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Modeling and applications of metamaterial transmission lines loaded with pairs of coupled complementary split ring resonators (CSRRs)

机译:装有成对的耦合互补开口环谐振器(CSRR)的超材料传输线的建模和应用

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摘要

This letter is focused on the modeling, analysis, and applications of microstrip lines loaded with pairs of electrically coupled complementary split-ring resonators (CSRRs). Typically, these epsilon-negative (ENG) metamaterial transmission lines are implemented by loading the line with a single CSRR (etched beneath the conductor strip) in the unit cell. This provides a stopband in the vicinity of the CSRR resonance. However, by loading the line with a pair of CSRRs per unit cell, it is possible to either implement a dual-band ENG transmission line (useful, for instance, as a dual-band notch filter), provided the CSRRs are tuned at different frequencies, or to design microwave sensors and comparators based on symmetry disruption (in this case by using identical CSRRs and by truncating symmetry by different means, e.g., asymmetric dielectric loading). The design of these CSRR-based structures requires an accurate circuit model able to describe the line, the resonators, and the different coupling mechanisms (i.e., line-to-resonator and inter-resonator coupling). Thus, a lumped element equivalent circuit is proposed and analyzed in detail. The model is validated by comparison to electromagnetic simulations and measurements. A proof-of-concept of a differential sensor for dielectric characterization is proposed. Finally, the similarities of these structures with coplanar waveguide transmission lines loaded with pairs of SRRs are pointed out.
机译:这封信的重点是微带线的建模,分析和应用,该微带线装有成对的电耦合互补开口环谐振器(CSRR)。通常,这些ε-负(ENG)超材料传输线是通过在单位单元中加载单个CSRR(蚀刻在导体带下方)来实现的。这在CSRR谐振附近提供了一个阻带。但是,通过在每单位单元上为线路加载一对CSRR,可以实现双频带ENG传输线(例如,用作双频带陷波滤波器),前提是CSRR的调整位置不同。频率或设计基于对称干扰的微波传感器和比较器(在这种情况下,使用相同的CSRR并通过不同方式(例如非对称介电负载)截断对称性)。这些基于CSRR的结构的设计需要能够描述线路,谐振器和不同耦合机制(即线到谐振器和谐振器之间的耦合)的精确电路模型。因此,提出并详细分析了集总元件等效电路。通过与电磁仿真和测量进行比较来验证该模型。提出了用于电介质表征的差分传感器的概念验证。最后,指出了这些结构与共平面波导传输线中装有成对的SRR的相似性。

著录项

  • 作者

    Su, Lijuan;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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