coding sequences leading to substantial suppression of backward scattering in a broadband microwave frequency. The proposed digital metasurfaces provide simple designs and reveal new opportunities for controlling electromagnetic wave scattering with or without polarization dependence.

摘要

由各种亚波长超颖粒子组成的超薄超颖表面在通过空间操纵界面处的波前特性来控制电磁波方面具有显著优势。最近提出的数字编码超颖表面由于超颖粒子几何形状的数字化,甚至可以简化设计和优化过程。然而,目前实现数字超颖表面的尝试仍然使用几种结构超颖粒子来获得特定的电磁响应,并且需要耗时的优化,特别是在多位编码设计中。在这方面,我们在此展示利用具有不同取向的基于几何相位的单结构超颖粒子来实现1位或多位数字超颖表面。依赖于入射极化的特定电磁波散射图案可以通过具有规则序列的编码超颖表面来定制。相比之下,通过用随机分布的编码序列编码的数字超颖表面也可以成功实现对极化不敏感的类似扩散的散射,从而在宽带微波频率下大幅抑制后向散射。所提出的数字超颖表面提供了简单的设计,并揭示了控制有无极化依赖性的电磁波散射的新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e6d/5075887/398f78905dca/srep35968-f1.jpg

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