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A Varactor Loaded Tunable Dual-band Left-Handed Metamaterial

机译:变容二极管加载可调双频左手超材料

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In this paper, we proposed a tunable dual-band left-handed metamaterial (LHM). This dual-band LHM can be regarded as a combination of double-slits split ring resonators (DSSRRs) and rotated 'H-shape' structure loaded with varactors. The 'H-shape' structure functions like arrayed metallic wires, and is only capable of extracting negative permittivity, but with proper loaded capacitors, it can also extract negative permeability. According to the numerical analysis, such character is closely related to the mutual coupling coefficient. We analyzed both the DSSRRs and the 'H-shape' structure through equivalent circuits and simulations, respectively. Later the composed LHM loaded with varactors is also simulated. Dual-band left handed (LH) property can be observed from the retrieved effective parameters, of whom one LH band is stable and wide, approximately from 2GHz to 2.1GHz, while the other one is relatively narrow, shifting from 1.14GHz to 2.36GHz dynamically. Compared to other work where only multi-band technology or tunable method is applied, the combination of both the methods greatly extended the functioning bandwidth.
机译:在本文中,我们提出了一种可调谐的双波段左手超材料(LHM)。这种双频带LHM可以看作是双缝隙裂环谐振器(DSSRR)和装有变容二极管的旋转“ H形”结构的组合。 “ H形”结构的功能类似于排列的金属线,并且仅能够提取负介电常数,而如果使用适当的负载电容器,它也可以提取负磁导率。根据数值分析,这种特性与互耦系数密切相关。我们分别通过等效电路和仿真分析了DSSRR和“ H形”结构。后来,还模拟了装有变容二极管的合成LHM。从检索到的有效参数中可以观察到双频左手(LH)属性,其中一个LH频带稳定且宽,大约在2GHz至2.1GHz,而另一个LH频带相对较窄,从1.14GHz变为2.36GHz动态地。与仅应用多频带技术或可调谐方法的其他工作相比,两种方法的组合极大地扩展了功能带宽。

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