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ELABORATION ET PROPRIETES DE LUMINESCENCE ET DE SCINTILLATION DE MATERIAUX DENSES A BASE DE LUTECIUM DOPES AUX IONS CERIUM ET PRASEODYME = ELABORATION, LUMINESCENCE AND SCINTILLATION PROPERTIES OF LUTETIUM BASED DENSE MATERIALS DOPED WITH CERIUM AND PRASEODYMIUM IONSZhang, Liyuan; Pedrini, Christian.1998, 262 p.Thesis

Compounds with the YbFe2O4 structure type : Frustrated magnetism and spin-glass behaviorCAVA, R. J; RAMIREZ, A. P; HUANG, Q et al.Journal of solid state chemistry (Print). 1998, Vol 140, Num 2, pp 337-344, issn 0022-4596Article

LuAP/LuyAP single crystals for PET scanners: effects of composition and growth historyPETROSYAN, A. G; OVANESYAN, K. L; SHIRINYAN, G. O et al.Optical materials (Amsterdam). 2003, Vol 24, Num 1-2, pp 259-265, issn 0925-3467, 7 p.Conference Paper

Shaped single crystal growth and scintillating application of Yb:(Gd, Lu)3(Ga, Al)5O12 solid solutionsNOVOSSELOV, A; YOSHIKAWA, A; OGINO, H et al.Optical materials (Amsterdam). 2004, Vol 26, Num 4, pp 541-543, issn 0925-3467, 3 p.Conference Paper

Luminescence properties of efficient X-ray phosphors of YBa3B9O18, LuBa3(BO3)3, α-YBa3(BO3)3 and LuBO3CHENGJUN DUAN; JUNLIN YUAN; JINGTAI ZHAO et al.Journal of solid state chemistry (Print). 2005, Vol 178, Num 12, pp 3698-3702, issn 0022-4596, 5 p.Article

As-grown colour centres and radiation damage in Ce3+-doped dense rare-earth orthoaluminate scintillatorsPETROSYAN, A. G; SHIRINYAN, G. O; OVANESYAN, K. L et al.New trends in atomic and molecular spectroscopy. SPIE proceedings series. 2000, pp 114-120, isbn 0-8194-3689-5Book Chapter

Scintillation mechanisms in rare earth orthophosphatesWOJTOWICZ, A. J; WISNIEWSKI, D; LEMPICKI, A et al.Radiation effects and defects in solids. 1995, Vol 135, Num 1-4, pp 305-310, issn 1042-0150Conference Paper

Synthesis and structure of lutetium germanate Lu6Ge4O17PALKINA, K. K; KUZ'MINA, N. E; LYSANOVA, G. V et al.Russian journal of inorganic chemistry. 1994, Vol 39, Num 2, pp 172-175, issn 0036-0236Article

Crystal structure of lutetium disilicate, Lu2Si2O7SOETEBIER, F; URLAND, W.Zeitschrift für Kristallographie. New crystal structures. 2002, Vol 217, Num 1, issn 1433-7266, p. 22Article

Enhanced negative thermal expansion in Lu2W3O12FORSTER, P. M; YOKOCHI, A; SLEIGHT, A. W et al.Journal of solid state chemistry (Print). 1998, Vol 140, Num 1, pp 157-158, issn 0022-4596Article

Superconductivity and valence states of Ce, Pr and Tb in bulk Lu1-xMxBa2Cu3O7-δ (M=Ce, Pr and Tb) systemsGNANASEKAR, K. I; TAMHANE, A. S; PINTO, R et al.Physica. C. Superconductivity. 1994, Vol 219, Num 1-2, pp 183-190, issn 0921-4534Article

Films minces supraconducteurs à haute température critique: Modélisations électriques et thermiques appliquées à l'élaboration et à la conception de bolomètres = High critical temperature superconductors thin films: Electrical and thermal modeling applied to the elaboration and the design of bolometersDepond, Jean-Michel; Kreisler, A.1994, 166 p.Thesis

