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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Multiple plasmonic resonance excitations on graphene metamaterials for ultrasensitive terahertz sensing
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Multiple plasmonic resonance excitations on graphene metamaterials for ultrasensitive terahertz sensing

机译:超敏感太赫兹传感的石墨烯超材料上的多重等离子体共振激发

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摘要

A three-dimensional graphene metamaterial structure consisting of dielectric pillar arrays covered by graphene monolayer with metal layer underneath is proposed and investigated, which can realize the efficient excitations of multiple plasmonic resonance modes under incident terahertz (THz) wave. The multiple plasmonic resonance modes are highly sensitive to the change of analyte refractive index and thickness, and the frequency sensitivity of each resonance mode can reach up to 1.402, 1.687 and 1.643 THz per refractive index unit, respectively. By controlling the Fermi level of graphene, the resonance frequency can be tuned dynamically. Moreover, the proposed structure has three absorption peaks with absorptivity more than 95%, it is polarization-insensitive and can perform very well in a wide incident angles for transverse electric and transverse magnetic waves. This proposed structure can be utilized for active THz plasmonic devices such as multiple channel sensors and absorbers. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出并研究了由石墨烯单层覆盖的介电柱阵列组成的三维石墨烯超材料结构,并研究了在事件Trahertz(THz)波下的多重等离子体共振模式的有效激发。多等离子体共振模式对分析物折射率和厚度的变化非常敏感,每个谐振模式的频率灵敏度分别可以达到每折射率单位的高达1.402,1.687和1.643 THz。通过控制石墨烯的费米水平,可以动态调谐谐振频率。此外,所提出的结构具有3个吸收峰,其吸收率大于95%,它是极化不敏感的,并且可以在横向电动和横向磁波的宽入射角中非常好。该所提出的结构可用于有源THz等离子体装置,例如多通道传感器和吸收器。 (c)2018年elestvier有限公司保留所有权利。

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