光束转向
计算机科学
波束赋形
编码(社会科学)
电子工程
概念证明
无线
电信
工程类
天线(收音机)
数学
统计
操作系统
作者
Lei Zhang,Xiaohong Chen,Shuo Liu,Qian Zhang,Jie Zhao,Jun Yan Dai,Guo Dong Bai,Xiang Wan,Qiang Cheng,Giuseppe Castaldi,Vincenzo Galdi,Tie Jun Cui
标识
DOI:10.1038/s41467-018-06802-0
摘要
Abstract The recently proposed digital coding metasurfaces make it possible to control electromagnetic (EM) waves in real time, and allow the implementation of many different functionalities in a programmable way. However, current configurations are only space-encoded, and do not exploit the temporal dimension. Here, we propose a general theory of space-time modulated digital coding metasurfaces to obtain simultaneous manipulations of EM waves in both space and frequency domains, i.e., to control the propagation direction and harmonic power distribution simultaneously. As proof-of-principle application examples, we consider harmonic beam steering, beam shaping, and scattering-signature control. For validation, we realize a prototype controlled by a field-programmable gate array, which implements the harmonic beam steering via an optimized space-time coding sequence. Numerical and experimental results, in good agreement, demonstrate good performance of the proposed approach, with potential applications to diverse fields such as wireless communications, cognitive radars, adaptive beamforming, holographic imaging.
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