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基于黑磷和石墨烯的多重等离激元诱导透明用于高灵敏度折射率传感。

Multiple plasmon-induced transparency based on black phosphorus and graphene for high-sensitivity refractive index sensing.

出版信息

Opt Express. 2022 Nov 21;30(24):44004-44017. doi: 10.1364/OE.474901.

Abstract

A hybrid bilayer black phosphorus (BP) and graphene structure with high sensitivity is proposed for obtaining plasmon-induced transparency (PIT). By means of surface plasmon resonance in the rectangular-ring BP structure and ribbon graphene structure, a PIT effect with high refractive index sensitivity is achieved, and the surface plasmon hybridization between graphene and anisotropic BP is analyzed theoretically. Meanwhile, the PIT effect is quantitatively described using the coupled oscillator model and the strong coherent coupling phenomena are analyzed by adjusting the coupling distance between BP and graphene, the Fermi level of graphene, and the crystal orientation of BP, respectively. The simulation results show that the refractive index sensitivity S = 7.343 THz/RIU has been achieved. More importantly, this is the first report of tunable PIT effects that can produce up to quintuple PIT windows by using the BP and graphene hybrid structure. The high refractive index sensitivity of the quintuple PIT system for each peak is 3.467 THz/RIU, 3.467 THz/RIU, 3.600 THz/RIU, 4.267 THz/RIU, 4.733 THz/RIU and 6.133 THz/RIU, respectively, which can be used for multiple refractive index sensing function.

摘要

提出了一种具有高灵敏度的混合双层黑磷(BP)和石墨烯结构,用于获得等离子体诱导透明(PIT)。通过矩形环 BP 结构和带状石墨烯结构中的表面等离激元共振,实现了具有高折射率灵敏度的 PIT 效应,并从理论上分析了石墨烯和各向异性 BP 之间的表面等离激元杂化。同时,使用耦合振荡器模型定量描述了 PIT 效应,并通过分别调整 BP 和石墨烯之间的耦合距离、石墨烯的费米能级和 BP 的晶体取向来分析强相干耦合现象。模拟结果表明,已经实现了折射率灵敏度 S = 7.343 THz/RIU。更重要的是,这是首次报道使用 BP 和石墨烯混合结构可以产生多达五重 PIT 窗口的可调谐 PIT 效应。每个峰的五重 PIT 系统的高折射率灵敏度分别为 3.467 THz/RIU、3.467 THz/RIU、3.600 THz/RIU、4.267 THz/RIU、4.733 THz/RIU 和 6.133 THz/RIU,可用于多种折射率传感功能。

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