DocumentCode :
3469582
Title :
Scintillation properties of LaCl3:Ce3+ crystals: fast, efficient and high-energy-resolution scintillators
Author :
van Loef, E.V.D. ; Dorenbos, P. ; van Eijk, C.W.E. ; Kramer, K. ; Gudel, H.U.
Author_Institution :
Interfaculty Reactor Inst., Delft Univ. of Technol., Netherlands
Volume :
1
fYear :
2000
fDate :
2000
Firstpage :
11475
Abstract :
The scintillation properties of LaCl3 doped with different Ce3+ concentrations studied by means of optical, X-ray and γ-ray excitation are presented. Under optical and γ-ray excitation, Ce3+ emission is observed peaking at 330 and 352 nm. For LaCl3 doped with 2%, 4%, 10%, 30% Ce3+ and pure CeCl3, we measured a light yield of 46000±3000 photons per MeV (Ph/MeV) of absorbed γ-ray energy. The scintillation decay curve can be described by three decay components: a short (τ=25 ns), intermediate (τ=200-900 ns) and long (τ=0.8-14 μs) component. The contribution of the short decay component to the total light yield increases with Ce3+ concentration: ranging from 10% for LaCl3: 2% Ce3+ to 69% for pure CeCl3. An energy resolution (FWHM over peak position) for the 662 keV full energy peak of, respectively 3.5±0.4%, 3.5±0.4%, 3.1±0.3%, 3.3±0.3% and 3.4±0.3% was observed for LaCl3: 2%, 4%, 10%, 30% Ce 3+ and pure CeCl3
Keywords :
cerium; lanthanum compounds; photoluminescence; scintillation; γ-ray excitation; Ce3+ concentration; LaCl3:Ce; LaCl3:Ce3+; X-ray excitation; energy resolution; light yield; optical excitation; scintillation; scintillation decay curve; total light yield; Cerium; Crystallization; Crystals; Energy measurement; Energy resolution; Inorganic materials; Luminescence; Stimulated emission; Temperature dependence; Timing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record, 2000 IEEE
Conference_Location :
Lyon
ISSN :
1082-3654
Print_ISBN :
0-7803-6503-8
Type :
conf
DOI :
10.1109/NSSMIC.2000.949114
Filename :
949114
Link To Document :
بازگشت