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Wavelength evolution of long-period fiber gratings in a water environment

机译:水环境下长周期光纤光栅的波长演化

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摘要

In a water environment, wavelength evolution behavior of long-period fiber gratings (LPFGs) written in H_2-loaded fibers after annealing is studied. The phenomena that wavelength shifts in the longer wavelength direction and then in the shorter wavelength direction is observed. A shift of the grating resonance peak (LP05) of as much as 2.5 nm is found. A water-mediated model that water molecules induce the second diffusion of the remaining H_2 in the fiber and a diffusion-reaction mechanism that water molecules penetrate into fiber internal structures are proposed and are combined to explain the wavelength evolution process. Both the calculated balance point time according to the model, and the qualitative analysis according to the mechanism, correspond well with the experimental results. This research indicates that wavelength variation has to be considered or prevented when H_2-loaded LPFGs are used in a water environment.
机译:在水环境中,研究了退火后写入H_2负载光纤中的长周期光纤光栅(LPFG)的波长演化行为。观察到波长在较长波长方向上然后在较短波长方向上移动的现象。发现光栅共振峰(LP05)的位移高达2.5 nm。提出了水分子诱导纤维中剩余H_2第二次扩散的水介导模型,并结合了水分子渗透到纤维内部结构中的扩散反应机理,以解释波长演化过程。根据模型计算的平衡点时间,以及根据机理进行的定性分析,均与实验结果吻合良好。这项研究表明,在水环境中使用H_2负载的LPFG时,必须考虑或防止波长变化。

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