High-energy nanosecond pulse extraction from a Tm 3+ -doped photonic crystal fiber laser emitting at 2050 nm with narrow linewidth

A nanosecond-pulsed diode-pumped Tm 3+ -doped fiber laser (TDFL) operating at 2050 nm is reported based on a flexible photonic crystal fiber (PCF) with a core diameter of 50 µm. Analytical evaluation of reabsorption effects and optimization of the fiber length allow enhanced pulse energy extraction...

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Bibliographic Details
Published inOptics express Vol. 32; no. 18; p. 32309
Main Authors Schneider, Julian, Lassiette, Hugo, Lorenz, Dominik, Forster, Patrick, Lautenschläger, Jan, Panitzek, Dieter, Romano, Clément, Eichhorn, Marc, Kieleck, Christelle
Format Journal Article
LanguageEnglish
Published 26.08.2024
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Summary:A nanosecond-pulsed diode-pumped Tm 3+ -doped fiber laser (TDFL) operating at 2050 nm is reported based on a flexible photonic crystal fiber (PCF) with a core diameter of 50 µm. Analytical evaluation of reabsorption effects and optimization of the fiber length allow enhanced pulse energy extraction at long wavelengths. This enables the generation of Gaussian-shaped pulses with pulse energies of 1.9 mJ, pulse widths of 116 ns, and peak powers of 15.4 kW from the TDFL. The measured output spectrum shows a single peak at 2050 nm with a 3-dB-linewidth of 130 pm and a 10-dB-linewidth of 370 pm. With a slope efficiency of 44 %, the average output power of the pulsed TDFL is scaled up to 114 W. To the best of our knowledge, this represents the first demonstration of a Tm 3+ -doped PCF at a long emission wavelength of 2050 nm and the highest pulse energies from a TDFL based on a flexible fiber.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.531146