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基于红外飞秒激光写入的非对称多模光纤布拉格光栅的多参数矢量弯曲和高温传感器。

Multiple parameter vector bending and high-temperature sensors based on asymmetric multimode fiber Bragg gratings inscribed by an infrared femtosecond laser.

作者信息

Yong Zhu, Zhan Chun, Lee Jon, Yin Shizhuo, Ruffin Paul

机构信息

Department of Electrical Engineering, The Pennsylvania State University, University Park, 16802, USA.

出版信息

Opt Lett. 2006 Jun 15;31(12):1794-6. doi: 10.1364/ol.31.001794.

Abstract

We present a multiple parameter integrated fiber sensor that can detect vector bending and ambient temperature simultaneously with a single asymmetric multimode fiber Bragg grating. Multimode Bragg gratings were fabricated in an all-silica core fiber by an infrared femtosecond laser, which showed multiple transmission dips in the transmission spectrum. Bending and ambient temperature fluctuations affect the shapes of multiple transmission dips in different ways. In bending, different dips have different sensitivities. On the other hand, temperature fluctuations tended to influence the dips uniformly across different dips. By analyzing the changing spectrum of dips, one can distinguish the changes induced by bending or temperature fluctuations. Furthermore, the high thermal stability of Bragg gratings inscribed by an infrared femtosecond laser can make this double parameter fiber sensor work in very harsh, high-temperature environments.

摘要

我们展示了一种多参数集成光纤传感器,它可以通过单个非对称多模光纤布拉格光栅同时检测矢量弯曲和环境温度。多模布拉格光栅是通过红外飞秒激光在全石英芯光纤中制造的,在传输光谱中显示出多个传输凹陷。弯曲和环境温度波动以不同方式影响多个传输凹陷的形状。在弯曲时,不同的凹陷具有不同的灵敏度。另一方面,温度波动倾向于对不同的凹陷均匀地产生影响。通过分析凹陷的变化光谱,可以区分由弯曲或温度波动引起的变化。此外,由红外飞秒激光写入的布拉格光栅的高热稳定性可以使这种双参数光纤传感器在非常恶劣的高温环境中工作。

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