Abstract
We have proposed and experimentally demonstrated a novel scheme for efficient mid-infrared difference-frequency generation based on passively synchronized fiber lasers. The adoption of coincident seeding pulses in the nonlinear conversion process could substantially lower the pumping threshold for mid-infrared parametric emission. Consequently, a picosecond mid-infrared source at 3.1 µm was prepared with watt-level average power, and a maximum power conversion efficiency of 77% was realized from pump to down-converted light. Additionally, the long-term stability of generated power was manifested with a relative fluctuation as low as 0.17% over one hour. Thanks to the all-optical passive synchronization and all-polarization-maintaining fiber architecture, the implemented laser system was also featured with simplicity, compactness and robustness, which would favor subsequent applications beyond laboratory operation.
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CITATION STYLE
Huang, K., Wang, Y., Fang, J., Chen, H., Xu, M., Hao, Q., … Zeng, H. (2021). Highly efficient difference-frequency generation for mid-infrared pulses by passively synchronous seeding. High Power Laser Science and Engineering, 9. https://doi.org/10.1017/hpl.2020.50
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