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Ce:YAG transparent ceramics based on nanopowders produced by laser ablation method: Fabrication, optical and scintillation properties

https://doi.org/10.17586/2220-8054-2017-8-3-351-359

Abstract

Transparent Ce:YAG ceramics were fabricated by the solid-state reaction method with an additional round of pre-calcining using nanopowders of Ce2xY2−2xO3 (x = 0.001, 0.01, 0.03 and 0.05) and Al2O3 synthesized by laser ablation. Additional pre-calcining of the nanopowder mixture in air was used to partially transform the oxides into the YAG phase before sintering. The transmittance of the obtained 2-mm-thick Ce:YAG ceramics was over 81 % in the wavelength range of 500–900 nm. The average volumes of the scattering centers in the obtained ceramics were evaluated by direct count method to be 34, 74, 53, 50 ppm for 0.1, 1, 3 and 5 % Ce doping concentration, respectively. The absolute light yields, energy resolutions under 662 keV gamma ray, and decay curves of scintillations of the fabricated Ce:YAG samples were measured and compared to those of Ce:YAG and CsI:Tl single crystals.

About the Authors

V. V. Osipov
Institute of Electrophysics UrB RAS
Russian Federation

Amundsena St. 106, Ekaterinburg 620016



V. A. Shitov
Institute of Electrophysics UrB RAS
Russian Federation

Amundsena St. 106, Ekaterinburg 620016



K. E. Lukyashin
Institute of Electrophysics UrB RAS
Russian Federation

Amundsena St. 106, Ekaterinburg 620016



R. N. Maksimov
Institute of Electrophysics UrB RAS; Ural Federal University
Russian Federation

Amundsena St. 106, Ekaterinburg 620016; Mira St. 19, Ekaterinburg 620002



A. V. Ishchenko
Ural Federal University
Russian Federation

Mira St. 19, Ekaterinburg 620002



V. V. Platonov
Institute of Electrophysics UrB RAS
Russian Federation

Amundsena St. 106, Ekaterinburg 620016



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Review

For citations:


Osipov V.V., Shitov V.A., Lukyashin K.E., Maksimov R.N., Ishchenko A.V., Platonov V.V. Ce:YAG transparent ceramics based on nanopowders produced by laser ablation method: Fabrication, optical and scintillation properties. Nanosystems: Physics, Chemistry, Mathematics. 2017;8(3):351-359. https://doi.org/10.17586/2220-8054-2017-8-3-351-359

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ISSN 2220-8054 (Print)
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