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Optical–optical synchronization between independent mode-locked lasers with attosecond timing precision is essential for arbitrary electric-field waveform generation, subcycle optical pulse synthesis, optical frequency transfer as well as next-generation photon-science facilities, e.g., X-ray free-electron lasers. Long-term stable operation with low timing drift is highly desired for all above applications...
Timing jitter optimization of mode-locked lasers is essential for applications that require high temporal resolution. In this work, both numerical simulation and experiments show that the Gordon-Haus timing jitter of large-net-dispersion mode-locked fiber lasers can be removed with an intra-cavity narrow band-pass filter. As a result, the filtered lasers exhibit rather low timing jitter that is immune...
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