BROADBAND PLASMONIC CIRCUITRY ENABLED BY CHANNEL DOMINO SPOOF PLASMONS

Liangliang Liu, L. Ran, Huadong Guo, Xinlei Chen, Zhuo Li
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引用次数: 6

Abstract

Building of compact plasmonic integrated circuits based on domino spoof plasmons (DSPs) is an important requirement and still a challenge. In this work, we report the first demonstration of two kinds of channel domino plasmonic circuitries, which consist of an easy-to-manufacture periodic chain of metallic box-shaped elements inside two finite metallic plates. We reveal that only the channel DSPs itself rather than the hybrid TE10 and DSPs modes is supported in the part of the channel domino plasmonic waveguide with or without the metallic vias on both sides. Two channel domino plasmonic filters based on the efficient transition structures are designed, and the simulated Sparameters and near electric field distributions show excellent transmission performance in broadband. Utilizing the lateral insensitive property of these two channel DSPs, two kinds of broadband plasmonic power dividers/combiners are firstly implemented. Excellent transmission performance validates our optimizations and indicates that the proposed scheme can be easily extended to other bands. This work provides a new route for construction of deep-subwavelength DSP devices in application of high integration of microwave and terahertz circuits.
由通道多米诺欺骗等离子体实现的宽带等离子体电路
构建基于多米诺欺骗等离子体(dsp)的紧凑等离子体集成电路是一个重要的要求,但仍然是一个挑战。在这项工作中,我们报告了两种通道多米诺等离子体电路的首次演示,它们由易于制造的金属盒形元素周期链组成在两个有限的金属板内。我们发现,在两侧有或没有金属过孔的部分通道多米诺等离子波导中,仅支持通道dsp本身而不是混合TE10和dsp模式。设计了基于高效跃迁结构的两个通道多米诺等离子体滤波器,模拟的参数和近场分布显示出良好的宽带传输性能。利用这两种通道dsp的横向不敏感特性,首次实现了两种宽带等离子体功率分配器/合成器。良好的传输性能验证了我们的优化,并表明该方案可以很容易地扩展到其他频段。该工作为在微波和太赫兹电路高集成度应用中构建深亚波长DSP器件提供了一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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