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Orbital Angular Momentum Generation Using Composite Quasi-Continuous Metasurfaces with Perfect Efficiency

机译:利用合成准连续超表面高效产生轨道角动量

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A composite perfect electric conductor (PEC)-perfect magnetic conductor (PMC) metasurface is proposed for orbital angular momentum (OAM) generation. Each scatterer on the metasurface consists of an anisotropic PEC layer and an isotropic PMC layer. Unlike conventional metasurfaces that composed of discrete scatterers, the scatterers on the proposed metasurface form a quasi-continuous pattern. Therefore, negative consequences of periodicity breaking from the patterned scatterers with varying sizes or orientations and their mutual coupling are avoided. We model the scatterer using Jones matrix. Its design is based on the features of PEC and PMC, which abandons complicated optimization process. The patterning of scatterers on the metasurface is determined by a grating function. The designed metasurface reflects the incident left circularly polarized (LCP)/right circularly polarized (RCP) plane wave to a RCP/LCP vortex beam carrying OAM, with nearly 100% efficiency.
机译:提出了一种复合的完美电导体(PEC)-完美磁导体(PMC)超表面来产生轨道角动量(OAM)。超表面上的每个散射体由各向异性的PEC层和各向同性的PMC层组成。与由离散散射体组成的常规超颖表面不同,拟议超颖表面上的散射体形成准连续图案。因此,避免了周期性的从具有不同尺寸或方向的图案化散射体破裂以及它们相互耦合的负面后果。我们使用琼斯矩阵对散射体进行建模。其设计基于PEC和PMC的功能,放弃了复杂的优化过程。超表面上散射体的图案由光栅函数确定。设计的超表面将入射的左圆极化(LCP)/右圆极化(RCP)平面波反射到承载OAM的RCP / LCP涡旋光束,效率接近100%。

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