This paper deals with some aspects of scintillation response of Ce-doped Y-Lu aluminum garnets or perovskites in comparison with Ce-doped orthosilicates. An essential difference between the Ce-doped aluminum garnets/perovskites and orthosilicates consists in larger fluctuations of photoelectron yield of the latter scintillators where differences can reach up to 50% and measured values critically depend on the recent history of the sample (illumination by day light, thermal annealing, etc.). This behavior of Ce-doped silicates seems to be due to the vicinity of the 5d1 level of Ce3+ from the conduction band, which makes the material more sensitive to the presence of deep electron traps monitored by thermo-luminescence above room temperature. The presence of such electron trapping sites thus appears more critical than in aluminum garnets/perovskites
Mares, J., Nikl, M., Mihokova, E., Beitlerova, A., Vedda, A., D'Ambrosio, C. (2008). Scintillation response comparison among Ce-doped aluminum garnets, perovskites and orthosilicates. IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 55(3), 1142-1147 [10.1109/TNS.2008.922840].
Scintillation response comparison among Ce-doped aluminum garnets, perovskites and orthosilicates
Vedda, AG;
2008
Abstract
This paper deals with some aspects of scintillation response of Ce-doped Y-Lu aluminum garnets or perovskites in comparison with Ce-doped orthosilicates. An essential difference between the Ce-doped aluminum garnets/perovskites and orthosilicates consists in larger fluctuations of photoelectron yield of the latter scintillators where differences can reach up to 50% and measured values critically depend on the recent history of the sample (illumination by day light, thermal annealing, etc.). This behavior of Ce-doped silicates seems to be due to the vicinity of the 5d1 level of Ce3+ from the conduction band, which makes the material more sensitive to the presence of deep electron traps monitored by thermo-luminescence above room temperature. The presence of such electron trapping sites thus appears more critical than in aluminum garnets/perovskitesI documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.