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Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal

The 8.3 at.% Yb-doped yttrium-scandium-aluminum garnet (YSAG) ceramics were fabricated by a modified reverse co-precipitation method followed by uniaxial and cold isostatic pressing, annealing in air and high-temperature sintering in vacuum. Spectroscopic and lasing properties were investigated in d...

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Հիմնական հեղինակներ: Nikova, M. S., Никова, М. С., Tarala, V. A., Тарала, В. А.
Ձևաչափ: Статья
Լեզու:English
Հրապարակվել է: Elsevier Ltd 2024
Խորագրեր:
Առցանց հասանելիություն:https://dspace.ncfu.ru/handle/123456789/29243
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id ir-123456789-29243
record_format dspace
spelling ir-123456789-292432024-11-27T09:34:11Z Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal Nikova, M. S. Никова, М. С. Tarala, V. A. Тарала, В. А. Laser ceramics Transparent ceramics Luminescence Transmission The 8.3 at.% Yb-doped yttrium-scandium-aluminum garnet (YSAG) ceramics were fabricated by a modified reverse co-precipitation method followed by uniaxial and cold isostatic pressing, annealing in air and high-temperature sintering in vacuum. Spectroscopic and lasing properties were investigated in dependence on Y/Sc/Al ratio in ceramic composition. Optical transmission of Yb:YSAG ceramics in visible and near-infrared spectral range exceeds 80 % that indicates a high quality of the Yb:YSAG samples. Among all the ceramics, the Y2.35Yb0.25Sc1.00Al4.40O12 composition demonstrates the best lasing performance and the highest slope efficiency up to 75 %. 2024-11-27T09:33:09Z 2024-11-27T09:33:09Z 2024 Статья Zhmykhov V., Guryev D., Tsvetkov V.S., Pyrkov Y., Shvedchenko A., Dobretsova E., Kuznetsov S., Nikova M., Tarala V., Tsvetkov V.B. Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal // Ceramics International. - 2024. - 50 (23), Part B. - рр. 50358–50366. - DOI: 10.1016/j.ceramint.2024.09.381 https://dspace.ncfu.ru/handle/123456789/29243 en Ceramics International application/pdf application/pdf Elsevier Ltd
institution СКФУ
collection Репозиторий
language English
topic Laser ceramics
Transparent ceramics
Luminescence
Transmission
spellingShingle Laser ceramics
Transparent ceramics
Luminescence
Transmission
Nikova, M. S.
Никова, М. С.
Tarala, V. A.
Тарала, В. А.
Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
description The 8.3 at.% Yb-doped yttrium-scandium-aluminum garnet (YSAG) ceramics were fabricated by a modified reverse co-precipitation method followed by uniaxial and cold isostatic pressing, annealing in air and high-temperature sintering in vacuum. Spectroscopic and lasing properties were investigated in dependence on Y/Sc/Al ratio in ceramic composition. Optical transmission of Yb:YSAG ceramics in visible and near-infrared spectral range exceeds 80 % that indicates a high quality of the Yb:YSAG samples. Among all the ceramics, the Y2.35Yb0.25Sc1.00Al4.40O12 composition demonstrates the best lasing performance and the highest slope efficiency up to 75 %.
format Статья
author Nikova, M. S.
Никова, М. С.
Tarala, V. A.
Тарала, В. А.
author_facet Nikova, M. S.
Никова, М. С.
Tarala, V. A.
Тарала, В. А.
author_sort Nikova, M. S.
title Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
title_short Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
title_full Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
title_fullStr Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
title_full_unstemmed Yb:YSAG ceramics: An attractive thin-disk laser material alternative to a single crystal
title_sort yb:ysag ceramics: an attractive thin-disk laser material alternative to a single crystal
publisher Elsevier Ltd
publishDate 2024
url https://dspace.ncfu.ru/handle/123456789/29243
work_keys_str_mv AT nikovams ybysagceramicsanattractivethindisklasermaterialalternativetoasinglecrystal
AT nikovams ybysagceramicsanattractivethindisklasermaterialalternativetoasinglecrystal
AT taralava ybysagceramicsanattractivethindisklasermaterialalternativetoasinglecrystal
AT taralava ybysagceramicsanattractivethindisklasermaterialalternativetoasinglecrystal
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