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Cladding-Mode Resonance in Polarization-Maintaining Photonic-Crystal-Fiber-Based Sagnac Interferometer and Its Application for Fiber Sensor

机译:基于偏振光子-晶体光纤的萨格纳克干涉仪中的包层共振及其在光纤传感器中的应用

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摘要

A novel cladding-mode-resonance-based polarization-maintaining photonic-crystal-fiber Sagnac interferometer (PMPCF-SI) and its application for fiber sensor are demonstrated. By introducing a mode field diameter mismatch at a splicing joint of an inbuilt single-mode fiber (SMF)-PMPCF-SMF structure connected in an SI, an intermodal interference is constructed by the excited cladding modes and the polarization modes of the PMPCF. With such a PMPCF-SI, simultaneous strain and temperature measurements are demonstrated. The SI behaves as a sensor and a filter simultaneously. By measuring the wavelength variation and transmissivity difference between two almost symmetrical resonance peaks in the spectral response of the SI, simultaneous strain and temperature measurements are achieved.
机译:介绍了一种新型的基于包层共振的保偏光子晶体光纤Sagnac干涉仪(PMPCF-SI)及其在光纤传感器中的应用。通过在连接到SI的内置单模光纤(SMF)-PMPCF-SMF结构的拼接接头处引入模场直径失配,可以通过PMPCF的激发包层模式和偏振模来构建模态干扰。使用这种PMPCF-SI,可以同时进行应变和温度测量。 SI同时充当传感器和过滤器。通过测量SI光谱响应中两个几乎对称的共振峰之间的波长变化和透射率差异,可以同时进行应变和温度测量。

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