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Strong Coupling between Tamm and Surface Plasmons for Advanced Optical Bio-Sensing

机译:TAMM和表面等离子体之间的强耦合,用于高级光学生物传感

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The total internal reflection ellipsometry method was used to analyse the angular spectra of the hybrid Tamm and surface plasmon modes and to compare their results with those obtained using the conventional single SPR method. As such type of measurement is quite common in commercial SPR devices, more detailed attention was paid to the analysis of the p-polarization reflection intensity dependence. The conducted study showed that the presence of strong coupling in the hybrid plasmonic modes increases the sensitivity of the plasmonic-based sensors due to the reduced losses in the metal layer. The experimental results and analysis of the optical responses of three different plasmonic-based samples indicated that the optimized Tamm plasmons ΔRp(TP) and optimized surface plasmons ΔRp(SP) samples produce a response that is about five and six times greater than the conventional surface plasmon resonance ΔRp(SPR) in angular spectra. The sensitivity of the refractive index unit of the spectroscopic measurements for the optimized Tamm plasmon samples was 1.5 times higher than for conventional SPR, while for wavelength scanning, the SPR overcame the optimized TP by 1.5 times.
机译:用于分析混合TAMM和表面等离子体模式的角谱的总内反射椭圆形方法,并将其结果与使用传统的单簧法得到的结果进行比较。由于这种类型的测量在商业SCR设备中非常常见,因此对P偏振反射强度依赖性的分析进行了更详细的注意。进行的研究表明,由于金属层中的损耗降低,混合等离子体模式中强耦合的存在增加了基于等离子体基传感器的灵敏度。三种不同等离子体基样品的光学响应的​​实验结果和分析表明,优化的TAMM等ΔRP(TP)和优化的表面等离子体ΔRP(SP)样品产生的响应大约比传统表面大约五倍和六倍角谱中的等离子体共振ΔRP(SPR)。优化的Tamm等离子样本的光谱测量的折射率单元的灵敏度比传统SPR高1.5倍,而对于波长扫描,SPR将优化的TP克服1.5倍。

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