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Fiber-optic refractive index sensor based on surface plasmon resonance

机译:基于表面等离子体共振的光纤折射率传感器

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A fiber-optic refractive index sensor based on surface plasmon resonance (SPR) in a thin metal film deposited on an unclad core of a multimode fiber is presented. The sensing element of the SPR fiber-optic sensor is a bare core of a step-index optical fiber made of fused silica with a deposited gold film. First, a model of the SPR fiber-optic sensor based on the theory of attenuated total internal reflection is presented. The analysis is carried out in the frame of optics of multilayered media. The sensing scheme uses a wavelength interrogation method and the calculations are performed over a broad spectral range. Second, in a practical realization of the sensor with a double-sided sputtered gold film, a reflection-based sensing scheme to measure the refractive indices of liquids is considered. The refractive index of a liquid is sensed by measuring the position of the dip in the reflected spectral intensity distribution. As an example, the aqueous solutions of ethanol with refractive indices in a range from 1.333 to 1.364 are measured.
机译:提出了一种基于表面等离子体共振(SPR)的光纤折射率传感器,该薄膜沉积在多模光纤的未包覆纤芯上的金属薄膜中。 SPR光纤传感器的传感元件是由熔融石英和沉积金膜制成的阶跃折射率光纤的裸芯。首先,提出了基于衰减全内反射理论的SPR光纤传感器模型。分析是在多层介质的光学框架内进行的。传感方案使用波长询问方法,并且计算是在较宽的光谱范围内进行的。其次,在具有双面溅射金膜的传感器的实际实现中,考虑了基于反射的感测方案来测量液体的折射率。通过测量反射光谱强度分布中的倾角位置,可以检测液体的折射率。例如,测量折射率在1.333至1.364范围内的乙醇水溶液。

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