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Left handed coplanar waveguide band pass filters based on bi-layer split ring resonators

机译:基于双层裂环谐振器的左手共面波导带通滤波器

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摘要

A new type of compact band pass filters based on planar structures with three metal levels is proposed. The central layer consists on a coplanar waveguide (CPW) with periodic wire connections between the central strip and ground planes. In the upper and lower metal levels, split ring resonators (SRRs) are etched and aligned with the slots. The wires make the structure to behave as a microwave plasma, with a negative effective permittivity covering a wide frequency range. SRRs, which are magnetically coupled to the CPW, provide a negative magnetic permeability in a narrow frequency range above their resonant frequency. The result is a band pass structure which supports wave propagation in a frequency interval where negative permittivity and permeability coexist. The bandwidth of the structure can be controlled by tuning the resonant frequency of the upper and lower SRRs and the distance between SRRs. Fabricated prototype devices exhibit very low insertion losses in the pass band (>1.5 dB) and high frequency selectivity.
机译:提出了一种基于具有三个金属能级的平面结构的新型紧凑型带通滤波器。中心层由共平面波导(CPW)组成,中心带和接地层之间具有周期性的导线连接。在上下金属层中,对裂环谐振器(SRR)进行蚀刻并与槽对齐。导线使该结构表现为微波等离子体,其有效介电常数为负,覆盖了很宽的频率范围。磁耦合到CPW的SRR在高于其谐振频率的狭窄频率范围内提供负磁导率。结果是带通结构支持了在介电常数和磁导率为负的频率间隔内的波传播。可以通过调整上下SRR的谐振频率以及SRR之间的距离来控制结构的带宽。预制的原型器件在通带中具有极低的插入损耗(> 1.5 dB)和高频率选择性。

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