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Temperature Stability and Spectral Tuning of Long Period Fiber Gratings Fabricated by Femtosecond Laser Direct Writing

机译:由飞秒激光直接写作制造的长期光纤光栅的温度稳定性和光谱调谐

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摘要

Long period fiber gratings (LPFGs) were fabricated in a standard single mode fiber (SMF-28e) through femtosecond (fs) laser direct writing. LPFGs with longer and shorter periods were fabricated, which allows coupling from the fundamental core mode to lower and higher order asymmetric cladding modes (LP and LP , respectively). For the grating periods of 182.7 and 192.5 µm, it was verified that the LP mode exhibits a TAP at approximately 1380 and 1448 nm in air and water, respectively. Characterization of the LPFGs subjected to high-temperature thermal treatment was accomplished. Fine-tuning of the resonance band’s position and thermal stability up to 600 °C was shown. The temperature sensitivity was characterized for the gratings with different periods and for different temperature ranges. A maximum sensitivity of −180.73, and 179.29 pm/°C was obtained for the two resonances of the 182.7 µm TAP LPFG, in the range between 250 and 600 °C.
机译:长期光纤光栅(LPFG)通过飞秒(FS)激光直接写入标准单模光纤(SMF-28E)制造。制造了较长且较短的时段的LPFG,其允许从基本核心模式耦合到更低阶和高阶的不对称包层模式(LP和LP)。对于182.7和192.5μm的光栅周期,验证了LP模式分别在空气和水中呈现在约1380和1448nm处。完成了对高温热处理进行的LPFG的表征。显示谐振带的微调和高达600°C的热稳定性。温度灵敏度的特征在于具有不同时期的光栅和不同的温度范围。对于182.7μmPAPFG的两个共振,可以获得最大灵敏度-180.73和179.29 pM /℃。250至600℃的范围。

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