首页> 外文会议>2017 IEEE International Conference on Antenna Innovations amp; Modern Technologies for Ground, Aircraft and Satellite Applications >Design of multiple band-notch ring resonator filter based on plasmonic metamaterial at microwave frequency
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Design of multiple band-notch ring resonator filter based on plasmonic metamaterial at microwave frequency

机译:基于微波等离子体等离子超材料的多带隙环形谐振腔滤波器设计

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In this paper, we report a planar ring resonator based on the concept of spoof or designer surface plasmon polaritons (SSPP's). Also an ultrathin plasmonic metamaterial structure corrugated with periodical trapezoidal shape grooves has been reported. When metal surface is corrugated with periodical grooves, it support surface plasmon polaritons mode at microwave frequency which is known as designer or spoof SPP's. In this work first a transition device is implemented using the gradient corrugated strip, in which SSPP wave is highly confined at the teeth part of the corrugated surface. After that, a ring has been introduced and coupled with the same plasmonic waveguide. The proposed devices are designed and fabricated. Simulation and measurement results of reflection and transmission coefficient are in good agreement at microwave frequency.
机译:在本文中,我们报告了基于欺骗或设计者表面等离振子极化子(SSPP's)概念的平面环形谐振器。还已经报道了具有周期性梯形形状凹槽的波纹的超薄等离子体超材料结构。当金属表面带有周期性凹槽的波纹时,它以微波频率支持表面等离振子极化子模式,这被称为设计者或欺骗性SPP。在这项工作中,首先使用渐变波纹带实现过渡装置,其中SSPP波高度限制在波纹表面的齿部。之后,引入了一个环并与同一个等离激元波导耦合。所提出的装置是设计和制造的。微波频率下反射系数和透射系数的仿真与测量结果吻合良好。

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