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Bending-loss-resistant distributed Brillouin curvature sensor based on an erbium-doped few-mode fiber

Pengbai Xu, Jiahao Yuan, Zhensen Gao, Lei Shen, Ou Xu, Jianping Li, Yongkang Dong, Xinyong Dong, Jun Yang, Yuncai Wang, Yuwen Qin

Year
2021
Citations
19

Abstract

We developed a bending-loss-resistant distributed Brillouin curvature sensor based on an erbium-doped few-mode fiber (Er-FMF) and differential pulse-width pair Brillouin optical time-domain analysis. With Er ion amplification compensating for bending-induced optical loss, radii in the ∼0.3 to 2.02 cm range could be monitored correctly. The corresponding Brillouin frequency shift variations were in the range of 91.7 to 9 MHz, which agrees well with theoretical calculations. The sensitivity of the Er-FMF device increased inversely with the bending radius, with the optimal sensitivity of 292.7 MHz/cm obtained at a radius of 0.3 cm. To the best of our knowledge, this is the smallest radius of curvature detected and highest sensitivity reported to date, indicating potential applications in distributed sharp-bend sensing, such as intelligent robotics and structural health monitoring.

Keywords

Materials scienceOpticsCurvatureFiber optic sensorBrillouin zoneBrillouin scatteringOptical fiberBendingPhotonic-crystal fiberFiber laser

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