超短脉冲
光纤激光器
光学
激光器
孤子
带宽限制脉冲
脉冲整形
模式锁定
脉搏(音乐)
材料科学
脉冲持续时间
飞秒脉冲整形
物理
非线性系统
量子力学
探测器
作者
Jiapeng Huang,Meng Pang,Xin Jiang,Wenbin He,P. St. J. Russell
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2019-09-04
卷期号:27 (19): 26392-26392
被引量:17
摘要
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.
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