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High-Sensitivity Terahertz Refractive Index Sensor in a Multilayered Structure with Graphene

机译:石墨烯多层结构中的高灵敏度太赫兹折射率传感器

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摘要

In this paper, we propose a high-sensitivity optical sensor at terahertz frequencies based on a composite structure containing a one-dimensional photonic crystal (1D PC) coated with a layer of monolayer graphene. Between the 1D PC and the graphene there is a sensing medium. This high-sensitivity phenomenon originates from the excitation of optical resonance between the graphene and the 1D PC. The proposed sensor is highly sensitive to the Fermi energy of graphene, the thickness and refractive index of the sensing medium, and the number of graphene layers. By selecting appropriate parameters, the maximum sensitivity ( ) is obtained. We believe the proposed configuration is promising for fabricating graphene-based biosensor- or gas-sensor devices and other related applications in the terahertz band.
机译:在本文中,我们提出了一种基于太赫兹频率的高灵敏度光学传感器,该传感器基于一种复合结构,该复合结构包含一维光子晶体(1D PC),其表面覆盖有一层单层石墨烯。在1D PC和石墨烯之间有一种感应介质。这种高灵敏度现象源自石墨烯和1D PC之间的光学共振激发。所提出的传感器对石墨烯的费米能,传感介质的厚度和折射率以及石墨烯层的数量高度敏感。通过选择适当的参数,可获得最大灵敏度()。我们认为,提出的配置有望在太赫兹频段上制造基于石墨烯的生物传感器或气体传感器设备以及其他相关应用。

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