Afterglow Behavior, Energy Transfer and Trap States in Lu2O3:Eu Single Crystal Scintillator
Author:
Funder
National Natural Science Foundation of China (NSFC)
111 project of China
Publisher
The Electrochemical Society
Subject
Electronic, Optical and Magnetic Materials
Reference20 articles.
1. Recent R&D Trends in Inorganic Single-Crystal Scintillator Materials for Radiation Detection
2. Inorganic scintillators: today and tomorrow
3. Crystal growth and scintillation properties of multi-component oxide single crystals: Ce:GGAG and Ce:La-GPS
4. Improved scintillation time response in (Lu0.5Gd0.5)2O3 : Eu3+compared with Lu2O3 : Eu3+transparent ceramics
5. A new lutetia-based ceramic scintillator for X-ray imaging
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1. Sintering mechanism and optical properties of (Lu1−xScxEu0.05)2O3 scintillation ceramics;Journal of the European Ceramic Society;2024-07
2. Effects of two strategies on afterglow behavior of Lu2O3:Eu single crystal scintillator: Co-doping with Pr3+ and solid solution with Sc2O3;Journal of Rare Earths;2023-05
3. Effects of Preparation Atmosphere and Doping Concentration on Scintillation and Photoluminescence Properties of Lu2O3:Eu Scintillation Single Crystals;Crystals;2023-04-14
4. Preparation, morphology and luminescence properties of micro-columnar structured Lu2O3:Eu films by LCVD method on quartz glass;Ceramics International;2023-04
5. X-ray induced coloration behavior of Lu2O3:Eu transparent ceramics and the impact of ZrO2 and HfO2 sintering additives;Optical Materials;2022-09
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