Dutta Debjit, Paul Mukul Chandra, Dhar Anirban, Das Shyamal, Mohd Farid Muhammad Farid, Latiff Anas Abdul, Ahmad Harith, Harun Sulaiman Wadi
Appl Opt. 2019 Aug 20;58(24):6528-6534. doi: 10.1364/AO.58.006528.
This paper demonstrated the nanosecond pulse laser operation at 1.55 and 2 μm wavelength regions using a newly develop chromium-doped fiber (CrDF) as a saturable absorber (SA) to convert efficiently continuous-wave laser operation to nanosecond pulse laser operation. The laser uses an erbium-doped fiber (EDF) and thulium-doped fiber as the gain medium. A piece of 10 cm long CrDF was integrated into both laser cavities to generate nanosecond pulse laser operation. In 1.55 region generation, an additional single-mode fiber (SMF) 100 m long was added into the EDF laser cavity. Stable pulse generation occurred at a repetition rate of 1 MHz with a pulse width of 432 ns and a signal-to-noise ratio (SNR) of 66 dB. The highest peak power of 24 mW was obtained at 142 mW pump power. In 2 μm region generation, the obtained repetition rate was 10 MHz with a pulse width and SNR of 59 ns and 41 dB, respectively. The highest peak power was only 8.3 mW. By looking into the findings, the newly developed CrDF SA has a potential to be further enhanced toward better generation of ultrashort pulse fiber lasers.
本文展示了在1.55和2μm波长区域的纳秒脉冲激光运转,使用新开发的掺铬光纤(CrDF)作为可饱和吸收体(SA),将连续波激光运转高效转换为纳秒脉冲激光运转。该激光器使用掺铒光纤(EDF)和掺铥光纤作为增益介质。将一段10cm长的CrDF集成到两个激光腔中以产生纳秒脉冲激光运转。在1.55区域产生时,在EDF激光腔中添加了一根100m长的额外单模光纤(SMF)。以1MHz的重复频率、432ns的脉冲宽度和66dB的信噪比产生了稳定的脉冲。在142mW泵浦功率下获得了24mW的最高峰值功率。在2μm区域产生时,获得的重复频率为10MHz,脉冲宽度和信噪比分别为59ns和41dB。最高峰值功率仅为8.3mW。通过研究这些结果,新开发的CrDF SA有潜力进一步改进,以更好地产生超短脉冲光纤激光器。