材料科学
色散(光学)
光学
光纤激光器
激光器
色散位移光纤
可调谐激光器
光电子学
放大自发辐射
光子晶体光纤
光纤
零色散波长
多模光纤
超短脉冲
实现(概率)
单模光纤
有源激光介质
带宽限制脉冲
波长
非线性光学
得利
光纤布拉格光栅
脉搏(音乐)
光通信
渐变折射率纤维
纤维
双包层光纤
偏振模色散
反射(计算机编程)
净收益
保偏光纤
注射播种机
脉冲整形
非线性系统
分布反馈激光器
高增益天线
光学腔
作者
Zhen Chen,Zhi Yang,Ze Li,Zhiguo Lv
标识
DOI:10.1109/jlt.2025.3613784
摘要
Wavelength-switchable and tunable fiber lasers are widely applied for their flexible output performance, but their realization remains constrained by factors such as gain bandwidth, dispersion effects, and gain competition. In this work, leveraging the inherent dual-peak gain profile of Er: fiber in conjunction with the controllable cavity end-mirror reflection loss, we investigate the laser characteristics of the wavelength-switchable and tunable ultrashort pulses in an all-polarization-maintaining (PM) figure-9 fiber laser across different dispersion regions (from −0.1127 ps2 to +0.0227 ps2) in the 1.5 μm waveband for the first time, to the best of our knowledge. Specifically, the laser can generate single-wavelength pulses in both anomalous and normal dispersion regions, with the central wavelength switchable between 1532 nm and 1557 nm. In the near-zero dispersion region, switchable synchronous dual-wavelength pulses can be achieved by balancing wavelength-related gain and loss, and such pulses have a 2 nm tuning range. In addition, the generation and evolution of pulse states in different dispersion regions have been simulated by establishing the corresponding theoretical model, showing excellent agreement with the experimental results. Our results deepen the understanding of gain dynamic traits and provide a foundation for studying mode-locking nonlinear evolutionary paths and dual-wavelength generated behavior.
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