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Thermo-optical modeling of an intrinsically heated polymer fiber Bragg grating

机译:固有加热的聚合物纤维布拉格光栅的热光建模

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摘要

A fully concatenated thermo-optical model is presented to predict the thermo-optical behavior of an intrinsically heated polymer fiber Bragg grating (PFBG). Coupled-mode theory and heat-conduction theory are first used to determine the axial heat generation and temperature distribution of a PFBG and the transfer matrix method (TMM) is subsequently employed to predict its thermo-optical behavior. The validity of the TMM is corroborated experimentally using an externally heated glass fiber Bragg grating (FBG) with an axially decaying temperature field. The verified model is utilized to investigate the thermo-optical behavior of a poly(methyl methacrylate) (PMMA) FBG. The counteracting thermally driven changes in the refractive index and the grating pitch, respectively, are found to be of comparable magnitude and to result in very modest net shifts in the Bragg wavelengths despite the considerable temperature changes induced by the absorption of the incident light. (C) 2007 Optical Society of America.
机译:提出了一个完全串联的热光模型,以预测固有加热的聚合物纤维布拉格光栅(PFBG)的热光性能。首先使用耦合模式理论和导热理论来确定PFBG的轴向热量生成和温度分布,然后采用传递矩阵法(TMM)来预测其热光行为。使用外部加热的玻璃纤维布拉格光栅(FBG)具有轴向衰减的温度场,通过实验证实了TMM的有效性。验证的模型用于研究聚甲基丙烯酸甲酯(PMMA)FBG的热光学性能。尽管抵消了入射光吸收引起的相当大的温度变化,但抵消的热驱动折射率和光栅间距的变化却具有可比较的幅度,并导致布拉格波长的波动非常小。 (C)2007年美国眼镜学会。

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