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Thin layer surface resonators: a new spectroscopic tool for probing dielectric film structure and properties

机译:薄层表面谐振器:一种用于探测介电膜结构和性能的新型光谱工具

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Theoretical aspects of surface resonances are discussed, to-gether with the manufacture of silver based thiun film resonators and their application to studying both structural and mass distribution characteristics of biological membranes. The discussion focuses on a recently developed variant of surface plamson resonance (SPR) spectroscopy that involves copling of plasmon resonances in a thin metal film and waveguide modes in a dielectric overcoating. This new technique, referred to as coupled plasmon-waveguide resonance (CPWR) spectrocopy, combines a gratly enhanced sensitivity (due to increased electromagnetic field intensities at the dielectric surface) and spectral resolution (due to de-creased resonance line widths), with the ability to measure directly anisotropies in refractive index and optical absorption coeffieicnt in a dielectric film adsorbed onto the surface of the overcoatiing. The technique has been applied to the study of hipid film membranes and mebrane protins, important in biological processes.
机译:讨论了表面谐振的理论方面,采用了制造银的Thiun膜谐振器及其应用,以研究生物膜的结构和质量分布特征。讨论侧重于最近开发的表面PLAMSON共振(SPR)光谱的变体,其涉及在介电外涂层中的薄金属膜和波导模式中的等离子体共振的折叠。该新技术称为耦合等离子体 - 波导共振(CPWR)光谱,结合了耐沟增强的灵敏度(由于介电表面的增加的电磁场强度)和光谱分辨率(由于衰减折叠谐振线宽),具有能够在吸附在外涂层表面上的介电膜中测量折射率和光学吸收系数的直接各向异性。该技术已应用于霍普膜膜和梅布兰蛋白的研究,在生物过程中重要。

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