Opt Lett. 2019 Nov 1;44(21):5218-5221. doi: 10.1364/OL.44.005218.
In this Letter, we present an all-fiber, easy-to-use, wavelength-tunable, ultrafast laser, based on soliton self-frequency shifting in an Er-doped polarization-maintaining very large mode area fiber. The system is tunable over 370 nm, starting at 1620 nm, with an average power of up to 1.5 W that emits 120 fs short laser pulses directly out of the fusion-spliced fiber without using bulky pulse compression optics. The output is subsequently frequency doubled to a wavelength range covering 810 nm up to almost 1000 nm with more than 500 mW average power and 120 fs pulse width. Having a polarization extinction ratio better than 40 dB and a M of 1.1, the fully computer-controlled laser system presents a robust and compact laser source. These parameters make the laser perfectly suited for multimodal imaging in nonlinear microscopy.
在这封信件中,我们展示了一种全光纤、易于使用、波长可调、超短激光源,其基于掺铒保偏大模场光纤中的孤子自频移。该系统在 1620nm 起始时可在 370nm 范围内调谐,平均功率高达 1.5W,可直接从熔接光纤中输出 120fs 的短激光脉冲,无需使用庞大的脉冲压缩光学器件。输出随后被二倍频到覆盖 810nm 到近 1000nm 的波长范围,平均功率超过 500mW,脉冲宽度为 120fs。该全光纤、易于使用、波长可调、超短激光源具有优于 40dB 的偏振消光比和 1.1 的 M2,是一种稳定可靠的紧凑型激光源。这些参数使得该激光源非常适合非线性显微镜中的多模成像。