Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality
We report on our recent progress of fabricating Yb3+-doped Lu2O3 transparent ceramics for 1 μm solid-state laser application. Well-dispersed 3.3 at.% Yb:Lu2O3 nanopowders were synthesized using a co-precipitation method. Without using any sintering aids, the Yb:Lu2O3 nanopowders could be densified b...
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sg-ntu-dr.10356-1513812021-06-23T09:18:10Z Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality Yin, Danlei Ma, Jie Liu, Peng Yao, Bingqing Wang, Jun Dong, Zhili Kong, Ling Bing Tang, Dingyuan School of Electrical and Electronic Engineering School of Materials Science and Engineering Engineering::Electrical and electronic engineering Lutetium Oxide Solid-state Lasers We report on our recent progress of fabricating Yb3+-doped Lu2O3 transparent ceramics for 1 μm solid-state laser application. Well-dispersed 3.3 at.% Yb:Lu2O3 nanopowders were synthesized using a co-precipitation method. Without using any sintering aids, the Yb:Lu2O3 nanopowders could be densified by vacuum sintering at 1500°C/10 hours followed by HIPing at 1480°C/4 hours. Such obtained Yb:Lu2O3 ceramics had not only dense microstructure and submicron grain size of about 0.6 μm, but also in-line transmission of 80.0% at 600 nm. Preliminary continuous wave (CW) laser experiments with an uncoated Yb:Lu2O3 ceramic slab have demonstrated highly efficient CW laser oscillation at 1079.8 nm. Ministry of Education (MOE) The author thanks Dr. Han Dan of Shanghai Institute of Ceramics, Chinese Academy of Science, for the assistance of thermal diffusivity measurements. The authors would like to thank the financial support by MOE Singapore under the project no.: Tier-1 RG82/16. 2021-06-23T09:18:10Z 2021-06-23T09:18:10Z 2019 Journal Article Yin, D., Ma, J., Liu, P., Yao, B., Wang, J., Dong, Z., Kong, L. B. & Tang, D. (2019). Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality. Journal of the American Ceramic Society, 102(5), 2587-2592. https://dx.doi.org/10.1111/jace.16105 0002-7820 0000-0003-0151-927X 0000-0001-6949-6196 0000-0003-4818-3419 0000-0001-8116-6747 https://hdl.handle.net/10356/151381 10.1111/jace.16105 2-s2.0-85054509859 5 102 2587 2592 en RG82/16 Journal of the American Ceramic Society © 2018 The American Ceramic Society. All rights reserved. |
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Engineering::Electrical and electronic engineering Lutetium Oxide Solid-state Lasers Yin, Danlei Ma, Jie Liu, Peng Yao, Bingqing Wang, Jun Dong, Zhili Kong, Ling Bing Tang, Dingyuan Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
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We report on our recent progress of fabricating Yb3+-doped Lu2O3 transparent ceramics for 1 μm solid-state laser application. Well-dispersed 3.3 at.% Yb:Lu2O3 nanopowders were synthesized using a co-precipitation method. Without using any sintering aids, the Yb:Lu2O3 nanopowders could be densified by vacuum sintering at 1500°C/10 hours followed by HIPing at 1480°C/4 hours. Such obtained Yb:Lu2O3 ceramics had not only dense microstructure and submicron grain size of about 0.6 μm, but also in-line transmission of 80.0% at 600 nm. Preliminary continuous wave (CW) laser experiments with an uncoated Yb:Lu2O3 ceramic slab have demonstrated highly efficient CW laser oscillation at 1079.8 nm. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Yin, Danlei Ma, Jie Liu, Peng Yao, Bingqing Wang, Jun Dong, Zhili Kong, Ling Bing Tang, Dingyuan |
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Article |
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Yin, Danlei Ma, Jie Liu, Peng Yao, Bingqing Wang, Jun Dong, Zhili Kong, Ling Bing Tang, Dingyuan |
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Yin, Danlei |
title |
Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
title_short |
Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
title_full |
Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
title_fullStr |
Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
title_full_unstemmed |
Submicron-grained Yb:Lu2O3 transparent ceramics with lasing quality |
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submicron-grained yb:lu2o3 transparent ceramics with lasing quality |
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2021 |
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https://hdl.handle.net/10356/151381 |
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1703971210703929344 |