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Graphene-metal based tunable band-pass filters in the terahertz band

机译:太赫兹频带中基于石墨烯金属的可调带通滤波器

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摘要

The authors propose the concept, analysis, and design of frequency tunable band-pass filters operating in the terahertz band. The proposed structure is composed of two metal tapped line and five metal-contacted graphene hairpin resonators transferred onto a dielectric. This structure implements low insertion loss and frequency tunability by adequately controlling DC bias applied on the graphene. An efficient synthesis method has been presented, through combining classical microwave filter theory and the electrical properties of graphene. The theoretical and extracted resonance frequency of resonator (f0), external quality factor (QE) and coupling coefficient (Kij) are utilised to determine the filter circuit dimensions. Then the authors proposed two examples with different operating bandwidths to validate the theoretical design. The potentially high losses of graphene is also evaluated.
机译:作者提出了在太赫兹频段工作的频率可调带通滤波器的概念,分析和设计。所提出的结构由两条金属抽头线和五个转移到电介质上的金属接触石墨烯发夹式谐振器组成。通过充分控制施加在石墨烯上的直流偏置,该结构实现了低插入损耗和频率可调性。通过结合经典的微波滤波器理论和石墨烯的电学性质,提出了一种有效的合成方法。利用谐振器的理论和提取谐振频率(f0),外部品质因数(QE)和耦合系数(Kij)来确定滤波器电路的尺寸。然后作者提出了两个具有不同工作带宽的示例,以验证理论设计。还评估了石墨烯的潜在高损失。

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