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Numerical study on the minimum modulation depth of a saturable absorber for stable fiber laser mode locking

机译:稳定光纤激光器锁模的饱和吸收器最小调制深度的数值研究

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We conducted a numerical study to investigate the minimum modulation depth of a saturable absorber that is essentially required for stable optical pulses to be generated from a passively mode-locked fiber laser cavity. More specifically, an extended nonlinear Schrodinger equation was numerically solved in order to analyze the impact of the cavity group velocity dispersion (GVD), cavity chi((3)) nonlinearity, and saturation gain of an active fiber on the minimum modulation depth that is required. The net cavity GVD is shown to significantly influence the required minimum modulation depth level of a saturable absorber. A cavity with little net anomalous dispersion was found to be readily mode locked through the use of a saturable absorber with a very small amount of modulation depth. Furthermore, the reason that a fiber laser cavity with a zero cavity GVD becomes unstable and needs a much higher modulation depth was investigated, and such a condition was found to be associated with the fiber chi((3)) nonlinearity. The minimum modulation depth was also shown to vary according to the saturation gain level of an active fiber. (C) 2014 Optical Society of America.
机译:我们进行了一项数值研究,以研究可饱和吸收体的最小调制深度,该深度对于从被动锁模光纤激光器腔中产生稳定的光脉冲是必不可少的。更具体地说,为了分析腔组速度色散(GVD),腔chi((3))非线性和有源光纤的饱和增益对最小调制深度的影响,对扩展的非线性Schrodinger方程进行了数值求解。需要。净腔GVD已显示对可饱和吸收体的所需最小调制深度水平有重大影响。发现通过使用具有非常少量的调制深度的可饱和吸收体,具有很少的净异常色散的腔很容易被锁模。此外,研究了具有零腔GVD的光纤激光腔变得不稳定并需要更高调制深度的原因,发现这种情况与光纤chi((3))非线性有关。还显示了最小调制深度根据有源光纤的饱和增益水平而变化。 (C)2014年美国眼镜学会。

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