Growth and characterization of Tm, Ho-codoped Lu3Al5O12 single crystals by the Czochralski technique
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference16 articles.
1. Spectroscopy, modeling, and laser operation of thulium-doped crystals at 2.3 /spl mu/m
2. 30 Hz operation of 2μ-Ho and Tm-lasers
3. Diode-pumped mid-infrared solid-state lasers
4. Spectroscopic properties of thulium-doped crystalline materials including a novel host, La_2Be_2O_5: a comparative study
5. Infrared cross-section measurements for crystals doped with Er/sup 3+/, Tm/sup 3+/, and Ho/sup 3+/
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1. Investigations on a New Laser Medium of 2 µm: Tm3+, Ho3+ Co-Doped Y3Ga5O12 Crystal;Russian Journal of Inorganic Chemistry;2022-12
2. Revisiting the Growth of Large (Mg,Zr):SrGa12O19 Single Crystals: Core Formation and Its Impact on Structural Homogeneity Revealed by Correlative X-ray Imaging;Crystal Growth & Design;2022-03-14
3. Czochralski growth and characterization of the multicomponent garnet (Lu1/4Yb1/4Y1/4Gd1/4)3Al5O12;Physical Review Materials;2021-08-18
4. Polycrystalline Ho: LuAG laser ceramics: Fabrication, microstructure, and optical characterization;Journal of the American Ceramic Society;2017-03-02
5. Synthesis of lutetium aluminum garnet powders by nitrate–citrate sol–gel combustion process;Ceramics International;2007-08
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