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在同一平面平台上同时产生表面等离子体和有损模式共振。

Simultaneous Generation of Surface Plasmon and Lossy Mode Resonances in the Same Planar Platform.

作者信息

Fuentes O, Del Villar I, Dominguez I, Corres J M, Matías I R

机构信息

Electrical, Electronics and Communications Engineering Department, Public University of Navarra, 31006 Pamplona, Spain.

Department of Telecommunications and Electronics, Pinar del Río University, Pinar del Río 20100, Cuba.

出版信息

Sensors (Basel). 2022 Feb 15;22(4):1505. doi: 10.3390/s22041505.

Abstract

A planar waveguide consisting of a coverslip for a microscope glass slide was deposited in one of its two faces with two materials: silver and indium tin oxide (ITO). The incidence of light by the edge of the coverslip permitted the generation of both surface plasmon and lossy mode resonances (SPRs and LMRs) in the same transmission spectrum with a single optical source and detector. This proves the ability of this optical platform to be used as a benchmark for comparing different optical phenomena generated by both metal and dielectric materials, which can be used to progress in the assessment of different sensing technologies. Here the SPR and the LMR were compared in terms of sensitivity to refractive index and figure of merit (FoM), at the same time it was demonstrated that both resonances can operate independently when silver and ITO coated regions are surrounded by different refractive index liquids. The results were supported with numerical results that confirm the experimental ones.

摘要

一种由用于显微镜载玻片的盖玻片组成的平面波导,在其两个面之一上沉积了两种材料:银和氧化铟锡(ITO)。通过盖玻片边缘的光入射允许在同一传输光谱中使用单个光源和探测器同时产生表面等离子体共振和损耗模式共振(SPRs和LMRs)。这证明了该光学平台能够用作比较由金属和介电材料产生的不同光学现象的基准,可用于推进不同传感技术的评估。在此,对SPR和LMR在折射率灵敏度和品质因数(FoM)方面进行了比较,同时证明了当银和ITO涂层区域被不同折射率液体包围时,两种共振可以独立运行。数值结果支持了实验结果。

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