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Formation and characterization of ultra-sensitive surface plasmon resonance sensor based upon a nano-scale corrugated multi-layered coated D-shaped optical fiber

机译:基于纳米波纹多层涂层D形光纤的超灵敏表面等离子体共振传感器的形成与表征

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摘要

We present experimental results on the performance of a series of coated, D-shaped optical fiber sensors that display high spectral sensitivities to external refractive index. Sensitivity to the chosen index regime and coupling of the fiber core mode to the surface plasmon resonance (SPR) is enhanced by using specific materials as part of a multi-layered coating. We present strong evidence that this effect is enhanced by post ultraviolet radiation of the lamellar coating that results in the formation of a nano-scale surface relief corrugation structure, which generates an index perturbation within the fiber core that in turn enhances the coupling. We have found reasonable agreement when we modeling the fiber device. It was found that the SPR devices operate in air with high coupling efficiency in excess of 40 dB with spectral sensitivities that outperform a typical long period grating, with one device yielding a wavelength spectral sensitivity of 12000 nm/RIU in the important aqueous index regime. The devices generate SPRs over a very large wavelength range, (visible to 2 mu m) by alternating the polarization state of the illuminating light.
机译:我们提出了一系列涂层的D形光纤传感器的性能的实验结果,这些传感器显示出对外部折射率的高光谱敏感性。通过使用特定的材料作为多层涂层的一部分,可以增强对所选折射率范围的敏感性以及将纤芯模式耦合到表面等离振子共振(SPR)。我们提供有力的证据表明,层状涂层的后紫外线辐射会增强这种效果,从而导致形成纳米级表面起伏波纹结构,从而在纤维芯内产生指数扰动,进而增强耦合。在对光纤设备进行建模时,我们已经找到合理的共识。结果发现,SPR器件在空气中以超过40 dB的高耦合效率工作,其光谱灵敏度优于典型的长周期光栅,其中一种器件在重要的水折射率范围内产生的波长光谱灵敏度为12000 nm / RIU。这些器件通过改变照明光的偏振态,在非常大的波长范围(2微米可见)内产生SPR。

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