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Ultra-wideband anomalous reflection realised by a gradient metasurface

机译:通过梯度元表面实现的超宽带异常反射

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In this work, an ultra-wideband gradient metasurface (GM) is designed by using Pancharatnam-Berry (PB) phase. In the design process, a circular polarisation (CP)-maintaining metasurface (CMM) is proposed at first, which can realise ultra-wideband CP-maintaining reflection in the frequency band of 7.7-19.9 GHz, moreover, PB phase will be generated in its co-polarised reflection coefficient under CP incidence by rotating the anisotropic resonators in its unit cells. Thus, based on the CMM, an ultra-wideband GM is designed by using PB phase. Both the simulation and experiment show that the designed GM can realise ultra-wideband anomalous reflection under arbitrary polarised incidence, the reflected wave under CP incidence will be deflected to an anomalous direction and even be converted to a surface wave; but under linearly polarised and elliptically polarised incidences, the reflected wave will be separated into two beams. In addition, to design more anomalous reflection metasurfaces, the generation principle of PB phase, together with the root cause of the CP-maintaining reflection of the proposed CMM, has been analysed in detail in the designing process.
机译:在这项工作中,通过使用PanCharatnam-Berry(PB)相位来设计超宽带梯度元表面(GM)。在设计过程中,首先提出了一种圆形偏振(CP) - 镶嵌质量表面(CMM),这可以在7.7-19.9 GHz的频带中实现超宽带CP保持反射,此外,将产生PB相位通过在其单位细胞中旋转各向异性谐振器,其共偏振反射系数在CP发射下。因此,基于CMM,通过使用PB相设计超宽带GM。仿真和实验都表明,设计的通用术可以在任意偏振发射下实现超宽带异常反射,CP入射下的反射波将被偏转到异常方向,甚至转化为表面波;但是在线性偏振和椭圆偏振发夹下,反射波将分成两个光束。另外,为了设计更多异常反射元件,在设计过程中详细分析了Pb相的产生原理,以及所提出的CMM的CP保持反射的根本原因。

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