Ahmad H, Azri M F M, Ramli R, Samion M Z, Yusoff N, Lim K S
Photonics Research Centre, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Department of Physics, Faculty of Science, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Sci Rep. 2021 Oct 28;11(1):21278. doi: 10.1038/s41598-021-99928-z.
In this work, mode-locked thulium-doped fiber lasers operating in the 2 µm wavelength region were demonstrated using tantalum aluminum carbide (TaAlC)-based saturable absorbers (SAs) utilizing the evanescent wave interaction. The TaAlC MAX Phase was prepared by dissolving the TaAlC powder in isopropyl alcohol and then deposited onto three different evanescent field-based devices, which were the tapered fiber, side-polished fiber, and arc-shaped fiber. Flame-brushing and wheel-polishing techniques were used to fabricate the tapered and arc-shaped fibers, respectively, while the side-polished fiber was purchased commercially. All three SA devices generated stable mode-locked pulses at center wavelengths of 1937, 1931, and 1929 nm for the tapered, side-polished, and arc-shaped fibers. The frequency of the mode-locked pulses was 10.73 MHz for the tapered fiber, 9.58 MHz for the side-polished fiber, and 10.16 MHz for the arc-shaped fiber. The measured pulse widths were 1.678, 1.734, and 1.817 ps for each of the three SA devices. The long-term stability of the mode-locked lasers was tested for each configuration over a 2-h duration. The lasers also showed little to no fluctuations in the center wavelengths and the peak optical intensities, demonstrating a reliable, ultrafast laser system.
在这项工作中,利用基于碳化钽铝(TaAlC)的可饱和吸收体(SA),通过倏逝波相互作用,展示了工作在2μm波长区域的锁模掺铥光纤激光器。通过将TaAlC粉末溶解在异丙醇中制备TaAlC MAX相,然后将其沉积到三种不同的基于倏逝场的器件上,即锥形光纤、侧面抛光光纤和弧形光纤。分别使用火焰刷涂和轮抛光技术制造锥形光纤和弧形光纤,而侧面抛光光纤则是商业购买的。对于锥形光纤、侧面抛光光纤和弧形光纤,所有这三种SA器件在中心波长1937nm、1931nm和1929nm处均产生了稳定的锁模脉冲。锥形光纤的锁模脉冲频率为10.73MHz,侧面抛光光纤为9.58MHz,弧形光纤为10.16MHz。三种SA器件各自测得的脉冲宽度分别为1.678ps、1.734ps和1.817ps。对每种配置的锁模激光器在2小时的持续时间内进行了长期稳定性测试。这些激光器在中心波长和峰值光强度方面也几乎没有波动,展示了一个可靠的超快激光系统。