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Enhancement of Refractive Index Sensitivity by Bending a Core-Offset In-Line Fiber Mach–Zehnder Interferometer

机译:通过弯曲纤芯偏移直插式光纤马赫曾德尔干涉仪来提高折射率灵敏度

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We proposed a bent core-offset in-line fiber Mach-Zehnder interferometer for refractive index (RI) sensing. It was fabricated by the splicing method and consists of a standard single-mode fiber sandwiched between two core-offset joints, with a core-offset distance of about 6 mu m. The RI sensing performance of this so-obtained interferometer was evaluated and compared with that of straight ones. Straight interferometers exhibited a relatively low sensitivity (15326 nm/RIU), inadequate for RI measurements. However, this sensitivity was greatly improved by simply bending them into U-shaped probes. The RI sensitivity was enhanced as the curvature radius was reduced; the highest sensitivity (358.039 nm/RIU) was achieved with an interferometer having a length of 30 mm and a bend radius of 16.42 mm. Hence, the experimentally confirmed high sensitivity of our proposed sensor, combined with its simple and compact structure, easy fabrication, and low cost, makes it a promising candidate for RI sensing applications.
机译:我们提出了一种弯曲的芯偏移直插式光纤马赫曾德尔干涉仪,用于折射率(RI)感测。它是通过拼接方法制造的,由夹在两个纤芯偏置接头之间的标准单模光纤组成,纤芯偏置距离约为6微米。评估了这种干涉仪的RI感测性能,并将其与直式干涉仪进行了比较。直线型干涉仪显示出相对较低的灵敏度(15326 nm / RIU),不足以进行RI测量。但是,只需将其弯曲成U形探头,即可大大提高灵敏度。 RI灵敏度随着曲率半径的减小而增强;使用长度为30 mm且弯曲半径为16.42 mm的干涉仪可获得最高灵敏度(358.039 nm / RIU)。因此,实验证明了我们提出的传感器的高灵敏度,再加上其简单紧凑的结构,易于制造和低成本,使其成为RI传感应用的有希望的候选者。

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