光纤激光器
相位噪声
材料科学
光学
模式锁定
噪音(视频)
光纤
激光器
理论(学习稳定性)
交叉相位调制
纤维
光电子学
相位调制
物理
计算机科学
复合材料
人工智能
机器学习
图像(数学)
作者
Marvin Edelmann,Yi Hua,Kemal Şafak,Yousef El Sharkawy,Mikhail Pergament,Franz X. Kärtner
标识
DOI:10.1109/jlt.2025.3581998
摘要
We demonstrate that suppression of intra-cavity cross-phase modulation (XPM) significantly improves the stability and noise performance of all-PM linear mode-locked fiber oscillators. Comprehensive numerical simulations show that XPM suppression dramatically expands the oscillator's stability range by reducing roundtrip nonlinear phase-noise accumulation and intensity fluctuations. For experimental confirmation, a modified oscillator with switchable XPM suppression is constructed, enabling direct comparative measurements in both soliton and stretched-pulse regimes. In agreement with the numerical results, XPM suppression is found to enable a substantial reduction in relative intensity noise (RIN) and timing jitter, with integrated RIN decreasing from 0.08% to 0.06% and jitter improving from 87 fs to 39 fs (9 kHz - 5 MHz) in the soliton regime. In the stretched-pulse regime, RIN drops from 0.07% to 0.04%, and jitter is reduced from 22 fs to 14.5 fs (3 kHz - 5 MHz). These results advance XPM-suppressed all-PM linear mode-locked fiber lasers toward precision applications in frequency metrology, optical synchronization, and biomedical imaging.
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