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Reproducibility of splicer-based long-period fiber gratings for gain equalization

机译:基于拼接器的长周期光纤光栅的增益均衡性

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摘要

We fabricated long-period fiber gratings (LPFGs) using electric arc discharges. We observed that the fiber becomes slightly tapered due to longitudinal tension during the arc: this effect depends on the arc current and time length. We experimentally investigated how these characteristics can influence grating's performances, especially in view of employing the LPFG as gain equalizer for an erbium-doped optical amplifier. As expected, we found that the spectral response of the grating depends on the period A, the intensity of the perturbation, the grating length and the type of mode-coupling induced. Since this last parameter cannot be estimated directly from the transmission spectra, we propose a method to determine the mode-coupling occurring in the device and to assess the index modulation induced by the electric arcs. This method combines both experimental and simulated data, and can be used to characterize LPFGs made-up by any method.
机译:我们使用电弧放电制造了长周期光纤光栅(LPFG)。我们观察到,由于电弧过程中的纵向张力,光纤会逐渐变细:这种影响取决于电弧电流和时间长度。我们通过实验研究了这些特性如何影响光栅的性能,特别是在将LPFG用作掺do光放大器的增益均衡器的情况下。不出所料,我们发现光栅的光谱响应取决于周期A,扰动强度,光栅长度和感应的模式耦合类型。由于不能直接从透射光谱中估算出最后一个参数,因此我们提出了一种确定设备中发生的模式耦合并评估由电弧引起的折射率调制的方法。该方法结合了实验数据和模拟数据,可用于表征通过任何方法组成的LPFG。

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