4.5 Article Proceedings Paper

Development of novel polycrystalline ceramic scintillators

期刊

IEEE TRANSACTIONS ON NUCLEAR SCIENCE
卷 55, 期 3, 页码 1501-1508

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TNS.2008.919259

关键词

ceramic scintillators; LaBr3 : Ce; LSO : Ce; Lu2O3 : Eu

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For several decades most of the efforts to develop new scintillator materials have concentrated on high-light-yield inorganic single-crystals' while polycrystalline ceramic scintillators, since their inception in the early 1980's, have received relatively little attention. Nevertheless, transparent ceramics offer a promising approach to the fabrication of relatively inexpensive scintillators via a simple mechanical compaction and annealing process that eliminates single-crystal growth. Until recently, commonly accepted concepts restricted the polycrystalline ceramic approach to materials exhibiting a cubic crystal structure. Here, we report our results on the development of two novel ceramic scintillators; based on the non-cubic crystalline materials: Lu2SiO5:Ce (LSO:Ce) and LaBr3:Ce. While no evidence for texturing has been found in their ceramic microstructures, our LSO:Ce ceramics exhibit a surprisingly high level of transparency/translucency and very good scintillation characteristics. The LSO:Ce ceramic scintillation reaches a light yield level of about 86% of that of a good LSO:Ce single crystal, and its decay time is even faster than in single crystals. Research on LaBr3:Ce shows that translucent ceramics of the high-light-yield rare-earth halides can also be synthesized. Our LaBr3:Ce ceramics have light yields above 42 000 photons/MeV (i.e., > 70 % of the single-crystal light yield).

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