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Characterization of the response of fibre Bragg gratings fabricated in stress and geometrically induced high birefringence fibres to temperature and transverse load

机译:应力和几何诱导的高双折射光纤中制造的布拉格光纤光栅对温度和横向载荷的响应特性

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摘要

The transverse load and temperature sensitivities of fibre Bragg gratings (FBGs) fabricated in a range of commercially available stress and geometrically induced high birefringent (HiBi) fibres have been experimentally investigated. The wavelength reflected by the FBG in each polarization eigenmode was measured independently and simultaneously using a custom designed interrogation system. The highest transverse load sensitivity, of 0.23 +/- 0.02 nm/(N/mm), was obtained with HiBi FBGs fabricated in elliptically clad fibre. This was similar to25% higher than for any other HiBi fibre, which, coupled with the small diameter of the fibre, makes it a good candidate for an embedded or surface mounted strain sensor. The highest temperature sensitivity of 16.5 +/- 0.1 pm degreesC(-1), approximately 27% greater than any other fibre type, was obtained with the HiBi FBG fabricated in Panda fibre. HiBi FBG sensors fabricated in D-clad fibre were the only ones to exhibit identical temperature sensitivities for the slow and fast axes (11.5 +/- 0.1 pm degreesC(-1)).
机译:已经通过实验研究了在一定范围的商业应力和几何诱导的高双折射(HiBi)光纤中制造的布拉格光纤光栅(FBG)的横向载荷和温度敏感性。 FBG在每个偏振本征模式下反射的波长是使用定制设计的询问系统独立并同时测量的。用椭圆包层光纤制造的HiBi FBG可获得最高的横向载荷灵敏度,为0.23 +/- 0.02 nm /(N / mm)。这比任何其他HiBi光纤高出25%,再加上光纤的直径小,使其成为嵌入式或表面安装应变传感器的理想选择。用熊猫纤维制造的HiBi FBG可获得16.5 +/- 0.1 pm摄氏度(-1)的最高温度敏感性,比任何其他纤维类型高约27%。用D包层光纤制造的HiBi FBG传感器是唯一对慢轴和快轴(11.5 +/- 0.1 pm摄氏度(-1))表现出相同温度敏感性的传感器。

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