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Short and long range surface plasmon polariton waveguides for xylene sensing

机译:用于二甲苯传感的短程和长程表面等离子体激元极化波导

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Nanostructured plasmonic sensors are fabricated as sinusoidal surface plasmon metallic gratings (SPGs) embedded in a functional and porous hybrid sol-gel material, phenyl-bridged polysilsesquioxane (ph-PSQ). The metal layer is in contact with the environment through the sol-gel film, which works as sensitive element, changing its dielectric properties upon interaction with aromatic hydrocarbons. The combination of sensitivity, transparency and patternability offered by ph-PSQs gives the exceptional possibility to fabricate innovative optical sensors with straightforward processes. An embedded SPG is a thin metal slab waveguide, in which the surface plasmon polaritons (SPPs) at the two metal-dielectric interfaces superpose, resulting in two physical coupled modes: the long range SPPs (LRSPPs) and the short range SPPs (SRSPPs). An extended experimental and theoretical characterization of the optical properties of the plasmonic device was performed. The sensor performance was tested against the detection of 30 ppm xylene, monitoring the influence of the target gas on the SPPs modes. A reversible red-shift of the reflectance dips of both LRSPP and SRSPP resonances in the 1.9-2.9 nm range was observed and correlated to the interaction with the analyte. An enhancement in sensitivity associated with the rotation of the grating grooves with respect to the scattering plane (azimuthal rotation) was verified within the experimental errors. Collected data are compatible with theoretical predictions assuming a variation of the film refractive index of 0.011 ± 0.005.
机译:纳米结构的等离激元传感器被制造为正弦表面等离激元金属光栅(SPG),嵌入在功能性且多孔的混合溶胶-凝胶材料中,即苯基桥接的聚倍半硅氧烷(ph-PSQ)。金属层通过作为敏感元素的溶胶-凝胶膜与环境接触,并在与芳烃相互作用时改变其介电性能。 ph-PSQ所提供的灵敏度,透明度和可图案化能力的结合,为制造具有简单工艺的创新光学传感器提供了极大的可能性。嵌入式SPG是薄金属平板波导,其中两个金属-电介质界面处的表面等离激元极化子(SPP)重叠,从而产生两种物理耦合模式:长距离SPP(LRSPP)和短距离SPP(SRSPP) 。对等离激元器件的光学特性进行了扩展的实验和理论表征。针对30 ppm二甲苯的检测测试了传感器性能,监测了目标气体对SPPs模式的影响。观察到在1.9-2.9 nm范围内,LRSPP和SRSPP共振的反射率下降具有可逆的红移,并与与分析物的相互作用相关。在实验误差范围内,与光栅凹槽相对于散射平面的旋转(方位角旋转)相关的灵敏度得到了提高。假设膜折射率的变化为0.011±0.005,则收集的数据与理论预测兼容。

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