High energy, single-mode, narrow-linewidth fiber laser source using stimulated Brillouin scattering beam cleanup

Высокоэнергетический одномодовый волоконный лазерный источник с узкой шириной линии на основе очистки пучка посредством вынужденного бриллюэновского рассеяния
Patrick Georges, Jean‐Pierre Huignard, É. Lallier, A. Brignon, Bastien Steinhausser
2007-01-01

Er:Yb co-doped fiber amplifierbeam cleanupnarrow linewidthsingle-mode fiber laserstimulated Brillouin scattering
We propose an original nonlinear beam cleaning fiber laser architecture to obtain high energy pulses with a good beam quality and a narrow linewidth. The output beam of a large core Er:Yb co-doped multimode fiber amplifier (M(2) approximately 6, 220 microJ) is converted into a near diffraction limited beam (M(2) = 1.6) through a stimulated Brillouin scattering injection seeded beam cleanup process. We report in this experiment a multimode to single mode conversion efficiency of 50% while preserving the master oscillator linewidth.
1
A nonlinear fiber-laser architecture uses stimulated Brillouin scattering injection-seeded beam cleanup to produce high-energy, narrow-linewidth pulses with good beam quality.
2
Stimulated Brillouin scattering converts the multimode output into a near-diffraction-limited beam with M² = 1.6.
3
The experiment achieves 50% multimode-to-single-mode conversion efficiency while preserving the master oscillator linewidth.
4
The output of a large-core Er:Yb co-doped multimode fiber amplifier delivers 220 µJ pulses with an M² of approximately 6 before beam cleanup.

Stimulated-Brillouin-scattering beam-cleanup fiber laser architecture based on a large-core Er:Yb co-doped multimode fiber amplifier

Multimode-to-single-mode beam conversion achieving high-energy, near-diffraction-limited pulses with preserved narrow linewidth and conversion efficiency

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2007-01-01
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Authors
Patrick Georges
Jean‐Pierre Huignard
É. Lallier
A. Brignon
Bastien Steinhausser
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