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Temperature-insensitive polarimetric vibration sensor based on HiBi microstructured optical fiber

机译:基于HiBi微结构光纤的温度不敏感极化振动传感器

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摘要

A new type of highly birefringent microstructured optical fiber has been tested for vibration measurements using a polarimetric technique. This technique takes advantage of the stress-induced phase shift between the two orthogonally polarized fiber eigenmodes. Comparison of three different fiber types shows that standard single-mode fibers do not provide stable measurements and that conventional polarization-maintaining fibers lead to a significant cross-sensitivity to temperature. However, for highly birefringent microstructured fibers specifically designed to provide a temperature-independent birefringence, our experiments show repeatable vibration measurements over a frequency range extending from 50 Hz to 1 kHz that are unaffected by temperature variations (up to 120℃).
机译:一种新型的高双折射微结构光纤已经通过偏振技术进行了振动测量。该技术利用了两个正交极化光纤本征模之间的应力诱导相移。对三种不同光纤类型的比较表明,标准的单模光纤无法提供稳定的测量结果,而传统的保偏光纤会导致对温度的明显交叉敏感性。但是,对于专门设计用于提供与温度无关的双折射的高双折射微结构纤维,我们的实验表明,在50 Hz至1 kHz的频率范围内,可重复的振动测量不受温度变化的影响(最高120℃)。

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