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Use of Dispersion Imaging for Grating-Coupled Surface Plasmon Resonance Sensing of Multilayer Langmuir-Blodgett Films

机译:色散成像在多层Langmuir-Blodgett膜的光栅耦合表面等离振子共振传感中的应用

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We report grating-coupled surface plasmon resonance measurements involving the use of dispersion images to interpret the optical response of a metal-coated grating. Optical transmission through a grating coated with a thin, gold film exhibits features characteristic of the excitation of surface plasmon resonance due to coupling with the nanostructured grating surface. Evidence of numerous surface plasmon modes associated with coupling at both front (gold/ air) and back (gold/substrate) grating interfaces is observed. The influence of wavelength and angle of incidence on plasmon coupling can be readily characterized via dispersion images, and the associated image features can be indexed to matching conditions associated with several diffracted orders at both the front and back of the grating. These features collapse onto a set of global dispersion curves when plotted as peak energy versus the grating wavevector, with feature locations clustered according to the refractive index values of the neighboring dielectric material, either air or polycarbonate. Coating of the grating with multilayer arachidic acid films via Langmuir-Blodgett deposition results in red-shifting of some, but not all, of the plasmon features. The magnitude of the shift is a function of the film thickness, wavelength, and angle of incidence. Dispersion images clearly depict the red-shifting and also broadening of the front side features with increasing film thickness. In contrast, little change is observed in features associated with the back-side of the grating. The nature and magnitude of the interaction between the plasmon modes appearing at the front and back sides of the grating are discussed and analyzed in terms of the predicted interactions determined via optical modeling calculations.
机译:我们报告光栅耦合的表面等离子体共振测量,涉及使用色散图像来解释金属涂层光栅的光学响应。通过与薄的金膜涂覆的光栅的光传输由于与纳米结构的光栅表面耦合而表现出激发表面等离子体共振的特征。观察到与在正面(金/空气)和背面(金/基板)光栅界面耦合相关的许多表面等离子体激元模式的证据。波长和入射角对等离激元耦合的影响可以通过色散图像轻松表征,并且相关的图像特征可以索引到与光栅正面和背面的几个衍射级相关的匹配条件。当绘制为峰值能量与光栅波矢的关系曲线时,这些特征折叠到一组全局色散曲线上,特征位置根据相邻的介电材料(空气或聚碳酸酯)的折射率值进行聚类。通过Langmuir-Blodgett沉积用多层花生酸薄膜涂覆光栅会导致某些但不是全部等离激元特征发生红移。位移的大小是薄膜厚度,波长和入射角的函数。色散图像清楚地显示了随着膜厚度的增加,前部特征的红移和变宽。相反,在与光栅的背面相关的特征中观察到很小的变化。根据通过光学建模计算确定的预测相互作用,讨论并分析了出现在光栅正面和背面的等离激元模式之间相互作用的性质和大小。

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