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Surface plasmon resonance for air used for characterization of a metallic layer

机译:用于表征金属层的空气的表面等离振子共振

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The surface plasmon resonance (SPR) phenomenon in the Kretschmann configuration comprising an SF10 glass prism, a gold coated SF10 slide and an analytc is analyzed theoretically and experimentally in the spectral domain utilizing the ratio of the reflectances of p- and s-polarizcd waves. Using the dispersion characteristics of a metallic layer according to the known model, the analysis for one angle of incidence can give the results that agree well with the experimental data. However, if the different angles of incidence are considered, the agreement fails because the SPR response is very sensitive to the dispersion characteristics of a metallic layer. A simple technique to obtain the dispersion of the complex permittivity of a metallic layer is proposed. To minimize the effect of an analyte, the SPR phenomenon is considered for air when a desirable angle of incidence is adjusted. Using this technique, we measure parameters of the ratio of the reflectances of p- and s-polarized waves at different angles of incidence, that is, the minimum of the reflectance ratio and the resonance wavelength, to obtain the real and imaginary part of the complex permittivity. In the processing of every dip, we used the linear approximation of the real part and the quadratic approximation of the imaginary part of the complex permittivity of gold. The dispersion of the gold layer thus retrieved is compared with the model dispersion.
机译:在Kretschmann组态中的表面等离振子共振(SPR)现象包括一个SF10玻璃棱镜,一个镀金的SF10载玻片和一个分析物,利用p极化和s极化波的反射率在光谱域中进行了理论和实验分析。利用根据已知模型的金属层的色散特性,对一个入射角的分析可以得出与实验数据非常吻合的结果。但是,如果考虑不同的入射角,则协议会失败,因为SPR响应对金属层的色散特性非常敏感。提出了一种获得金属层的复介电常数的分散的简单技术。为了最小化分析物的影响,在调整了理想的入射角后,可以考虑空气的SPR现象。使用这种技术,我们测量在不同入射角下p偏振波和s偏振波的反射率之比的参数,即反射率和共振波长的最小值,以获得该部分的实部和虚部。复介电常数。在每次浸入的处理中,我们使用了金的复介电常数的实部的线性近似和虚部的二次近似。将如此获得的金层的色散与模型色散进行比较。

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