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Theoretical study of the erbium-doped fiber laser passively mode-locked by nonlinear polarization rotation

机译:非线性偏振旋转被动锁模掺铒光纤激光器的理论研究

摘要

We investigate theoretically the mode-locking properties of an erbium-doped birefringent fiber laser in a unidirectional cavity containing an optical isolator. The mode-locking is achieved through nonlinear polarization rotation. The approach is based on a master equation which takes explicitly into account the angles between the eigen axis of the fiber at each side of the polarizer. The stability conditions of both the stationary and localized solutions are determined. This allows to establish a stability diagram versus the angles which gives the domains where the laser operates in continuous, mode-locked or unstable regime. The model also allows to calculate the pulse duration together with the pulse energy as a function of the orientation of the eigen axis of the fiber with respect to the polarizer.
机译:我们在理论上研究掺containing双折射光纤激光器在包含光隔离器的单向腔中的锁模特性。锁模是通过非线性极化旋转实现的。该方法基于一个主方程,该方程明确考虑了偏振器每一侧的光纤本征轴之间的角度。确定了固定解和局部解的稳定性条件。这样就可以建立相对于角度的稳定性图,从而给出激光器在连续,锁模或不稳定状态下工作的区域。该模型还允许根据光纤的本征轴相对于偏振器的方向来计算脉冲持续时间以及脉冲能量。

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