Electronic Materials Center, Korea Institute of Science and Technology, Seoul 136-791,
Sensors (Basel). 2010;10(12):11390-9. doi: 10.3390/s101211390. Epub 2010 Dec 13.
In this study, we present and demonstrate a new route to a great enhancement in resolution of surface plasmon resonance sensors. Basically, our approach combines a waveguide coupled plasmonic mode and a kind of Au/Ag bimetallic enhancement concept. Theoretical modeling was carried out by solving Fresnel equations for the multilayer stack of prism/Ag inner-metal layer/dielectric waveguide/Au outer-metal layer. The inner Ag layer couples incident light to a guided wave and makes more fields effectively concentrated on the outer Au surface. A substantial enhancement in resolution was experimentally verified for the model stack using a ZnS-SiO2 waveguide layer.
在这项研究中,我们提出并展示了一种提高表面等离子体共振传感器分辨率的新途径。基本上,我们的方法结合了波导耦合等离子体模式和一种金/银双金属增强概念。通过求解棱镜/Ag 内层/介质波导/Au 外层的多层堆叠的菲涅耳方程进行了理论建模。内层 Ag 层将入射光耦合到导波中,并使更多的场有效地集中在外部 Au 表面上。使用 ZnS-SiO2 波导层对模型堆叠进行了实验验证,实现了分辨率的显著提高。