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Plasmonic metamaterial-based filtering structures with dynamic tunability

机译:具有动态可调性的基于质子的超材料的过滤结构

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摘要

In this Letter, we report the design, analysis, and characterization of first- and second-order plasmonic metamaterial-based multi-mode filtering structures. Further, electronic adaptivity in filter transfer functions is introduced and characterized. First, the basic operating principle of the engineered multi-mode resonator-based bandpass filter is presented. Then the concept is extended by introducing electronic (dynamic) tuning of the bandwidth using semiconductor varactor diodes. Afterwards, to enhance the selectivity and out-of-band filtering response, second-order multi-mode designs are realized. For experimental verification, the hardware prototype is fabricated and characterized using the Keysight analyzer N9918A. The design filtering structures will pave an important role in tunable plasmonic circuits and systems. (C) 2019 Optical Society of America
机译:在这封信中,我们报告了基于第一和二阶超级材料的多模过滤结构的设计,分析和表征。 此外,引入并表征了过滤器传递函数中的电子适应性。 首先,提出了工程化的多模谐振器基带滤波器的基本操作原理。 然后通过使用半导体变容二极管引入带宽的电子(动态)调谐来扩展该概念。 然后,为了增强选择性和带外滤波响应,实现二阶多模式设计。 对于实验验证,使用Keysight Analyzer N9918A制造和表征硬件原型。 设计过滤结构将在可调谐等离子体电路和系统中铺平重要作用。 (c)2019年光学学会

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