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A Sensitivity-Enhanced Refractive Index Sensor Using a Single-Mode Thin-Core Fiber Incorporating an Abrupt Taper

机译:使用具有突变锥度的单模薄芯光纤的灵敏度增强的折射率传感器

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摘要

A sensitivity-enhanced fiber-optic refractive index (RI) sensor based on a tapered single-mode thin-core diameter fiber is proposed and experimentally demonstrated. The sensor head is formed by splicing a section of tapered thin-core diameter fiber (TCF) between two sections of single-mode fibers (SMFs). The cladding modes are excited at the first SMF-TCF interface, and then interfere with the core mode at the second interface, thus forming an inter-modal interferometer (IMI). An abrupt taper (tens of micrometers long) made by the electric-arc-heating method is utilized, and plays an important role in improving sensing sensitivity. The whole manufacture process only involves fiber splicing and tapering, and all the fabrication process can be achieved by a commercial fiber fusion splicer. Using glycerol and water mixture solution as an example, the experimental results show that the refractive index sensitivity is measured to be 0.591 nm for 1% change of surrounding RI. The proposed sensor structure features simple structure, low cost, easy fabrication, and high sensitivity.
机译:提出了一种基于锥形单模细芯直径光纤的灵敏度增强型光纤折射率传感器,并进行了实验验证。传感器头是通过在两段单模光纤(SMF)之间拼接一段锥形细芯直径光纤(TCF)而形成的。覆层模式在第一个SMF-TCF接口处被激发,然后在第二个接口处干扰核心模式,从而形成一个模态干涉仪(IMI)。利用通过电弧加热方法制成的陡锥(长数十微米),并且在提高感测灵敏度方面起着重要作用。整个制造过程仅涉及光纤熔接和渐细,而所有制造过程均可通过商用光纤熔接机实现。以甘油和水的混合溶液为例,实验结果表明,对于周围RI的1%变化,折射率灵敏度测得为0.591 nm。所提出的传感器结构具有结构简单,成本低,易于制造以及灵敏度高的特点。

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