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A High-Gain Broadband Gradient Refractive Index Metasurface Lens Antenna

机译:高增益宽带梯度折射率超表面透镜天线

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摘要

The design, simulation, and measurement results of a high-gain broadband gradient refractive index (GRIN) planar lens fed by an antipodal exponential taper slot antenna (ATSA) are presented. As a constituent part of this lens, a novel nonresonant metamaterial unit cell, composed of bilayer triple rectangular rings, is proposed and its equivalent circuit model is developed and described. It is shown that, by utilizing this element, stronger capacitive couplings between adjacent metallic layers are realized resulting in a large refractive index variation of about 2.5, and hence, a thin lens with a thickness of , where is the wavelength at 9.5 GHz. In addition, since the unit cell is designed to resonate at higher frequencies, its refractive index response is smoothly increased over a broad frequency range and this considerably enhances the operating bandwidth of the lens. The achieved measured results demonstrate a broad matching and gain bandwidths of 52% (7–12 GHz) and 65% (7–13.2 GHz), respectively. Furthermore, this lens offers a high aperture efficiency of 50% (21.2 dB gain) at the center frequency, and its sidelobe and cross-polarization levels are less than and across the entire matched band, respectively.
机译:提出了由对数指数锥形缝隙天线(ATSA)馈电的高增益宽带梯度折射率(GRIN)平面透镜的设计,仿真和测量结果。作为该透镜的组成部分,提出了一种由双层三重矩形环组成的新型非谐振超材料单元,并开发和描述了其等效电路模型。结果表明,通过利用该元件,可以在相邻金属层之间实现更强的电容耦合,从而导致约2.5的大折射率变化,从而形成厚度为的薄透镜,其中波长为9.5 GHz。另外,由于该晶胞被设计成在较高的频率下谐振,所以其折射率响应在很宽的频率范围内平滑地增加,并且这大大提高了透镜的工作带宽。所获得的测量结果表明,匹配和增益带宽分别为52%(7-12 GHz)和65%(7-13.2 GHz)。此外,这款镜头在中心频率下提供了50%的高光圈效率(21.2 dB增益),并且其旁瓣和交叉极化水平分别小于和跨越整个匹配频段。

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