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Design of highly sensitive surface plasmon resonance sensors using planar metallic films closely coupled to nanogratings

机译:使用与纳米光栅紧密耦合的平面金属膜设计高灵敏度表面等离子体激元共振传感器

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摘要

We investigate the sensitivity enhancement of surface plasmon resonance (SPR) sensors using planar metallic films closely coupled to nanogratings. The strong coupling between localized surface plasmon resonances (LSPRs) presenting in metallic nanostructures and surface plasmon polaritons (SPPs) propagating at the metallic film surface leads to changes of resonance reflection properties, resulting in enhanced sensitivity of SPR sensors. The effects of thickness of the metallic films, grating period and metal materials on the refractive index sensitivity of the device are investigated. The refractive index sensitivity of nanograting-based SPR sensors is predicted to be about 543 nm/RIU (refractive index unit) using optimized structure parameters. Our study on SPR sensors using planar metallic films closely coupled to nanogratings demonstrates the potential for significant improvement in refractive index sensitivity.
机译:我们调查紧密耦合到纳米光栅的平面金属膜表面等离子体共振(SPR)传感器的灵敏度提高。金属纳米结构中出现的局部表面等离子体激元共振(LSPR)与在金属膜表面传播的表面等离子体激元极化子(SPP)之间的强耦合导致共振反射特性发生变化,从而导致SPR传感器的灵敏度提高。研究了金属膜的厚度,光栅周期和金属材料对器件折射率灵敏度的影响。使用优化的结构参数,基于纳米光栅的SPR传感器的折射率灵敏度预计约为543 nm / RIU(折射率单位)。我们对使用与纳米光栅紧密耦合的平面金属膜的SPR传感器的研究表明,可以显着提高折射率灵敏度。

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