High-power nonlinear amplification of an ultrafast electro-optic frequency comb with flexible GHz repetition rate

We report on an all-fiber 200 W widely tunable GHz electro-optic (EO) frequency comb operating in the nonlinear regime. The EO comb pulses at 1030 nm are initially pre-compressed to sub-2 ps, then power amplified to 2.5 W, and finally boosted to 200 W in a newly designed large-mode-area, Yb-doped ph...

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Veröffentlicht in:Optics express 2022-03, Vol.30 (7), p.10605-10613
Hauptverfasser: Ye, Hanyu, Leroi, Florian, Pontagnier, Lilia, Santarelli, Giorgio, Boullet, Johan, Cormier, Eric
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container_end_page 10613
container_issue 7
container_start_page 10605
container_title Optics express
container_volume 30
creator Ye, Hanyu
Leroi, Florian
Pontagnier, Lilia
Santarelli, Giorgio
Boullet, Johan
Cormier, Eric
description We report on an all-fiber 200 W widely tunable GHz electro-optic (EO) frequency comb operating in the nonlinear regime. The EO comb pulses at 1030 nm are initially pre-compressed to sub-2 ps, then power amplified to 2.5 W, and finally boosted to 200 W in a newly designed large-mode-area, Yb-doped photonic crystal fiber. Continuously tunable across 12-18 GHz, the picosecond pulses experience nonlinear propagation in the last amplifier, leading to output pulses compressible down to several hundreds of femtoseconds. To push our system deeper into nonlinear amplification regime, the pulse repetition rate is further reduced to 2 GHz, enabling significant spectral broadening at 200 W. Characterization reveals sub-200 fs duration after compression. The present EO-comb seeded nonlinear amplification system opens a new route to the development of high-power, tunable GHz-repetition-rate, femtosecond fiber lasers.
doi_str_mv 10.1364/OE.451001
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title High-power nonlinear amplification of an ultrafast electro-optic frequency comb with flexible GHz repetition rate
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