Author:
Huang Xiaojun,Ma Xia,Li Xuewen,Fan Jingdao,Guo Liang,Yang Helin
Abstract
AbstractManipulating the polarizations of electroagnetic waves by flexible and diverse means is desirable for myriad microwave systems. More recently, metasurfaces have emerged as promising alternatives to conventional polarization manipulation components because the flexibility of their geometry means that they can be arbitrarily customized. In this context, a bilayered metasurface is presented to simultaneously manipulate the polarized states of reflected and transmitted microwaves. Regardless of whether an incident electromagnetic wave is x-polarized or y-polarized, the reflected and transmitted waves are converted into their orthogonal waves at the operating frequency. The designed metasurface has a high polarization conversion rate, above 90%, for both normal and oblique incidences. Experimental results verify the correctness of the simulated results. Finally, the axial ratio and surface current distributions are employed to reveal the physics of the polarization manipulation. The proposed metasurface will be beneficial in the design of flexible and versatile polarization converters, has great potential for applications in polarization-controlled devices and is believed to be extendable to higher frequency regimes.
Funder
the Project of Science and Technology of Shaanxi Province
Natural Science Foundation of Xinjiang Uygur Autonomous Region
the Science and Technology Plan Project of Xi'an Beilin District
Publisher
Springer Science and Business Media LLC
Cited by
55 articles.
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