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Spectral Phase Shift of Surface Plasmon Resonance in the Kretschmann Configuration: Theory and Experiment

机译:KROSCHMANN配置中表面等离子体共振的光谱相移:理论与实验

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摘要

The spectral phase shift of surface plasmon resonance (SPR) in the Kretschmann configuration is modeled for aqueous solutions of NaCl (analytes) and an SPR structure consisting of gold and chromium layers deposited on an SF10 glass slide. Using the material dispersion of the SPR structure and the analyte, the SPR phase shift, its spectral derivative, and the spectral dependence of the ratio of the reflectances of p- and s-polarized waves are determined for aqueous solutions of NaCl when the concentration of NaCl in water and the refractive index range from 0 to 10 weight percent (wt%) and from 1.3334 to 1.3515 RIU, respectively. In addition, theoretical modeling is accompanied by experiment and the position of a sharp maximum in the measured spectral derivative of the SPR phase shift changes in a range from 596 to 626 nm. From the measurements, a sensitivity to concentration of 3.83 nm/wt% and a detection limit of 7.3 x 10(-7) RIU at a wavelength of 612.36 nm are obtained, and very good agreement between theory and experiment is confirmed.
机译:Kretschmann构型中表面等离子体共振(SPR)的光谱相移为NaCl(分析物)的水溶液和SPR结构,包括沉积在SF10玻璃载玻片上的金和铬层。使用SPR结构的材料分散和分析物,SPR相移,其光谱衍生物和P-an偏振波的反射比率的光谱依赖性,用于当浓度的NaCl的水溶液中确定在水中的NaCl和折射率范围为0至10重量%(wt%)和1.3334至1.3515 Riu。此外,理论建模伴随着实验,并且在SPR相移的测量光谱衍生中的测量光谱衍生物的位置在596至626nm的范围内变化。从测量中,获得了3.83nm / wt%的浓度和7.3×10(-7)Riu的浓度和7.3×10(-7)Riu的检测限,确认了理论和实验之间的非常好的一致性。

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