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Temperature Insensitive All-Fiber Compact Polarization-Maintaining Photonic Crystal Fiber Based Interferometer and Its Applications in Fiber Sensors

机译:温度不敏感的全光纤紧凑型保偏光子晶体光纤干涉仪及其在光纤传感器中的应用

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A novel temperature insensitive all-fiber compact polarization-maintaining photonic crystal fiber (PMPCF) based interferometer was presented. The coupling between the PMPCF and single mode fiber (SMF) was investigated experimentally and analytically. With an all-fiber compact SMF-PMPCF-SMF structure, the cladding modes propagating in the PMPCF can be effectively excited by finely core-offsetting one splice between the PMPCF and SMF. With the increase of the core-offset, the interference depth of the interference pattern enlarges accordingly. Under a suitable core-offset, the PMPCF based interferometer with high interference depth can be obtained. Moreover, it is temperature insensitive due to its ultra-low thermal characteristics. We also demonstrated its applications in strain and refractive index measurement. The sensors have the advantages of small size, simple and compact all fiber structure, high sensitivity, and temperature insensitiveness.
机译:提出了一种新型的温度敏感型全光纤紧凑型保偏光子晶体光纤(PMPCF)干涉仪。通过实验和分析研究了PMPCF和单模光纤(SMF)之间的耦合。使用全光纤紧凑型SMF-PMPCF-SMF结构,可以通过在PMPCF和SMF之间精细地芯偏移一个接头,有效地激发在PMPCF中传播的包层模式。随着磁心偏移的增加,干涉图案的干涉深度相应地增大。在适当的磁心偏移下,可以获得具有高干涉深度的基于PMPCF的干涉仪。而且,由于其超低的热特性,它对温度不敏感。我们还展示了其在应变和折射率测量中的应用。该传感器的优点是体积小,所有纤维结构简单紧凑,灵敏度高和对温度不敏感。

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