Programmable time-domain digital-coding metasurface for non-linear harmonic manipulation and new wireless communication systems

被引:6
|
作者
Jie Zhao [1 ]
Xi Yang [2 ]
Jun Yan Dai [1 ]
Qiang Cheng [1 ,3 ]
Xiang Li [2 ]
Ning Hua Qi [1 ]
Jun Chen Ke [1 ]
Guo Dong Bai [1 ]
Shuo Liu [1 ]
Shi Jin [2 ,3 ]
Andrea Alù [4 ,5 ,6 ]
Tie Jun Cui [1 ,3 ,7 ]
机构
[1] State Key Laboratory of Millimeter Waves,Southeast University
[2] Jiangsu Cyber-Space Science & Technology Co., Ltd
[3] Physics Program, The Graduate Center, City University of New York
[4] National Mobile Communication Research Laboratory,Southeast University
[5] Synergetic Innovation Center of Wireless Communication Technology, Southeast University
[6] Department of Electrical Engineering,City College of New York
[7] Photonics Initiative,Advanced Science Research Center, City University of New York
基金
中国国家自然科学基金;
关键词
metasurface; time-domain digital coding; non-linear harmonics control; new architecture of communication;
D O I
暂无
中图分类号
TN92 [无线通信];
学科分类号
080402 ; 080904 ; 0810 ; 081001 ;
摘要
Optical non-linear phenomena are typically observed in natural materials interacting with light at high intensities, and they benefit a diverse range of applications from communication to sensing. However,controlling harmonic conversion with high efficiency and flexibility remains a major issue in modern optical and radio-frequency systems. Here, we introduce a dynamic time-domain digital-coding metasurface that enables efficient manipulation of spectral harmonic distribution. By dynamically modulating the local phase of the surface reflectivity, we achieve accurate control of different harmonics in a highly programmable and dynamic fashion, enabling unusual responses, such as velocity illusion. As a relevant application, we propose and realize a novel architecture for wireless communication systems based on the time-domain digital-coding metasurface, which largely simplifies the architecture of modern communication systems, at the same time yielding excellent performance for real-time signal transmission. The presented work, from new concept to new system, opens new pathways in the application of metamaterials to practical technology.
引用
收藏
页码:231 / 238
页数:8
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