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An angularly stable tri-band reflective cross-polarization conversion anisotropic metasurface

机译:角度稳定的三波段反射型交叉极化转换各向异性超表面

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A tri-band microwave cross-polarization-conversion (CPC) metasurface is designed and simulated. The metasurface consists of a split-ring-resonator (SRRs) with two splits placed within perpendicular sides of the SRR and designed on FR4 dielectric substrate backed by a metallic ground plane. An efficient CPC, both for normal as well as for oblique incidence, is achieved. This multi-band polarization conversion results from multiple plasmonic resonances occurring at three neighboring frequencies. Owing to sub-wavelength unit cell size, thin dielectric substrate and optimized structure of the SRR, the response of the metasurface is independent of the incidence angle of the incoming wave which makes it a potential candidate for many practical applications.
机译:设计并模拟了三波段微波交叉极化转换(CPC)超表面。超颖表面由一个开口环谐振器(SRR)组成,两个开口位于SRR的垂直两侧,并设计在FR4介电基片上,并以金属接地层作为支撑。实现了正常和倾斜入射的有效CPC。这种多频带极化转换是由在三个相邻频率处发生的多个等离子体共振引起的。由于亚波长单位晶胞尺寸,薄电介质衬底和SRR的优化结构,超颖表面的响应与入射波的入射角无关,这使其成为许多实际应用的潜在候选者。

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