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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Simulation and analysis of plasmonic sensor in NIR with fluoride glass and graphene layer
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Simulation and analysis of plasmonic sensor in NIR with fluoride glass and graphene layer

机译:氟化物玻璃和石墨烯层的衍生传感器模拟与分析

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摘要

A calcium fluoride (CaF2) prism based plasmonic biosensor with graphene layer is proposed in near infrared region (NIR) of operation. The stacking of multilayer graphene is considered with dielectric inter-layer sandwiched between two graphene layers. Excellent optical properties of CaF2 glass and enhanced field at the graphene-analyte interface are intended to be exploited for proposed sensor structure in NIR spectral region. Performance parameters in terms of field enhancement at interface and figure of merit (FOM) are analyzed and compared with those of conventional SPR based sensor. It is demonstrated that the same sensor probe can also be used for gas sensing with nearly 3.5-4 times enhancement in FOM, compared with conventional sensor. The results show that CaF2 based SPR sensor provides much better sensitivity than that based on other glasses. (C) 2017 Elsevier B.V. All rights reserved.
机译:在操作的近红外区域(NIR)中提出了具有石墨烯层的氟化钙(CAF2)棱镜的等离子传感器。 用夹在两个石墨烯层之间的介电层,考虑多层石墨烯的堆叠。 石墨烯-分析物界面处的CaF2玻璃和增强场的优异光学性能旨在用于在NIR光谱区域中提出的传感器结构。 分析了界面处的现场增强和功绩图(FOM)的性能参数与传统SPR基传感器的界面增强。 结果证明,与传统传感器相比,相同的传感器探针也可用于气体感测,在FOM中增强近3.5-4倍。 结果表明,基于CAF2的SPR传感器提供了比基于其他眼镜更好的敏感性。 (c)2017 Elsevier B.v.保留所有权利。

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