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用飞秒激光制备的高度级联一阶蓝宝石光纤布拉格光栅。

Highly cascaded first-order sapphire optical fiber Bragg gratings fabricated by a femtosecond laser.

作者信息

Mumtaz Farhan, Tekle Hanok, Zhang Bohong, Smith Jeffrey D, O'Malley Ronald J, Huang Jie

出版信息

Opt Lett. 2023 Aug 15;48(16):4380-4383. doi: 10.1364/OL.495138.

DOI:10.1364/OL.495138
PMID:37582037
Abstract

This Letter reports an innovative technique for fabricating large-scale, highly cascaded first-order sapphire optical fiber Bragg gratings (FBGs) using a femtosecond laser-assisted point-by-point inscription method. For the first time, to the best of our knowledge, this study successfully demonstrates a distributed array of 10 FBGs within highly multimode sapphire crystal fiber, made possible by employing a high-power laser technique to generate larger reflectors with a Gaussian intensity profile. These first-order FBGs offer advantages such as enhanced reflectivity, shorter fabrication time, and simplified spectral characteristics, making them easier to interpret compared with high-order FBGs. The FBGs' resilience and effectiveness are analyzed by subjecting them to temperature tests, proving their capacity for accurate temperature monitoring up to 1500°C-a testament to their suitability for harsh environments. This novel approach broadens the scope for sensing and communication applications in sapphire fibers, particularly under challenging conditions. The novelty of our work lies in successfully overcoming the limitations of previous designs by integrating a cascade of 10 FBGs in sapphire fibers, thereby enhancing multiplexing capabilities, minimizing overlapping of FBG peaks, and ensuring reliable temperature monitoring in industries and applications with thermal gradients.

摘要

本信函报道了一种采用飞秒激光逐点写入法制造大规模、高度级联的一阶蓝宝石光纤布拉格光栅(FBG)的创新技术。据我们所知,本研究首次成功展示了在高多模蓝宝石晶体光纤内的10个FBG的分布式阵列,这是通过采用高功率激光技术生成具有高斯强度分布的更大反射器来实现的。这些一阶FBG具有反射率增强、制造时间缩短和光谱特性简化等优点,与高阶FBG相比,使其更易于解读。通过对FBG进行温度测试来分析其弹性和有效性,证明它们能够在高达1500°C的温度下进行精确温度监测,这证明了它们适用于恶劣环境。这种新颖的方法拓宽了蓝宝石光纤在传感和通信应用中的范围,特别是在具有挑战性的条件下。我们工作的新颖之处在于通过在蓝宝石光纤中集成10个FBG的级联成功克服了先前设计的局限性,从而增强了复用能力,最小化了FBG峰值的重叠,并确保了在具有热梯度的行业和应用中的可靠温度监测。

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