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The Influence of Structural Parameters on the Surface Plasmon Resonance Sensor Based on a Side-Polished Macrobending Plastic Optical Fiber

机译:基于副抛光宏观塑料光纤的结构参数对表面等离子体谐振传感器的影响

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摘要

In this paper the influences of the structured parameters, namely, metal layer thickness, polished depth, macrobending radius and polished angle on the refractive index sensing performances for the side-polished macrobending plastic optical fibers (POFs) based surface plasmon resonance (SPR) sensors were investigated. A simple and controllable rotary grinding technique was introduced to fabricate the proposed sensor. The performances of sensitivity, resolution and full width at half maximum (FWHM) were evaluated. The results have demonstrated that the SPR sensor performances could be improved by changing the structural parameters, and the highest sensitivity obtained was 4793.1 nm/RIU when the external refractive index was 1.410. The proposed POFs based SPR sensors are easy fabrication, robust, and compact in size, which are useful for chemical and biological sensing.
机译:本文在折射率对侧抛光塑料光纤(POFS)表面等离子体共振(SPR)传感器的折射率传感性能上,结构化参数,即金属层厚度,抛光深度,致棱镜半径和抛光角度的影响被调查了。引入了简单可控的旋转研磨技术以制造所提出的传感器。评估了半最大(FWHM)的灵敏度,分辨率和全宽的性能。结果表明,通过改变结构参数可以提高SPR传感器性能,并且当外部折射率为1.410时,所获得的最高灵敏度为4793.1nm / Riu。所提出的基于POFS的SPOF传感器尺寸易于制造,鲁棒,紧凑,可用于化学和生物传感。

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