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Boatner, L.A.; Samuelson, S.
Oak Ridge National Lab., TN (United States). Funding organisation: USDOE, Washington, DC (United States)1997
Oak Ridge National Lab., TN (United States). Funding organisation: USDOE, Washington, DC (United States)1997
AbstractAbstract
[en] In the course of a collaborative research effort between L.A. Boatner of Oak Ridge National Laboratory and Prof. Alex Lempicki of the Department of Chemistry of Boston University, a new highly efficient and very fast scintillator for the detection of gamma-rays was discovered. This new scintillator consists of a single crystal of lutetium orthophosphate (LuPO4) to which a small percentage of trivalent cerium is added as an activator ion. The new lutetium orthophosphate-cerium scintillator was found to be superior in performance to bismuth germanium oxide--a material that is currently widely used as a gamma-ray detector in a variety of medical, scientific, and technical applications. Single crystals of LuPO4 and related rare-earth orthophosphates had been grown for a number of years in the ORNL Solid State Division prior to the discovery of the efficient gamma-ray-scintillation response of LuPO4:Ce. The high-temperature-solvent (flux-growth) method used for the growth of these crystals was capable of producing crystals in sizes that were adequate for research purposes but that were inadequate for commercial-scale production and widespread application. The CRADA between ORNL and Deltronic Crystal Industries of Dover, NJ was undertaken for the purpose of investigating alternate approaches, such as top-seeded-solution growth, to the growth of LuPO4:Ce scintillator crystals in sizes significantly larger than those obtainable through the application of standard flux-growth methods and, therefore, suitable for commercial sales and applications
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18 Jun 1997; 18 p; CONTRACT AC05-96OR22464; CRADA C/ORNL94-0274; ALSO AVAILABLE FROM OSTI AS DE98054274; NTIS; US GOVT. PRINTING OFFICE DEP
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Report
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Progress Report
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