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LiNbO3-based integrated optical network analyser for vectorial structure characterisation of fibre Bragg gratings

机译:基于LiNbO3的集成光网络分析仪,用于光纤布拉格光栅的矢量结构表征

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摘要

A LiNbO3-based integrated optical network analyser for polarisation-resolved longitudinal structure characterisation of optical fibre Bragg gratings is reported. The frequency-dependent complete reflectance Jones matrix is measured by interferometry and transformed into the time-domain impulse response. From the impulse response matrix the vectorial grating structure is determined by inverse scattering. Local dichroic reflectivity and birefringence were derived from this data. Knowledge of the vectorial nature of refractive index modulation depth and phase should allow an improvement of the ultraviolet (UV) illumination process and an effective correction of phase mask errors by longitudinally selective UV light post-processing, in order to fabricate chirped and/or apodised gratings which require the highest fabrication accuracy.
机译:报道了基于LiNbO3的集成光学网络分析仪,用于偏振分辨光纤布拉格光栅的纵向结构表征。依赖于频率的完全反射琼斯矩阵通过干涉仪进行测量,并转换为时域脉冲响应。根据脉冲响应矩阵,矢量光栅结构由逆散射确定。从该数据得出局部二向色性反射率和双折射。折射率调制深度和相位的矢量性质的知识应允许通过纵向选择性UV光后处理来改善紫外线(UV)照明工艺并有效校正相位掩模误差,以便制造chi和/或切趾要求最高制造精度的光栅。

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