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基于精确空间变迹的飞秒激光光纤布拉格光栅。

Femtosecond laser inscribed fiber Bragg gratings based on precise spatial apodization.

出版信息

Opt Lett. 2023 Apr 1;48(7):1826-1829. doi: 10.1364/OL.485369.

Abstract

Plane-by-plane femtosecond laser fabricated apodized fiber Bragg gratings (FBG) are demonstrated for the first time, to the best of our knowledge. The method reported in this work provides a fully customizable and controlled inscription that can realize any desired apodized profile. By using this flexibility, we experimentally demonstrate four different apodization profiles (Gaussian, Hamming, New, Nuttall). These profiles were chosen to evaluate their performance with regard to the sidelobe suppression ratio (SLSR). Usually, a higher reflectivity of a grating fabricated with a femtosecond laser will result in a greater difficulty to achieve a controlled apodization profile due to the nature of the material modification. Therefore, the goal of this work is to fabricate high-reflectivity FBGs without sacrificing the SLSR and provide a direct comparison with apodized low-reflectivity FBGs. In our weak apodized FBGs, we also consider the background noise introduced during the femtosecond (fs)-laser inscription process which is fundamental when multiplexing FBGs within a narrow wavelength window.

摘要

首次展示了逐面飞秒激光制作的变迹光纤布拉格光栅(FBG)。据我们所知,这项工作中报告的方法提供了完全可定制和可控的写入,可以实现任何所需的变迹轮廓。通过利用这种灵活性,我们实验演示了四种不同的变迹轮廓(高斯、汉明、新、纳特)。选择这些轮廓来评估它们在旁瓣抑制比(SLSR)方面的性能。通常,由于材料改性的性质,使用飞秒激光制造的具有更高反射率的光栅会导致更难以实现受控的变迹轮廓。因此,这项工作的目标是在不牺牲 SLSR 的情况下制造高反射率的 FBG,并提供与变迹低反射率 FBG 的直接比较。在我们的弱变迹 FBG 中,我们还考虑了在飞秒(fs)激光写入过程中引入的背景噪声,这在窄波长窗口内多路复用 FBG 时是至关重要的。

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