Turnali Ahmet, Xu Shutao, Sander Michelle Y
Opt Express. 2022 Apr 25;30(9):13977-13984. doi: 10.1364/OE.453946.
The evolution of soliton pulses into noise-like pulses in a nonlinear fiber externally to the laser oscillator is demonstrated at 1.9 µm, for the first time. Soliton collapse based mechanisms induce noise-like pulses with varying properties as a function of nonlinear fiber length without requiring any laser cavity feedback. The proposed method allows the generation of noise-like pulses with a sub-300 fs spike and sub-40 ps pedestal duration. Power scaling of the noise-like pulses is demonstrated in a double-clad thulium-doped fiber amplifier with amplification up to an average power of 5.19 W, corresponding to a pulse energy of 244 nJ. This method provides an alternative route for generating fully synchronized noise-like pulses and solitons in the same system, without relying on the conventionally used mechanism of changing the intracavity nonlinearity within the laser cavity.
首次在1.9 µm波长下证明了在激光振荡器外部的非线性光纤中孤子脉冲演变为类噪声脉冲。基于孤子坍缩的机制会产生具有不同特性的类噪声脉冲,这些特性是作为非线性光纤长度的函数,且无需任何激光腔反馈。所提出的方法能够产生具有亚300 fs尖峰和亚40 ps基座持续时间的类噪声脉冲。在双包层掺铥光纤放大器中展示了类噪声脉冲的功率缩放,放大后的平均功率高达5.19 W,对应脉冲能量为244 nJ。该方法为在同一系统中产生完全同步的类噪声脉冲和孤子提供了一条替代途径,而无需依赖传统的改变激光腔内腔内非线性的机制。