50.4% slope efficiency thulium-doped large-mode-area fiber laser fabricated by powder technology.
Identifieur interne : 000026 ( PubMed/Curation ); précédent : 000025; suivant : 00002750.4% slope efficiency thulium-doped large-mode-area fiber laser fabricated by powder technology.
Auteurs : Dia Darwich ; Romain Dauliat ; Raphaël Jamier ; Aurélien Benoit ; Jean-Louis Auguste ; Stephan Grimm ; Jens Kobelke ; Anka Schwuchow ; Kay Schuster ; Philippe RoySource :
- Optics letters [ 1539-4794 ] ; 2016.
Abstract
We report on a triple clad large-mode-area Tm-doped fiber laser with 18 μm core diameter manufactured for the first time by an alternative manufacturing process named REPUSIL. This reactive powder sinter material enables similar properties compared to conventional CVD-made fiber lasers, while offering the potential of producing larger and more uniform material. The fiber characterization in a laser configuration provides a slope efficiency of 47.7% at 20°C, and 50.4% at 0°C with 8 W output power, with a laser peak emission at 1970 nm. Finally, a beam quality near the diffraction-limit (M(x,y)2<1.1) is proved.
PubMed: 26766720
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<author><name sortKey="Benoit, Aurelien" sort="Benoit, Aurelien" uniqKey="Benoit A" first="Aurélien" last="Benoit">Aurélien Benoit</name>
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<front><div type="abstract" xml:lang="en">We report on a triple clad large-mode-area Tm-doped fiber laser with 18 μm core diameter manufactured for the first time by an alternative manufacturing process named REPUSIL. This reactive powder sinter material enables similar properties compared to conventional CVD-made fiber lasers, while offering the potential of producing larger and more uniform material. The fiber characterization in a laser configuration provides a slope efficiency of 47.7% at 20°C, and 50.4% at 0°C with 8 W output power, with a laser peak emission at 1970 nm. Finally, a beam quality near the diffraction-limit (M(x,y)2<1.1) is proved.</div>
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<Abstract><AbstractText>We report on a triple clad large-mode-area Tm-doped fiber laser with 18 μm core diameter manufactured for the first time by an alternative manufacturing process named REPUSIL. This reactive powder sinter material enables similar properties compared to conventional CVD-made fiber lasers, while offering the potential of producing larger and more uniform material. The fiber characterization in a laser configuration provides a slope efficiency of 47.7% at 20°C, and 50.4% at 0°C with 8 W output power, with a laser peak emission at 1970 nm. Finally, a beam quality near the diffraction-limit (M(x,y)2<1.1) is proved.</AbstractText>
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