首页> 外文期刊>Scientific reports. >Broadband terahertz absorber based on multi-band continuous plasmon resonances in geometrically gradient dielectric-loaded graphene plasmon structure
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Broadband terahertz absorber based on multi-band continuous plasmon resonances in geometrically gradient dielectric-loaded graphene plasmon structure

机译:基于多带连续等离子体谐振的宽带太赫兹吸收器在几何梯度介电加载的石墨烯等离子体结构中

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摘要

We propose a broadband terahertz absorber consisting of nonstructured graphene loaded with arrays of elliptic dielectric cylinders. The relative bandwidth for the absorption above 90% reaches about 65%. The working mechanism of broad bandwidth mainly comes from two aspects. One is that the nonstructured graphene loaded with elliptic dielectric cylinders provides multiple discrete graphene plasmon resonances with large relative frequency interval. The other is that, for each discrete resonance, there exists a set of continuous plasmon resonances because the width of the dielectric structure varies continuously and gradiently. The broadband terahertz absorber we demonstrate here, based on geometrically gradient dielectric structures and nonstructured graphene, avoids the graphene processing, which shows great potential applications in related devices.
机译:我们提出了由装载有椭圆介质圆柱阵列的非结构石墨烯组成的宽带太赫兹吸收器。吸收高于90%的相对带宽达到约65%。广泛带宽的工作机制主要来自两个方面。一个是装载有椭圆介质缸的非结构石墨烯,提供了具有大相对频率间隔的多个离散石墨烯等离子体谐振。另一种是,对于每个离散的共振,存在一组连续的等离子体谐振,因为介电结构的宽度连续且梯度变化。基于几何梯度介电结构和非结构石墨烯,我们在此证明的宽带太赫兹吸收器避免了石墨烯处理,其显示了相关设备中的巨大潜在应用。

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