Highly efficient lasing and thermal properties of Tm:Y 2 O 3 and Tm:(Y,Sc) 2 O 3 ceramics

We report on thermal, spectroscopic, and laser properties of transparent 5 at.% Tm -doped yttria and "mixed" yttria-scandia ceramics fabricated by vacuum sintering at 1750°C using nanoparticles produced by laser ablation. The solid-solution (Tm Y Sc ) O ceramic features a broadband emissio...

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Veröffentlicht in:Optics letters 2023-08, Vol.48 (15), p.3901
Hauptverfasser: Eremeev, Kirill, Loiko, Pavel, Maksimov, Roman, Shitov, Vladislav, Osipov, Vladimir, Vakalov, Dmitry, Lapin, Viacheslav, Camy, Patrice, Chen, Weidong, Griebner, Uwe, Petrov, Valentin, Braud, Alain
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Sprache:eng
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Zusammenfassung:We report on thermal, spectroscopic, and laser properties of transparent 5 at.% Tm -doped yttria and "mixed" yttria-scandia ceramics fabricated by vacuum sintering at 1750°C using nanoparticles produced by laser ablation. The solid-solution (Tm Y Sc ) O ceramic features a broadband emission extending up to 2.3 µm (gain bandwidth, 167 nm) and high thermal conductivity of 4.48 W m K . A Tm:Y O ceramic laser generated 812 mW at 2.05 µm with a slope efficiency η of 70.2%. For the Tm:(Y,Sc) O ceramic, the output power was 523 mW at 2.09 µm with η = 44.7%. These results represent record-high slope efficiencies for any parent or "mixed" Tm -doped sesquioxide ceramics.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.495516