DocumentCode :
3847028
Title :
Timing Resolution and Decay Time of LSO Crystals Co-Doped With Calcium
Author :
Tomasz Szczesniak;Marek Moszynski;Agnieszka Syntfeld-Kazuch;Lukasz Swiderski;Merry A. Spurrier Koschan;Chuck L. Melcher
Author_Institution :
The So?tan Institute for Nuclear Studies, Otwock-?wierk, Poland
Volume :
57
Issue :
3
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1329
Lastpage :
1334
Abstract :
A comparative study of five 5 × 5 × 5 mm3 LSO:Ce samples with different co-dopings of calcium, from 0 to 0.4% is reported. All the results are compared to those obtained with selected 10 × 10 × 5 mm3 LSO crystal, tested in previous studies. The influence of Ca co-dopant on scintillator parameters was studied using a Photonis XP20D0 fast timing photomultiplier. The tests included measurements of light output in terms of number of photoelectrons, measurements of time resolution in coincidence experiments with annihilation quanta from a 22Na gamma source, and decay time constant calculations on the basis of timing spectra obtained using the Bollinger-Thomas single photon method. Also energy resolution for 662 keV from 137Cs gamma source is mentioned at the end of the paper. The results showed the significant influence of the Ca co-dopant on the properties of the LSO scintillators. For low Ca concentrations of 0.1%, photoelectron number and energy resolution were improved up to 7800 phe/MeV and 7.3 % respectively. On the other hand the shortest decay time constants were obtained for higher concentrations of 0.3% and 0.4% of Ca giving values equal to about 30 ns. The time resolution improvement was similar for all the samples and calculated values for a single detector were equal to about 140 ps.
Keywords :
"Timing","Calcium","Photonic crystals","Energy resolution","Photomultipliers","Time measurement","Atomic measurements","Testing","Detectors","Positron emission tomography"
Journal_Title :
IEEE Transactions on Nuclear Science
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2009.2035620
Filename :
5485092
Link To Document :
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