High-Efficiency Dual-Band Metasurface with Independent Multifold Geometric Phases

被引:9
|
作者
Faraz, Faizan [1 ]
Huang, Yuanqing [1 ]
Liu, Haoyang [2 ]
Abbasi, Taufeeq Ur Rehman [3 ,4 ]
Wang, Xiong [2 ]
Si, Liming [5 ]
Zhu, Weiren [1 ]
机构
[1] Shanghai Jiao Tong Univ, Dept Elect Engn, Shanghai 200240, Peoples R China
[2] ShanghaiTech Univ, Sch Informat Sci & Technol, Shanghai 201210, Peoples R China
[3] Zhejiang Univ, Lab Soft Machines & Smart Devices Zhejiang Prov, Key Lab CAD & CG, Hangzhou 310027, Peoples R China
[4] Zhejiang Univ Hangzhou, Dept Engn Mechan, Hangzhou 310027, Peoples R China
[5] Beijing Inst Technol, Sch Integrated Circuits & Elect, Beijing Key Lab Millimeter Wave & Terahertz Techno, Beijing 100081, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金; 北京市自然科学基金;
关键词
dual band; geometric phase; holographic images; metasurfaces;
D O I
10.1002/adom.202300347
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The concept of geometric phase has attracted enormous interest in the metasurface community for achieving phase variation with simple geometrical rotation. Here, this work demonstrates for the first time a highly efficient dual-band metasurface with independent phase responses for structures with different-fold rotational symmetries. For proof of concept, a hybrid unit cell structure with nested resonators of different-fold (single-fold and threefold) is proposed, where geometric rotation independent phase shifts of two times and six times the rotation angle are achieved in lower and higher bands, respectively. By rotating the resonators within the unit cell, highly efficient independent full phase controls can be achieved with circularly polarized incident waves. The co-polarized reflection efficiency exceeds 90% at the frequency domain from 10.95 to 11.75 GHz (corresponding to the inner resonator) and exceeds 80% between 14.10 and 14.43 GHz (corresponding to the outer resonator), with peak values of 94.7% at 11.55 GHz and 85.5% at 14.23 GHz, respectively. To validate the versatility of the design paradigm, a metasurface porotype is fabricated and experimentally tested by generating independent holographic images.
引用
收藏
页数:8
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