Opt Express. 2023 Apr 24;31(9):15170-15178. doi: 10.1364/OE.487762.
An all-polarization-maintaining (PM) mode-locked fiber laser based upon nonlinear polarization evolution (NPE) that operates around 976 nm is presented. The NPE-based mode-locking is realized using a special section of the laser which comprises three pieces of PM fibers with specific deviation angles between the polarization axes and a polarization-dependent isolator. By optimizing the NPE section and adjusting the pump power, dissipative soliton (DS) pulses with a pulse duration of ∼6 ps, a spectral bandwidth of >10 nm and a maximum pulse energy of 0.54 nJ are generated. Self-starting, steady mode-locking operation is achievable within a pump power range of ∼2 W. Moreover, by incorporating a segment of passive fiber into the appropriate location in the laser resonator, an intermediate regime between stable single-pulse mode-locking and noise-like pulse (NLP) is realized in the laser. Our work expands the dimension of the research on the mode-locked Yb-doped fiber laser operating around 976 nm.
本文提出了一种基于非线性偏振演化(NPE)的全偏振保持(PM)锁模光纤激光器,其工作波长在 976nm 左右。该基于 NPE 的锁模通过激光的特殊部分实现,该部分包括三段具有特定偏振轴之间偏转角的 PM 光纤和偏振相关隔离器。通过优化 NPE 部分并调整泵浦功率,可产生持续时间约为 6ps、光谱带宽大于 10nm 和最大脉冲能量为 0.54nJ 的耗散孤子(DS)脉冲。在约 2W 的泵浦功率范围内可实现自启动、稳定的锁模运行。此外,通过在激光谐振腔内适当位置引入一段无源光纤,可在激光中实现介于稳定单脉冲锁模和噪声样脉冲(NLP)之间的中间状态。我们的工作扩展了工作在 976nm 左右的掺镱光纤激光器锁模研究的维度。