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用于纳米级光学传感的石墨烯紫外超高品质因数完美吸收

Graphene ultraviolet ultrahigh-Q perfect absorption for nanoscale optical sensing.

作者信息

Yan Zhendong, Zhu Qi, Wan Mingjie, Lu Xue, Pu Xingting, Tang Chaojun, Yu Lili

出版信息

Opt Express. 2020 Mar 2;28(5):6095-6101. doi: 10.1364/OE.385658.

Abstract

We propose an ultraviolet perfect ultranarrow band absorber by coating a dielectric grating on the monolayer graphene-dielectric-metal structure. The absorber presents an ultranarrow Fano lineshape with quality (Q) factor of 70 and a nearly perfect absorption of over 99.9% in the ultraviolet region, which is ascribed to the near field coupling of the optical dissipation of graphene and guide mode resonance of the dielectric grating. Structure parameters to the influence of the performance are investigated. The structure exhibits the high optical sensitivity (S = 150 nm/RIU, S* = 48/RIU) and figure of merit (FOM = 50, FOM* = 25374) and can also be used to detect the nanoscale analyte layer of sub-nanometer thickness, suggesting great potential applications in ultra-compact efficient biosensors for a much more sensitive detection of small refractive index changes.

摘要

我们通过在单层石墨烯-电介质-金属结构上涂覆电介质光栅,提出了一种紫外完美超窄带吸收器。该吸收器呈现出品质(Q)因子为70的超窄法诺线形,并且在紫外区域具有超过99.9%的近乎完美的吸收,这归因于石墨烯的光耗散与电介质光栅的导模共振之间的近场耦合。研究了结构参数对性能的影响。该结构具有高光灵敏度(S = 150 nm/RIU,S* = 48/RIU)和品质因数(FOM = 50,FOM* = 25374),还可用于检测亚纳米厚度的纳米级分析物层,这表明其在超紧凑高效生物传感器中具有巨大的潜在应用,可更灵敏地检测小折射率变化。

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