DocumentCode
1029708
Title
Properties of LYSO and recent LSO scintillators for phoswich PET detectors
Author
Pepin, Catherine Michelle ; Bérard, Philippe ; Perrot, Anne-Laure ; Pépin, Claude ; Houde, Daniel ; Lecomte, Roger ; Melcher, Charles L. ; Dautet, Henri
Author_Institution
Dept. of Nucl. Med. & Radiobiol., Univ. de Sherbrooke, Que., Canada
Volume
51
Issue
3
fYear
2004
fDate
6/1/2004 12:00:00 AM
Firstpage
789
Lastpage
795
Abstract
The luminescence and nuclear spectroscopic properties of the new cerium-doped rare-earth scintillator lutetium-yttrium oxyorthosilicate (Lu0.6Y1.4Si0.5:Ce, LYSO) were investigated and compared to those of both recent and older LSO crystals. UV-excited luminescent spectra outline important similarities between LYSO and LSO scintillators. The two distinct Ce1 and Ce2 luminescence mechanisms previously identified in LSO are also present in LYSO scintillators. The energy and timing resolutions were measured using avalanche photodiode (APD) and photomultiplier tube (PMT) readouts. The dependence of energy resolution on gamma-ray energy was also assessed to unveil the crystal intrinsic resolution parameters. In spite of significant progress in light output and luminescence properties, the energy resolution of these scintillators appears to still suffer from an excess variance in the number of scintillation photons. Pulse-shape discrimination between LYSO and LSO scintillators has been successfully achieved in phoswich assemblies, confirming LYSO, with a sufficient amount of yttrium to modify the decay time, to be a potential candidate for depth-of-interaction determination in multicrystal PET detectors.
Keywords
avalanche photodiodes; cerium; lutetium compounds; photoluminescence; photomultipliers; pulse shaping circuits; readout electronics; scintillation; silicon compounds; solid scintillation detectors; ultraviolet spectra; yttrium compounds; Ce1 luminescence mechanisms; Ce2 luminescence mechanisms; LSO scintillators; LYSO scintillators; Lu0.6Y1.4Si0.5:Ce; UV-excited luminescent spectra; avalanche photodiode; cerium-doped rare-earth scintillator; crystal intrinsic resolution parameters; decay time; depth-of-interaction; energy resolution; gamma-ray energy; light output; luminescence; lutetium-yttrium oxyorthosilicate; multicrystal PET detectors; nuclear spectroscopic properties; phoswich PET detectors; photomultiplier tube readouts; pulse-shape discrimination; scintillation photons; timing resolution; Avalanche photodiodes; Crystals; Detectors; Energy measurement; Energy resolution; Luminescence; Photomultipliers; Positron emission tomography; Spectroscopy; Timing; Intrinsic resolution; LSO; LYSO; scintillation detector; scintillation processes;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2004.829781
Filename
1310599
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