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Characteristics of fiber Bragg grating temperature sensor at elevated temperatures

机译:高温纤维布拉格光栅温度传感器的特性

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This report is a part of ongoing research to develop high temperature optical sensors. We report our design and analyze of a hydrogen loaded fiber Bragg grating (FBG) temperature sensor range from room temperature to over 1000/spl deg/C. FBGs were fabricated in hydrogen loaded Ge-doped fibers using 248 nm excimer laser and their performance characteristics were tested. The gratings have shown stabilized at temperatures in excess of 700/spl deg/C and survived at temperatures in excess of 930/spl deg/C. These testing reveal the thermal reliability of tested gratings is related to the refractive index modulation inside the core of FBGs. In this research, we also found the high temperature resistance FBG could be formatted using conventional hydrogen loaded FBG, and stabilized in excess of 1000/spl deg/C. Our experimental results provide a better understanding of the formation to the hydrogen loaded FBGs and their decay behavior at elevated temperatures.
机译:本报告是开发高温光学传感器的持续研究的一部分。我们向氢负载光纤布拉格光栅(FBG)温度传感器的设计和分析从室温到超过1000 / SPL DEG / C的设计和分析。使用248nm准分子激光器在氢负载的GE掺杂纤维中制造FBGS,并测试其性能特性。在超过700 / SPL DEG / C的温度下显示出光栅并在超过930 / SPL DEG / C的温度下存活。这些测试揭示了测试光栅的热可靠性与FBG的核心内的折射率调制有关。在该研究中,我们还发现高温性FBG可以使用常规氢负载的FBG进行格式化,并且稳定超过1000 / SPL DEG / C.我们的实验结果提供了更好地理解氢气加载的FBG的形成及其在升高的温度下的衰减行为。

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