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A New Compact Double-Negative Miniaturized Metamaterial for Wideband Operation

机译:一种用于宽带操作的新型紧凑型双负片超小型材料

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摘要

The aim of this paper is to introduce a compact double-negative (DNG) metamaterial that exhibits a negative refractive index (NRI) bandwidth of more than 3.6 GHz considering the frequency from 2 to 14 GHz. In this framework, two arms of the designed unit cell are split in a way that forms a Modified-Z-shape structure of the FR-4 substrate material. The finite integration technique (FIT)-based Computer Simulation Technology (CST) Microwave Studio is applied for computation, and the experimental setup for measuring the performance is performed inside two waveguide ports. Therefore, the measured data complies well with the simulated data of the unit cell at 0-degree and 90-degree rotation angles. The designed unit cell shows a negative refractive index from 3.482 to 7.096 GHz (bandwidth of 3.61 GHz), 7.876 to 10.047 GHz (bandwidth of 2.171 GHz), and 11.594 to 14 GHz (bandwidth of 2.406 GHz) in the microwave spectra. The design also exhibits almost the same wide negative refractive index bandwidth in the major region of the C-band and X-band if it is rotated 90 degrees. However, the novelty of the proposed structure lies in its effective medium ratio of more than 4, wide bandwidth, and compact size.
机译:本文的目的是介绍一种紧凑的双负(DNG)超材料,考虑到2至14 GHz的频率,该材料的负折射率(NRI)带宽超过3.6 GHz。在此框架中,所设计的单位单元的两个臂以形成FR-4基板材料的Modified-Z形结构的方式分开。应用基于有限积分技术(FIT)的计算机仿真技术(CST)Microwave Studio进行计算,并在两个波导端口内进行了用于测量性能的实验装置。因此,在0度和90度旋转角度下,测量数据与单位晶格的模拟数据非常吻合。设计的晶胞在微波光谱中显示出3.482至7.096 GHz(带宽3.61 GHz),7.876至10.047 GHz(带宽2.171 GHz)和11.594至14 GHz(带宽2.406 GHz)的负折射率。如果将设计旋转90度,该设计在C波段和X波段的主要区域也将显示几乎相同的负折射率宽带。然而,所提出的结构的新颖之处在于其有效介质比率大于4,带宽宽,尺寸紧凑。

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