首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tunable Fano resonances and improved sensitivity in waveguide-coupled surface plasmon resonance sensors with a bimetallic layer
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Tunable Fano resonances and improved sensitivity in waveguide-coupled surface plasmon resonance sensors with a bimetallic layer

机译:具有双金属层的波导耦合表面等离子体谐振传感器的可调谐扇形共振和改进的灵敏度

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摘要

A multilayer structure consisting of Au-Ag bimetal and dielectric layers which allows coupling between surface plasmon polaritons and waveguide modes is studied by calculating reflectivity curves of incident light. The coupling results in asymmetric resonance modes, which can be attributed to Fano resonances (FR). The variation trend of FR is investigated in detail by fitting numerical results with an analytic model when changing both waveguide widths and silver thicknesses. It is demonstrated that changing the thickness ratio of Au-Ag bilayers can tune the coupling strength and the line shape of FR. We build the resonant mode diagram according to the different asymmetric line shape which can be depicted by the sign of the fitting Fano constant q. At a critical Ag thickness, the coupling gives rise to a q = 0 symmetrical resonance state (plasma induced transparency). Finally, the best optimized thickness combination (Ag/Au) in the structure is found when the refractive index of the sensing layer medium changes. The sensitivity of the optimized sensor is twice as high as that of the single Au film structure.
机译:通过计算入射光的反射曲线,研究了由Au-Ag双金属和介电层组成的多层结构,其允许在表面等离子体极化子和波导模式之间进行耦合。耦合导致不对称的谐振模式,其可以归因于Fano共振(FR)。通过在改变波导宽度和银厚度时,通过用分析模型拟合数值结果来详细研究FR的变化趋势。证明改变Au-Ag双层的厚度比可以调节耦合强度和FR的线形状。我们根据不同的不对称线形状构建谐振模式图,其可以通过拟合Fano常数Q的符号描绘。在临界AG厚度下,耦合产生Q = 0对称谐振状态(等离子体感应透明度)。最后,当感测层介质的折射率变化时,发现结构中的最佳优化厚度组合(AG / AU)。优化传感器的灵敏度是单个Au胶片结构的两倍。

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