Orazbayev Bakhtiyar, Beruete Miguel, Pacheco-Peña Víctor, Crespo Gonzalo, Teniente Jorge, Navarro-Cía Miguel
Antennas Group-TERALAB, Universidad Pública de Navarra, Pamplona 31006, Spain.
1] Optical and Semiconductor Devices Group, Department of Electrical and Electronic Engineering, Imperial College London, London, SW7 2BT, UK [2] Centre for Plasmonics and Metamaterials, Imperial College London, London, SW7 2AZ, UK [3] Centre for Terahertz Science and Engineering, Imperial College London, London, SW7 2AZ, UK.
Sci Rep. 2015 May 7;5:9988. doi: 10.1038/srep09988.
At the expense of frequency narrowing, binary amplitude-only diffractive optical elements emulate refractive lenses without the need of large profiles. Unfortunately, they also present larger Fresnel reflection loss than conventional lenses. This is usually tackled by implementing unattractive cumbersome designs. Here we demonstrate that simplicity is not at odds with performance and we show how the fishnet metamaterial can improve the radiation pattern of a Soret lens. The building block of this advanced Soret lens is the fishnet metamaterial operating in the near-zero refractive index regime with one of the edge layers designed with alternating opaque and transparent concentric rings made of subwavelength holes. The hybrid Soret fishnet metalens retains all the merits of classical Soret lenses such as low profile, low cost and ease of manufacturing. It is designed for the W-band of the millimeter-waves range with a subwavelength focal length FL = 1.58 mm (0.5λ0) aiming at a compact antenna or radar systems. The focal properties of the lens along with its radiation characteristics in a lens antenna configuration have been studied numerically and confirmed experimentally, showing a gain improvement of ~2 dB with respect to a fishnet Soret lens without the fishnet metamaterial.
以频率变窄为代价,二元纯振幅衍射光学元件无需大尺寸外形就能模拟折射透镜。不幸的是,它们的菲涅耳反射损耗也比传统透镜大。这通常通过实施缺乏吸引力的繁琐设计来解决。在此我们证明简单性与性能并不矛盾,并且展示了渔网超材料如何能够改善索雷特透镜的辐射方向图。这种先进索雷特透镜的基本单元是在近零折射率状态下工作的渔网超材料,其边缘层之一设计为由亚波长孔构成的交替不透明和透明同心环。这种混合索雷特渔网超构透镜保留了经典索雷特透镜的所有优点,如外形小、成本低且易于制造。它针对毫米波范围的W波段进行设计,亚波长焦距FL = 1.58 mm(0.5λ0),适用于紧凑型天线或雷达系统。已对该透镜在透镜天线配置中的聚焦特性及其辐射特性进行了数值研究并通过实验得到证实,结果表明与没有渔网超材料的渔网索雷特透镜相比,增益提高了约2 dB。