Growth and properties of Ce3+-doped Lux(RE3+)1-xAP scintillatorsMARES, Jiri A; NIKL, Martin; MALY, Petr et al.Optical materials (Amsterdam). 2002, Vol 19, Num 1, pp 117-122, issn 0925-3467Conference Paper

The Lu2O2-Al2O3 system : Relationships for equilibrium-phase and supercooled statesPETROSYAN, A. G; POPOVA, V. F; GUSAROV, V. V et al.Journal of crystal growth. 2006, Vol 293, Num 1, pp 74-77, issn 0022-0248, 4 p.Article

Photo- and cathodoluminescence properties of Lu2O3:Tb3+ nanocrystallites embedded in TiO2 films on silicon and quartz substratesNYK, M; HRENIAK, D; STREK, W et al.Optical materials (Amsterdam). 2004, Vol 26, Num 2, pp 129-132, issn 0925-3467, 4 p.Conference Paper

Concentration dependence of energy transfer between Eu3+ ions occupying two symmetry sites in Lu2O3ZYCH, E.Journal of physics. Condensed matter (Print). 2002, Vol 14, Num 22, pp 5637-5650, issn 0953-8984Article

Analysis of Eu3+ emission from different sites in Lu2O3ZYCH, E; KARBOWIAK, M; DOMAGALA, K et al.Journal of alloys and compounds. 2002, Vol 341, Num 1-2, pp 381-384, issn 0925-8388Conference Paper

On the reasons for low luminescence efficiency in combustion-made Lu2O3:TbZYCH, E.Optical materials (Amsterdam). 2001, Vol 16, Num 4, pp 445-452, issn 0925-3467Article

Photoconductivity and delocalization in rare earth activated insulatorsYEN, W. M.Journal of luminescence. 1999, Vol 83-84, pp 399-404, issn 0022-2313Conference Paper

Positron emission mammography using Pr:LuAG scintillator ― Fusion of optical material study and systems engineeringYOSHIKAWA, Akira; YANAGIDA, Takayuki; SASAKI, Katsuhisa et al.Optical materials (Amsterdam). 2010, Vol 32, Num 10, pp 1294-1297, issn 0925-3467, 4 p.Conference Paper

Scintillation properties of LuAG:Ce single crystalline films grown by LPE methodPRUSA, Petr; MARES, Jiri A; NIKL, Martin et al.Optical materials (Amsterdam). 2010, Vol 32, Num 10, pp 1360-1363, issn 0925-3467, 4 p.Conference Paper

Phosphor materials under high-density XUV FEL excitation: mechanisms of luminescence quenchingVIELHAUER, Sebastian; BABIN, Vladimir; DE GRAZIA, Marco et al.Proceedings of SPIE, the International Society for Optical Engineering. 2009, Vol 7361, issn 0277-786X, isbn 978-0-8194-7635-7 0-8194-7635-8, 1Vol, 73610R.1-73610R.9Conference Paper

Paramagnetic impurity defects in LuAG and LuAG: Sc single crystalsLAGUTA, Valentin V; SLIPENYUK, Alla M; GLINCHUK, Maya D et al.Optical materials (Amsterdam). 2007, Vol 30, Num 1, pp 79-81, issn 0925-3467, 3 p.Conference Paper

Trivalent ion conduction of the Sc2(WO4)3-Lu2(WO4)3 systemKOBAYASHI, Y; EGAWA, T; TAMURA, S et al.Solid state ionics. 1999, Vol 118, Num 3-4, pp 325-330, issn 0167-2738Article

Optical and scintillation properties of large LuAI03:Ce3+ crystalsDUJARDIN, C; PEDRINI, C; TALLOUF, F et al.Journal of physics. Condensed matter (Print). 1998, Vol 10, Num 13, pp 3061-3073, issn 0953-8984Article

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