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Photonic Crystal Fiber Mach-Zehnder Interferometer for Refractive Index Sensing

机译:用于折射率传感的光子晶体光纤马赫曾德尔干涉仪

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摘要

We report on a refractive index sensor using a photonic crystal fiber (PCF) interferometer which was realized by fusion splicing a short section of PCF (Blaze Photonics, LMA-10) between two standard single mode fibers. The fully collapsed air holes of the PCF at the spice regions allow the coupling of PCF core and cladding modes that makes a Mach-Zehnder interferometer. The transmission spectrum exhibits sinusoidal interference pattern which shifts differently when the cladding/core surface of the PCF is immersed with different RI of the surrounding medium. Experimental results using wavelength-shift interrogation for sensing different concentrations of sucrose solution show that a resolution of 1.62 × 10−4–8.88 × 10−4 RIU or 1.02 × 10−4–9.04 × 10−4 RIU (sensing length for 3.50 or 5.00 cm, respectively) was achieved for refractive indices in the range of 1.333 to 1.422, suggesting that the PCF interferometer are attractive for chemical, biological, biochemical sensing with aqueous solutions, as well as for civil engineering and environmental monitoring applications.
机译:我们报道了一种使用光子晶体光纤(PCF)干涉仪的折射率传感器,该传感器是通过将PCF的短截面(Blaze Photonics,LMA-10)熔接在两个标准单模光纤之间来实现的。 PCF在香料区域完全塌陷的气孔允许PCF纤芯和包层模式耦合,从而构成了Mach-Zehnder干涉仪。当PCF的包层/纤芯表面浸没在周围介质的不同RI中时,透射光谱呈现出正弦干涉图样,该图样会发生不同的偏移。使用波长移位询问法检测不同浓度的蔗糖溶液的实验结果表明,分辨率为1.62×10 -4 –8.88×10 -4 RIU或1.02×10 < sup> −4 –9.04×10 −4 RIU(分别为3.50或5.00 cm的感应长度)在1.333至1.422的折射率范围内达到,这表明PCF干涉仪对于使用水溶液进行化学,生物,生化传感以及土木工程和环境监测应用具有吸引力。

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