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耗散型色散管理光纤激光器中增益相关的脉冲状态转变

Gain dependent pulse regimes transitions in a dissipative dispersion-managed fibre laser.

作者信息

Peng Junsong

出版信息

Opt Express. 2016 Feb 8;24(3):3046-54. doi: 10.1364/OE.24.003046.

Abstract

For the first time, we demonstrate the possibility to switch between three distinct pulse regimes in a dissipative dispersion-managed (DM) fibre laser by solely controlling the gain saturation energy. Nonlinear Schrödinger equation based simulations show the transitions between hyper-Gaussian similaritons, parabolic similaritons, and dissipative solitons in the same laser cavity. It is also shown that such transitions exist in a wide dispersion range from all-normal to slightly net-normal dispersion. This work demonstrates that besides dispersion and filter managements gain saturation energy can be a new degree of freedom to manage pulse regimes in DM fibre lasers, which offers flexibility in designing ultrafast fibre lasers. Also, the result indicates that in contrast to conservative soliton lasers whose intensity profiles are unique, dissipative DM lasers show diversity in pulse shapes. The findings not only give a better understanding of pulse shaping mechanisms in mode-locked lasers, but also provide insight into dissipative systems.

摘要

我们首次证明,通过仅控制增益饱和能量,在耗散色散管理(DM)光纤激光器中可在三种不同脉冲状态之间切换。基于非线性薛定谔方程的模拟显示了在同一激光腔内超高斯类孤子、抛物线类孤子和耗散孤子之间的转变。研究还表明,这种转变存在于从全正色散到略微净正色散的宽色散范围内。这项工作表明,除了色散和滤波器管理外,增益饱和能量可以成为管理DM光纤激光器脉冲状态的一个新自由度,这为超快光纤激光器的设计提供了灵活性。此外,结果表明,与强度分布独特的保守孤子激光器不同,耗散DM激光器在脉冲形状上表现出多样性。这些发现不仅能更好地理解锁模激光器中的脉冲整形机制,还能深入了解耗散系统。

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