Huang J, Pang M, Jiang X, He W, Russell P StJ
Opt Express. 2019 Sep 16;27(19):26392-26404. doi: 10.1364/OE.27.026392.
State-of-the-art ultrafast mid-IR fiber lasers deliver optical solitons with durations of several hundred femtoseconds. The Er- or Ho-doped fluoride gain fibers generally used in these lasers have strong anomalous dispersion at ∼3 µm, which generally forces them to operate in the soliton regime. Here we report that a pulse-energy clamping effect, caused by the buildup of intracavity nonlinearities, limits the shortest obtainable pulse durations in these mid-infrared soliton fiber lasers. Excessive intra-cavity energy results in soliton instability, collapse and fragmentation into a variety of stable multi-pulse states, including phase-locked soliton molecules and harmonically mode-locked states. We report that the spectral evolution of the mid-IR laser pulses can be recorded between roundtrips through stretching their second-harmonic signal in a 25-km-length of single-mode fiber. Using a modified dispersive Fourier transform set-up, we were able to perform for the first time spectro-temporal measurements of mid-IR laser pulses both in the pulsed state and during pulse collapse and fragmentation. The results provide insight into the complex nonlinear dynamics of mid-IR soliton fiber lasers and open up new opportunities for obtaining a variety of stable multi-pulse mode-locked states at mid-IR wavelengths.
最先进的超快中红外光纤激光器可产生持续时间为几百飞秒的光孤子。这些激光器中通常使用的掺铒或掺钬氟化物增益光纤在约3 µm波长处具有很强的反常色散,这通常迫使它们在孤子状态下运行。在此我们报告,由腔内非线性积累引起的脉冲能量钳位效应限制了这些中红外孤子光纤激光器可获得的最短脉冲持续时间。腔内能量过多会导致孤子不稳定、坍缩并分裂成各种稳定的多脉冲状态,包括锁相孤子分子和谐波锁模状态。我们报告称,通过在25公里长的单模光纤中拉伸中红外激光脉冲的二次谐波信号,可以在往返过程中记录中红外激光脉冲的光谱演化。使用改进的色散傅里叶变换装置,我们首次能够对脉冲状态以及脉冲坍缩和分裂过程中的中红外激光脉冲进行光谱 - 时间测量。这些结果有助于深入了解中红外孤子光纤激光器复杂的非线性动力学,并为在中红外波长获得各种稳定的多脉冲锁模状态开辟了新机会。