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3-GHz, ultrafast Yb-fiber laser sources: Closing the spectral gaps
Conference paper   Open access

3-GHz, ultrafast Yb-fiber laser sources: Closing the spectral gaps

Hung-Wen Chen, Jinkang Lim, Shanhui Xu, Zhongmin Yang, Franz X. Kärtner and Guoqing Chang
Proceedings of SPIE - The International Society for Optical Engineering, Vol.9198, 919806
2014

Abstract

Coherence length continuum generation Fiber-optic Cherenkov radiation Generalized nonlinear Schrödinger equation Photonic crystal fiber Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
Many applications require GHz femtosecond pulses with the center wavelength tunable over a broad range. Recently we have demonstrated a 3-GHz, femtosecond Yb-fiber laser system with >12-W average power using the pre-chirp management method. Nonlinear wavelength conversion based on this powerful laser source has enabled us to derive 3-GHz femtosecond sources at other useful wavelengths: using stimulated Raman scattering inside photonic crystal fibers, we have implemented a femtosecond Raman soliton source tunable between 1.06-1.35 μm; using fiber-optic Cherenkov radiation, we have demonstrated a 14-fs source centered at 850 nm with >300-mW average power.
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https://doi.org/10.1117/12.2060745View
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