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通过集成一片新开发的基于掺铬光纤的可饱和吸收体,在1.55和2μm波长区域产生纳秒脉冲激光。

Nanosecond pulse laser generation at 1.55 and 2  μm regions by integrating a piece of newly developed chromium-doped fiber-based saturable absorber.

作者信息

Dutta Debjit, Paul Mukul Chandra, Dhar Anirban, Das Shyamal, Mohd Farid Muhammad Farid, Latiff Anas Abdul, Ahmad Harith, Harun Sulaiman Wadi

出版信息

Appl Opt. 2019 Aug 20;58(24):6528-6534. doi: 10.1364/AO.58.006528.

Abstract

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.

摘要

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。

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