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Demarcation energy properties of regenerated fiber Bragg grating sensors in few-mode fibers

机译:几种模式纤维中再生光纤布拉格光栅传感器的分界能量性能

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In this work, thermal regeneration of fiber Bragg gratings inscribed in single-mode fibers, two-mode step index fibers and four-mode step index fibers is performed, where the single-mode fibers are used as the reference in the analysis. Specifically, we investigate the behavior of the thermal decay, recovery and eventually the permanent erasure of the gratings in the temperature range from 25 to 1300 degrees C. In the domain of demarcation energy, the thermal responses of the gratings can be normalized and they share similar characteristic curves despite the different temperature ramping rates used in the annealing treatment. It is found that the demarcation energy at the regeneration point and the attempt-to-escape frequency for each grating can be associated with the confinement factors of the fibers. The finding in this work has provided a new insight in the manufacture of regenerated fiber Bragg grating sensors by using few-mode fibers for multi-parameter sensing in high temperature environments.
机译:在这项工作中,在单模纤维中刻在单模纤维中的纤维布拉格光栅的热再生,两种模式步进纤维和四模步指数纤维进行,其中单模纤维用作分析中的参考。具体而言,我们研究了热衰减,回收率的行为,恢复,最终的温度范围内的可永久擦除在25至1300℃的温度范围内。在分界能量的领域中,光栅的热响应可以标准化并且它们共享尽管退火处理中使用的不同温度斜坡速率,但相似的特征曲线。发现每个光栅的再生点处的分界能量和对每个光栅的逃逸频率可以与纤维的限制因子相关联。本作品中的发现在高温环境中使用少量纤维来制造再生光纤布拉格光栅传感器的新洞察力。

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