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Phase-shifted Bragg grating inscription in PMMA microstructured POF using 248 nm UV radiation

机译:使用248 nm UV辐射的PMMA微结构POF中的相移布拉格光栅题词

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摘要

In this work we experimentally validate and characterize the first phase-shifted polymer optical fiber Bragg gratings (PS-POFBGs) produced using a single pulse from a 248 nm krypton fluoride laser. A single-mode poly (methyl methacrylate) optical fiber with a core doped with benzyl dimethyl ketal for photosensitivity improvement was used. A uniform phase mask customized for 850 nm grating inscription was used to inscribe these Bragg structures. The phase shift defect was created directly during the grating inscription process by placing a narrow blocking aperture in the center of the UV beam. The produced high-quality Bragg grating structures, presenting a double dips, reject 16.3 dB (97.6% reflectivity) and 13.2 dB (95.2% reflectivity) of the transmitted power, being therefore appropriate for sensing or other photonic applications. Its transmission spectrum possesses two sharp transmission notches, allowing a significant increase in measurement resolution compared to direct interrogation of a single grating. The reflection and transmission spectra when multiple phase shifts are introduced in the FBG structure are also shown. The PS-POFBG's strain, temperature, pressure, and humidity characteristics have been experimentally analyzed in detail to assess their potential usage as sensors.
机译:在这项工作中,我们通过实验验证并表征了使用来自248 nm氟化rypto激光的单个脉冲产生的第一相移聚合物光纤布拉格光栅(PS-POFBG)。为了提高光敏性,使用了具有掺杂有苄基二甲基缩酮的芯的单模聚(甲基丙烯酸甲酯)光纤。使用为850 nm光栅刻写定制的均匀相位掩模来刻写这些布拉格结构。通过在紫外光束的中心放置一个狭窄的阻挡孔,可以在光栅刻印过程中直接产生相移缺陷。产生的高质量布拉格光栅结构呈现出双倾角,可抑制16.3 dB(97.6%反射率)和13.2 dB(95.2%反射率)的发射功率,因此适用于传感或其他光子应用。它的透射光谱具有两个清晰的透射切口,与直接询问单个光栅相比,可以显着提高测量分辨率。还显示了在FBG结构中引入多个相移时的反射和透射光谱。 PS-POFBG的应变,温度,压力和湿度特性已通过实验进行了详细分析,以评估其作为传感器的潜在用途。

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