DocumentCode :
3602291
Title :
Ultrathin Metasurface for Controlling Electromagnetic Wave With Broad Bandwidth
Author :
Xumin Ding ; Hao Yu ; Shaoqing Zhang ; Yumin Wu ; Kuang Zhang ; Qun Wu
Author_Institution :
Dept. of Microwave Eng., Harbin Inst. of Technol., Harbin, China
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
In this paper, ultrathin metasurface based on phase discontinuities is proposed to manipulate electromagnetic waves in the microwave region. The gradual phase changes accumulated along the transmission path in the conventional lens are substituted with abrupt phase changes at the interface of the metasurface, which are realized by the Pancharatnam-Berry phase element. An ultrathin metasurface with a linear phase gradient is designed, fabricated, and measured. The phenomenon of anomalous refraction can be observed in a broad bandwidth, in which the cross-polarization conversion efficiency keeps approaching the theoretical limit. The measured result shows that the anomalous refraction angle can be well predicted by the generalized Snell´s laws, and the efficiency keeps >20% in a broad bandwidth of 24%. Our design makes a remarkable progress in the cross-polarization conversion efficiency of the transmission-type metasurface, which is beneficial to put metasurface into practical application.
Keywords :
electromagnetic wave polarisation; electromagnetic wave refraction; electromagnetic wave transmission; lenses; microwave metamaterials; Pancharatnam-Berry phase element; anomalous refraction angle; conventional lens; cross-polarization conversion efficiency; electromagnetic wave; generalized Snell´s laws; linear phase gradient; microwave region; phase changes; phase discontinuities; transmission path; transmission-type metasurface; ultrathin metasurface; Antenna measurements; Bandwidth; Broadband antennas; Broadband communication; Electromagnetic scattering; Magnetic field measurement; Optical polarization; Anomalous refraction; anomalous refraction; metasurface; microwave; phase discontinuity;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2434104
Filename :
7109178
Link To Document :
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