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利用双负折射率渔网超材料的色散特性来制造宽带低剖面金属透镜。

Exploiting the dispersion of the double-negative-index fishnet metamaterial to create a broadband low-profile metallic lens.

作者信息

Orazbayev B, Pacheco-Peña V, Beruete M, Navarro-Cía M

出版信息

Opt Express. 2015 Apr 6;23(7):8555-64. doi: 10.1364/OE.23.008555.

Abstract

Metamaterial lenses with close values of permittivity and permeability usually display low reflection losses at the expense of narrow single frequency operation. Here, a broadband low-profile lens is designed by exploiting the dispersion of a fishnet metamaterial together with the zoning technique. The lens operates in a broadband regime from 54 GHz to 58 GHz, representing a fractional bandwidth ~7%, and outperforms Silicon lenses between 54 and 55.5 GHz. This broadband operation is demonstrated by a systematic analysis comprising Huygens-Fresnel analytical method, full-wave numerical simulations and experimental measurements at millimeter waves. For demonstrative purposes, a detailed study of the lens operation at two frequencies is done for the most important lens parameters (focal length, depth of focus, resolution, radiation diagram). Experimental results demonstrate diffraction-limited ~0.5λ transverse resolution, in agreement with analytical and numerical calculations. In a lens antenna configuration, a directivity as high as 16.6 dBi is achieved. The different focal lengths implemented into a single lens could be potentially used for realizing the front end of a non-mechanical zoom millimeter-wave imaging system.

摘要

介电常数和磁导率值相近的超材料透镜通常以牺牲窄单频工作为代价来展现低反射损耗。在此,通过利用渔网超材料的色散以及分区技术设计了一种宽带低剖面透镜。该透镜在54吉赫兹至58吉赫兹的宽带范围内工作,分数带宽约为7%,并且在54吉赫兹至55.5吉赫兹之间性能优于硅透镜。通过包括惠更斯 - 菲涅耳分析法、全波数值模拟和毫米波实验测量在内的系统分析,证明了这种宽带工作特性。出于演示目的,针对最重要的透镜参数(焦距、焦深、分辨率、辐射方向图),对透镜在两个频率下的工作情况进行了详细研究。实验结果表明,横向分辨率达到了约0.5λ 的衍射极限,与分析和数值计算结果一致。在透镜天线配置中,实现了高达16.6 dBi的方向性。在单个透镜中实现的不同焦距有可能用于实现非机械变焦毫米波成像系统的前端。

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