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Compact broadband slow wave system based on spoof plasmonic THz waveguide with meander grooves

机译:基于带弯折沟槽的欺骗性等离子太赫兹波导的紧凑型宽带慢波系统

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摘要

Conformal surface plasmons (CSPs) on ultrathin corrugated metallic strips have been proposed to develop versatile spoof plasmonic subwavelength integrated devices at lower frequencies bands, especially at terahertz (THz) frequencies. However, the effects of the groove shapes have not been fully investigated. Here we have proposed the CSPs waveguide constructed by meander grooves on an ultrathin dielectric substrate. The dispersions and propagation characteristics of the CSPs on the proposed waveguide have been investigated in the THz frequencies. A very compact broadband slow wave system based on such waveguide has been demonstrated, whose lateral dimension decreases about 43.2% than that based on the conventional CSPs waveguide. To verify the performance of the THz plasmonic device, we implemented experimental validation in the microwave frequencies by scaling up its geometry structure. It is believed that the CSPs waveguide and device can find more applications in the surface plasmonic THz platform such as signal processing and optical communication system. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经提出了在超薄波纹金属带上的共形表面等离子体激元(CSP),以开发在较低频段,尤其是太赫兹(THz)频率下的通用欺骗性等离子体激元亚波长集成器件。但是,尚未充分研究凹槽形状的影响。在这里,我们提出了由超薄介电基板上的曲折槽构成的CSP波导。已经在太赫兹频率下研究了所提出的波导上CSP的色散和传播特性。已经证明了基于这种波导的非常紧凑的宽带慢波系统,其横向尺寸比传统的CSPs波导减小了约43.2%。为了验证THz等离子体装置的性能,我们通过扩大其几何结构在微波频率上进行了实验验证。人们相信,CSP波导和器件可以在表面等离子体THz平台中找到更多的应用,例如信号处理和光通信系统。 (C)2015 Elsevier B.V.保留所有权利。

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