Enhanced 2.7 μm emission and energy transfer mechanism of Nd3+/Er3+ co-doped sodium tellurite glasses
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3601353
Reference30 articles.
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4. 2.0 μm emission properties and energy transfer processes of Yb3+/Ho3+ codoped germanate glass
5. Tunable dual-mode photoluminescence from nanocrystalline Eu-doped Li2ZnSiO4 glass ceramic phosphors
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1. Realizing particle population inversion of 2.7 μm emission in heavy Er3+/Pr3+ co-doped low hydroxyl fluorotellurite glass for mid-infrared laser;Ceramics International;2023-06
2. Photoluminescence properties and energy transfer investigations of Gd3+ and Sm3+ co-doped ZnO–BaO–TeO2 glasses for solid state laser application;Journal of Luminescence;2020-08
3. Enhanced mid-infrared emission in Er3+/Tm3+ co-doped tungsten-tellurite glasses;Infrared Physics & Technology;2019-11
4. 2.7 μm mid-infrared emission enhancement of Nd3+ and Er3+ ions co-doped Bi2O3-PbO-Ga2O3 heavy metal oxide glass;Journal of Non-Crystalline Solids;2019-08
5. Optimization by energy transfer process of 2.7 µm emission in highly Er3+-doped tungsten-tellurite glasses;Infrared Physics & Technology;2019-06
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