光学
超短脉冲
干涉测量
光纤激光器
激光器
材料科学
脉冲整形
孤子
脉搏(音乐)
光纤
非线性系统
自相位调制
相位调制
相(物质)
非线性光学
调制(音乐)
纤维
物理
飞秒脉冲整形
测距
模式锁定
太赫兹辐射
带宽限制脉冲
保偏光纤
频率调制
交叉相位调制
渐变折射率纤维
脉冲波
相位差
作者
Dong Li,J. Li,Heze Zhang,Jia Xue,Haizhou Wang,Chao Zeng,Yueqing Du,Guanghua Cheng,Jianlin Zhao,Dong Mao
标识
DOI:10.1109/jlt.2025.3607897
摘要
We present a deformable ultrafast fiber laser based on a delay-tunable Mach–Zehnder interferometer, which can generate pulses with adjustable durations spanning from 239 fs to 24.51 ps, as well as dual-color soliton complexes characterized by tunable sub-pulse separations ranging from 2.49 ps to 3.93 ps. The Mach–Zehnder interferometer is accurately modeled by introducing a linear spectral phase difference in the frequency domain. Simulation results fully reproduce the experimental observations, demonstrating that the properties of mode-locked pulses are predominantly governed by the linear spectral phase difference and self/cross-phase modulation effects. Particularly, owing to the time delay in two arms of the Mach–Zehnder interferometer, the temporal profile of dual-color soliton complex varies between adjacent roundtrips. This study elucidates the formation mechanisms of diverse types of pulses in Mach–Zehnder interferometer-based fiber laser, offering a deformable pulse source for applications such as Terahertz wave generation and nonlinear optical imaging.
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