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In-fiber polarimeters based on hollow-core photonic bandgap fibers

机译:基于空心光子带隙光纤的光纤内偏振计

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摘要

In-fiber polarimeters or polarization mode interferometers (PMIs) are fabricated by cascading two CO2-laser-induced in-fiber polarizers along a piece of hollow-core photonic bandgap fiber. Since the two interfering beams are the orthogonal polarizations of the fundamental mode, which are tightly confined to the core and have much lower loss than higher order modes, the PMIs can have either short (e.g., a few millimeters) or long (tens of meters or longer) device length without significantly changing the fringe contrast and hence provide design flexibility for applications required different device lengths. As examples of potential applications, the PMIs have been experimentally demonstrated for wavelength-dependent group birefringence measurement; and for strain, temperature and torsion sensors. The PMI sensors are quite sensitive to strain but relatively insensitive to temperature as compared with fiber Bragg grating sensors. The PMIs function as good directional torsion sensors that can determine the rate and direction of twist at the same time.
机译:光纤内偏振计或偏振模干涉仪(PMI)是通过沿着一根空心光子带隙光纤级联两个CO2激光诱导的光纤内偏振器而制成的。由于两个干涉光束是基本模式的正交偏振,它们严格限制在纤芯内,并且损耗比高阶模式低得多,因此PMI可以短(例如几毫米)或长(几十米)或更长的器件长度,而不会显着改变条纹对比度,从而为需要不同器件长度的应用提供了设计灵活性。作为潜在应用的实例,已通过实验证明了PMI可用于波长相关的组双折射测量;以及用于应变,温度和扭转传感器。与光纤布拉格光栅传感器相比,PMI传感器对应变非常敏感,但对温度相对不敏感。 PMI具有良好的方向性扭转传感器的功能,可以同时确定扭转的速度和方向。

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