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In-line Mach-Zehnder interferometric refractive index sensor based on concatenating two single-mode fiber half-tapers

机译:基于串联两个单模光纤半锥的在线马赫曾德尔干涉式折射率传感器

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An in-line Mach-Zehnder interferometric refractive index (RI) sensor is demonstrated by concatenating two single-mode fiber (SMF) half-tapers separated by one section of SMF. The cladding modes excited at the first half-taper interferes with the core mode at the second half-taper to generate the interference fringe. Theoretical and experimental results consistently show that the interference fringe shifts toward shorter wavelengths with the external RI sensitivity of 102.3 nm/RIU in the monitoring RI range from 1.333 to 1.413. In addition, the sensing device may endure the axial stress more than 3200 με with the strain sensitivity of 1.72 pm/με.
机译:通过串联两个由SMF的一部分分开的单模光纤(SMF)半锥形连接,可以演示嵌入式Mach-Zehnder干涉式折射率(RI)传感器。在第一个半锥形处激发的包层模式与在第二个半锥形处激发的芯模式产生干涉条纹。理论和实验结果一致表明,在1.33至1.413的监测RI范围内,干涉条纹向较短波长移动,外部RI灵敏度为102.3 nm / RIU。另外,感测装置可以以1.72 pm /με的应变灵敏度承受超过3200με的轴向应力。

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