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Combined SPR and SERS: Otto and Kretschmann configurations

机译:结合了SPR和SERS:Otto和Kretschmann配置

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摘要

Combined surface enhanced Raman spectroscopy (SERS) and surface plasmon resonance (SPR) setup was proposed recently. The experimental setup requires a gold layer deposited on a glass substrate. However, due to the poor ability of sticking gold material on glass, a nanometric adhesion layer is used. In this paper we compare numerically both the SERS gain, and the SPR signal, for metallic and dielectric adhesion layers, for two substrates. We show that even if the dielectric materials can be considered as equivalent for the SPR signal, this is not the case for the SERS gain. In particular the dielectric adhesion layer reduces the sensitivity of the SERS gain to this parameter and therefore their use could be more suitable for the fabrication of the sensor. Moreover the higher the refractive index of substrate with regards to the adhesion layer is, the higher efficiency of setup is obtained, and therefore the Otto configuration seems to be more efficient than the Kretschmann one. Optimization of the thicknesses of the adhesion layer and of the gold layer can lead to a SERS gain greater than 10(3) without nanostructuring.
机译:最近提出了结合表面增强拉曼光谱(SERS)和表面等离子体共振(SPR)的装置。实验设置需要在玻璃基板上沉积金层。但是,由于将金材料粘附在玻璃上的能力较弱,因此使用了纳米粘附层。在本文中,我们在数值上比较了两个基板的金属和介电粘附层的SERS增益和SPR信号。我们表明,即使可以将电介质材料视为等效于SPR信号,但对于SERS增益而言并非如此。特别地,介电粘附层降低了SERS增益对该参数的敏感性,因此它们的使用可能更适合于传感器的制造。此外,衬底相对于粘附层的折射率越高,获得的设置效率越高,因此奥托结构似乎比克雷奇曼结构更有效。粘合层和金层厚度的优化可以导致SERS增益大于10(3),而无需进行纳米结构化。

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