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Electric-arc-induced long period fiber gratings for gain equalization of erbium-doped optical amplifiers

机译:电弧诱导的长周期光纤光栅,用于增益均衡光放大器的增益均衡

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Long-Period Fiber Gratings (LPFGs) were fabricated in single mode fibers (SMF28) by using electric arc discharges produced from a commercial fiber splicer. In our experimental set-up, we noticed that, during each arc, the fiber becomes slightly tapered due to the presence of the longitudinal tension: the quantitative effect depends on the time length and arc power. We have experimentally studied how the LPFG performance may be affected by the arc discharge process, and we found that, with periods typically of few hundreds microns, the spectral response of the grating depends on the period &Lgr;, the intensity of the perturbation, the grating length and the type of mode-coupling induced. The reproducibility of the grating is very important, in particular for applications like a gain equalizer for an erbium-doped optical amplifier. In the modelling of the process, the mode coupling induced by the LPFG cannot be estimated directly from the transmission spectra; therefore, we propose a method to determine the mode-coupling occurring in the fiber and to assess the index modulation induced by the electric arcs. This method combines experimental and simulated data, and its use is not limited to the case of electric-arc-induced LPFGs.
机译:通过使用由商业纤维剪定器产生的电弧放电,在单模纤维(SMF28)中制造长期光纤光栅(LPFG)。在我们的实验设置中,我们注意到,在每个电弧期间,由于存在纵向张力,光纤变得略微逐渐变细:定量效果取决于时间长度和电弧电源。我们已经通过实验研究了LPFG的性能如何受电弧放电过程的影响,我们发现,随着时间的周期,通常几百微米,光栅的光谱响应取决于周期&lgr;,扰动的强度。光栅长度和诱导的模式耦合类型。光栅的再现性非常重要,特别是对于铒掺杂光放大器的增益均衡器等应用。在该过程的建模中,LPFG诱导的模式耦合不能直接从透射光谱估计;因此,我们提出了一种方法来确定在光纤中发生的模式耦合,并评估电弧引起的索引调制。该方法结合了实验和模拟数据,其使用不限于电弧诱导的LPFG的情况。

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