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石墨烯层对混合Tamm-表面等离激元极化激元模式中强耦合的影响。

Influence of the graphene layer on the strong coupling in the hybrid Tamm-plasmon polariton mode.

作者信息

Buzavaite-Verteliene E, Valavicius A, Grineviciute L, Tolenis T, Lukose R, Niaura G, Balevicius Z

出版信息

Opt Express. 2020 Mar 30;28(7):10308-10319. doi: 10.1364/OE.384079.

Abstract

The total internal refection ellipsometry (TIRE) method was used for the generation and study of the hybrid TPP-SPP mode on a photonic crystal structure with a thin layer of silver and graphene/PMMA. Raman spectroscopy showed a consistent monolayer graphene present on the Ag layer. Recent studies have also shown that TPP and SPP components in the hybrid plasmonic mode is sensitive to the variation of coupling strength due to presence of the graphene monolayer. The decrease of the TPP and SPP dip components in the TPP-SPP hybrid mode can be explained by the changes of the conductivity of the silver layer due to the presence of this additional graphene/PMMA structure, which results in the non-optimal resonance conditions for the hybrid plasmonic mode. The modified positions of the TPP and SPP components in the wavelength spectra when compared to their original, separate excitations, indicates a strong coupling regime. The design of these hybrid plasmonic/graphene-based nanostructures has attractive capabilities for the development of advanced optical sensors and integrated optical circuit technologies.

摘要

采用全内反射椭圆偏振光谱法(TIRE)在具有银薄层以及石墨烯/聚甲基丙烯酸甲酯的光子晶体结构上产生并研究混合表面等离激元-表面等离子体激元(TPP-SPP)模式。拉曼光谱表明在银层上存在一致的单层石墨烯。近期研究还表明,由于存在单层石墨烯,混合等离子体模式中的TPP和SPP成分对耦合强度的变化敏感。TPP-SPP混合模式中TPP和SPP凹陷成分的降低可通过由于这种额外的石墨烯/聚甲基丙烯酸甲酯结构的存在导致银层电导率的变化来解释,这导致混合等离子体模式的共振条件不理想。与它们原来单独激发相比,TPP和SPP成分在波长光谱中的位置改变表明处于强耦合状态。这些基于混合等离子体/石墨烯的纳米结构设计对于先进光学传感器和集成光学电路技术的发展具有诱人的潜力。

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