Effects of La doping on the crystal growth, phase stability and scintillation properties of Lu3Al5O12 single crystals
Author:
Funder
JSPS
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference39 articles.
1. Development of LuAG-based scintillator crystals – A review
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4. Fundamental Limitations in the Performance of ${\rm Ce}^{3+}$–, ${\rm Pr}^{3+}$–, and ${\rm Eu}^{2+}$–Activated Scintillators
5. Energy transfer phenomena in the luminescence of wide band-gap scintillators
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1. Micro-Inclusion Engineering via Sc Incompatibility for Luminescence and Photoconversion Control in Ce3+-Doped Tb3Al5−xScxO12 Garnet;Materials;2024-06-05
2. Engineering atomic size mismatch in Pr3+, La3+ codoped Lu3Al5O12 garnet single crystals for tailored structure and functional properties;Journal of Alloys and Compounds;2024-05
3. Advances in Ce3+ doped Y1±xAlO3 (x≠0) single crystal perovskite scintillators through nonstoichiometric engineering;Optical Materials: X;2024-05
4. From Fundamental Insight to Property Control in Tb2yxal5o12:Ce (X= 1 and 0.1) Garnets Through Nonstoichiometric Engineering: Impacts on Structure, Defects, Luminescence, Photoconversion and Scintillation;2024
5. Towards deliberate design of persistent phosphors: a study of La–Ga admixing in LuAG:Ce crystals to engineer elemental homogeneity and carrier trap depths;Journal of Materials Chemistry C;2023
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