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Microfluidic refractive index sensor based on an all-silica in-line Fabry–Perot interferometer fabricated with microstructured fibers

机译:基于微流控折射率传感器全硅在线法布里 - 珀罗干涉仪用微结构纤维制造

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摘要

We report a microfluidic fiber-optic refractive index (RI) sensor based on an in-line Fabry-Perot (FP) interferometer, which is formed by a silica tube sandwiched by two microstructured fibers (MFs). The sensor reported here can be fabricated at low cost, possess a robust structure, and has microfluidic capability. The micro-sized holes in the MFs naturally function as microfluidic channels through which liquid samples can be efficiently and conveniently delivered into and out of the FP cavity by a pressure/vacuum pump system for high-performance RI measurement. Due to the microfluidic capability enabled by the MFs, only sub microliter sample is required. We also experimentally study and demonstrate the superior performances of the sensor in terms of high RI sensitivity, good measurement repeatability, and low temperature cross-sensitivity.
机译:我们报告了一种基于在线法布里 - 珀罗(FP)干涉仪的微流体光纤折射率(RI)传感器,其由夹在两个微结构纤维(MFS)夹在中间的二氧化硅管形成。这里报道的传感器可以以低成本制造,具有鲁棒结构,具有微流体能力。 MFS中的微尺寸孔自然用作微流体通道,通过压力/真空泵系统可以有效地递送进出FP腔的液体样品,以进行高性能RI测量。由于MFS使能的微流体能力,仅需要亚微升样本。我们还通过高RI敏感性,良好的测量可重复性和低温交叉敏感性来通过实验研究和展示传感器的优异性能。

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