DocumentCode :
749254
Title :
Effects of Ce concentration on scintillation properties of LaBr3:Ce
Author :
Glodo, J. ; Moses, W.W. ; Higgins, W.M. ; van Loef, E.V.D. ; Wong, P. ; Derenzo, S.E. ; Weber, M.J. ; Shah, K.S.
Author_Institution :
Radiat. Monitoring Devices Inc., Watertown, MA, USA
Volume :
52
Issue :
5
fYear :
2005
Firstpage :
1805
Lastpage :
1808
Abstract :
In this communication, we investigate the scintillation properties of LaBr3:Ce as a function of Ce concentration. We have studied crystals nominally doped with 0.5%, 5%, 10%, 20%, and 30%Ce (by mole). Previous reports suggest that as the Ce content increases, there is a decrease in light output and little or no change in decay time constants. These results show that the light output does not change with Ce concentration up to 30% and depends mostly on the crystal quality. On the other hand we have found the timing properties to be a strong function of Ce concentration. As the Ce content increases, the principal decay time constant of scintillation decreases from ∼26 ns for 0.5%Ce to ∼17 ns for crystals with >5% Ce. Moreover, there is a significant change in rise time constants. The rise time measured for a sample doped with 0.5%Ce is up to 9 ns, whereas for samples doped with >10% Ce it is less than 0.5 ns. The change of rise time has a major effect on the timing properties of this scintillator, with timing resolution improving from 361 ps to less than 100 ps (full width at half maximum).
Keywords :
cerium; doping profiles; lanthanum compounds; scintillation; solid scintillation detectors; Ce concentration effects; Ce doping; LaBr3; LaBr3:Ce; crystal quality; decay time constants; scintillation detectors; scintillation properties; Biomedical equipment; Biomedical measurements; Crystals; Energy resolution; Linearity; Medical services; Scintillation counters; Time measurement; Timing; Tomography; scintillation detectors; scintillators;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.856906
Filename :
1546506
Link To Document :
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