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Composition Engineering in Cerium-Doped (Lu,Gd)<sub>3</sub>(Ga,Al)<sub>5</sub>O<sub>12</sub> Single-Crystal Scintillators

Crystal Growth & Design · 2011 · Vol. 11(10) · pp. 4484–4490
Kei KamadaTakanori EndoKousuke TsutumiTakayuki YanagidaYutaka FujimotoAkihiro FukaboriAkira YoshikawaJan PejchalM. Nikl

Abstract

The Ce-doped (LuyGd1_x)3(Gay,Al1_y)5O12 single crystals were grown by the micropulling down method. Their structure and chemical composition were checked by X-ray diffraction (XRD) and electron probe microanalysis (EPMA) techniques. Optical, luminescent, and scintillation characteristics were measured by the methods of time-resolved luminescence spectroscopy, including the light yield and scintillation decay. Balanced Gd and Ga admixture into the Lu3Al5O12 structure provided an excellent scintillator where the effect of shallow traps was suppressed, the spectrally corrected light yield value exceeded 40 000 photons/MeV, and scintillation decay was dominated by a 53 ns decay time value which is close to that of Ce3+ photoluminescence decay.

Radiation Detection and Scintillator TechnologiesLuminescence Properties of Advanced MaterialsAtomic and Subatomic Physics ResearchScintillatorScintillationPhotoluminescenceCeriumLuminescenceAnalytical Chemistry (journal)Crystal (programming language)Materials scienceSingle crystalElectron microprobe
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534
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35
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References
Temperature Quenching of Yellow Ce<sup>3+</sup> Luminescence in YAG:Ce
Chemistry of Materials · 2009 · 1,354 citations
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