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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >One-Dimensionally Polarization-Independent Retrodirective Metasurface
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One-Dimensionally Polarization-Independent Retrodirective Metasurface

机译:一维独立于偏振的逆向超颖表面

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A one-dimensionally polarization-independent retrodirective metasurface (PIRMS) is proposed in this letter. The retrodirective metasurface (RMS) consists of ring structures on its ground plane to achieve the polarization-independent characteristics. The reflection phases of unitcells of the metasurface can be controlled by the radius of the ring structure, and the dimension of the supercell with the 2π phase variation depends on an incident angle and operation frequency from the generalized Snell’s law. To verify its feasibility, two kinds of RMSs to operate at two retrodirected angles of 20° and 40° are designed and measured at 5.8 GHz. The measured retroreflected power efficiencies are more than 94% and 92% at the retrodirected angles of 20° and 40°, respectively, regardless of the polarization. The results show that the proposed RMS has good performances independent of polarization.
机译:在这封信中提出了一维偏振无关的逆向超颖表面(PIRMS)。逆向超颖表面(RMS)由在其接地面上的环形结构组成,以实现与偏振无关的特性。可以通过环形结构的半径来控制超表面的单位晶胞的反射相位,具有2π相位变化的超晶胞的尺寸取决于广义斯涅尔定律的入射角和工作频率。为了验证其可行性,设计了两种在20°和40°的两个后向角上运行的RMS,并在5.8 GHz下进行了测量。不管极化如何,在20°和40°的反向角时,测得的反向反射功率效率分别大于94%和92%。结果表明,所提出的RMS具有与极化无关的良好性能。

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