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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Theoretical analysis of the operating regime of a passively-mode-locked fiber laser through nonlinear polarization rotation
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Theoretical analysis of the operating regime of a passively-mode-locked fiber laser through nonlinear polarization rotation

机译:非线性偏振旋转的无源锁模光纤激光器工作原理的理论分析

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The dynamics of a fiber laser passively mode-locked through nonlinear polarization rotation is theoretically investigated. The model is based on an iterative equation for the nonlinear polarization rotation and the phase plates and on a scalar differential equation for the gain, the Kerr nonlinearity, and the dispersion. It is demonstrated that depending on the orientation of the phase plates, the laser can be continuous, mode-locked, or Q-switched. In the latter case, an additional equation for the gain dynamics must be taken into account. Hysteresis dependence of the operating regime versus the orientation angles of the phase plates is shown. A large bistability domain between the Q-switch and the continuous regimes is demonstrated. This model allows us to obtain the main features observed in passively-mode-locked fiber lasers.
机译:理论上研究了通过非线性偏振旋转被动锁模的光纤激光器的动力学。该模型基于非线性极化旋转和相位板的迭代方程,以及增益,Kerr非线性和色散的标量微分方程。已经证明,根据相板的方向,激光可以是连续的,锁模的或Q开关的。在后一种情况下,必须考虑增益动态的附加公式。示出了工作方案的磁滞依赖性与相板的定向角的关系。证明了在Q开关和连续状态之间存在较大的双稳态域。该模型使我们可以获得在被动锁模光纤激光器中观察到的主要特征。

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