DocumentCode :
1079613
Title :
Scintillation Non-Proportionality of Lutetium- and Yttrium-Based Silicates and Aluminates
Author :
Cutler, P.A. ; Melcher, C.L. ; Spurrier, M.A. ; Szupryczynski, P. ; Eriksson, L.A.
Author_Institution :
Mater. Sci. & Eng. Dept., Univ. of Tennessee, Knoxville, TN
Volume :
56
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
915
Lastpage :
919
Abstract :
This study compares the light yield as a function of gamma-ray energy for several Lu- and Y-based silicate and aluminate scintillators. These comparisons illustrate the effects of crystal matrix, growth atmosphere, activator concentration, and co-doping on proportionality. The radioisotopic sources used in this study produce gamma-rays and X-rays from 22 keV to 1.3 MeV. The samples investigated are 10 times 10 times 10 mm in size and have the following single-phase compositions: LSO:Ce; LSO:Ce, Ca; LPS:Ce; LuAG:Pr; YSO:Ce; and YSO:Ce, Ca. The light yield vs. gamma-ray energy response is similar for scintillators with similar crystal structures, despite significant variations in growth atmosphere and activator concentration. Additionally, sample-to-sample variation is significantly reduced in the Ce-doped oxyorthosilicates when calcium is added as a co-dopant. Overall, the silicates measured in this study exhibit similar non-proportional responses, and in general are less proportional in the lower energy range compared to LuAG and other aluminates.
Keywords :
calcium; cerium; doping; lutetium compounds; praseodymium; solid scintillation detectors; yttrium compounds; Lu2SiO5:Ce; Lu2SiO5:Ce,Ca; Lu3Al5O12:Pr; X-rays; Y2SiO5:Ce; Y2SiO5:Ce,Ca; activator concentration; aluminate; co-doping; crystal structures; electron volt energy 22 keV to 1.3 MeV; gamma-ray energy response; growth atmosphere; oxyorthosilicates; radioisotopic sources; scintillation nonproportionality; scintillators; silicates; single-phase compositions; Atmosphere; Biomedical imaging; Calcium; Electrons; Energy measurement; Energy resolution; Photonic crystals; Physics; X-rays; Yttrium; Non-proportionality; scintillation; scintillators;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2009.2016421
Filename :
5076063
Link To Document :
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