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In-Fiber Mach-Zehnder Interferometer Based on Three-Core Fiber for Measurement of Directional Bending

机译:基于三芯光纤的光纤马赫曾德尔干涉仪用于定向弯曲的测量

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A highly sensitive directional bending sensor based on a three-core fiber (TCF) Mach-Zehnder interferometer (MZI) is presented in this study. This MZI-based bending sensor was fabricated by fusion-splicing a section of TCF between two single-mode fibers (SMF) with core-offset. Due to the location of the core in the TCF, a bend applied to the TCF-based MZI led to an elongation or shortening of the core, which makes the sensor suitable for directional bending measurement. To analyze the bending characteristics, two types of TCF-based sensors, with the fusion-spliced core located at different positions between the SMFs, were investigated. A swept source was employed in the measurement technique. The experimental results showed that, for the two types of sensors in this setup, the bending sensitivities of the two sensors were 15.36 nm/m ?1 and 3.11 nm/m ?1 at the bending direction of 0°, and ?20.48 nm/m ?1 and ?5.29 nm/m ?1 at the bending direction of 180°. The temperature sensitivities of the two sensors were 0.043 nm/°C and 0.041 nm/°C, respectively. The proposed sensors are compact, versatile, inexpensive to fabricate, and are expected to have potential applications in biomedical sensing.
机译:本研究提出了一种基于三芯光纤(TCF)马赫曾德尔干涉仪(MZI)的高灵敏度定向弯曲传感器。这种基于MZI的弯曲传感器是通过将TCF的一部分在纤芯偏移的两个单模光纤(SMF)之间熔融拼接而制成的。由于核心在TCF中的位置,施加到基于TCF的MZI的弯曲会导致核心的伸长或缩短,这使得该传感器适用于定向弯曲测量。为了分析弯曲特性,研究了两种基于TCF的传感器,其熔接芯位于SMF之间的不同位置。测量技术中采用了扫频光源。实验结果表明,对于这种设置中的两种类型的传感器,两个传感器在0°弯曲方向的弯曲灵敏度分别为15.36 nm / m?1和3.11 nm / m?1,以及?20.48 nm / m。在180°的弯曲方向上的m≤1和≤5.29nm/m≤1。两个传感器的温度灵敏度分别为0.043 nm /°C和0.041 nm /°C。所提出的传感器是紧凑的,通用的,制造便宜的,并且有望在生物医学传感中具有潜在的应用。

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