Dual-band tunable negative refractive index metamaterial with F-Shape structure

M. Rizwan, Haibo Jin, Fida Rehman, Z. Hou, Jing-Bo Li, F. Butt, Z. Ali
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引用次数: 18

Abstract

This paper presents a negative refractive index tunable metamaterial based on F-Shape structure which is capable of achieving dual-band negative permeability and permittivity, thus dual-band negative refractive index. An electromagnetic simulation was performed and effective media parameters were retrieved. Numerical investigations show clear existence of two frequency bands in which permeability and permittivity both are negative. The two negative refractive index bandwidths are from 23.8 GHz to 24.1 GHz and from 28.3 GHz to 34.9 GHz, respectively. The geometry of the structure is simple so it can easily be fabricated. The proposed structure can be used in multiband and broad band devices, as the band range in second negative refractive index region is 7 GHz, for potential applications instead of using complex geometric structures and easily tuned by varying the separation between the horizontal wires.
具有f形结构的双波段可调谐负折射率超材料
本文提出了一种基于f形结构的负折射率可调谐超材料,该材料能够实现双带负磁导率和介电常数,从而实现双带负折射率。进行了电磁模拟,获得了有效介质参数。数值研究表明,磁导率和介电常数均为负的两个频段明显存在。两个负折射率带宽分别为23.8 ~ 24.1 GHz和28.3 ~ 34.9 GHz。结构的几何形状很简单,所以很容易制造。该结构可用于多频带和宽带器件,因为第二负折射率区域的频带范围为7 GHz,具有替代复杂几何结构的潜在应用,并且可以通过改变水平线之间的距离轻松调谐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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审稿时长
3.3 months
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