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Effect of Optical Delay on the Suppression of the Power Transient Excursion in a Combined Gain-Controlled Erbium-Doped Fiber Amplifier

机译:光学延迟对组合增益控制掺-光纤放大器中功率瞬态漂移的抑制作用

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摘要

This report describes the effect of optical delay on the suppression of the power transient excursion in a combined gain-controlled erbium-doped fiber amplifier with an internal optical feedback loop (OFL). A simple homogeneous model showed that the optical delay caused a phase change in the oscillation of the surviving and laser channels, which resulted in a reduction of the overall power transient excursion. In addition to the reduction, a real system with a 1528.7-nm OFL shifted the oscillation upward or downward according to channel removal or addition, whereas another one with a 1560.9-nm OFL did not. This different transient behavior reflected a control-wavelength dependence on optical automatic gain control, where spectral-hole burning dominated over relaxation oscillation for 1528.7 nm, and vice versa for 1560.9 nm.
机译:该报告描述了在具有内部光反馈环路(OFL)的组合增益控制掺-光纤放大器中,光延迟对抑制功率瞬态偏移的影响。一个简单的均质模型表明,光学延迟会导致幸存通道和激光通道的振荡发生相位变化,从而降低了总体功率瞬态偏移。除了减少之外,具有1528.7 nm OFL的实际系统会根据通道移除或添加而使振荡向上或向下移动,而另一个具有1560.9 nm OFL的系统则没有。这种不同的瞬态行为反映了控制波长对光学自动增益控制的依赖性,其中光谱孔燃烧在1528.7 nm的弛豫振荡中占主导,反之在1560.9 nm的弛豫振荡中占主导。

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