Journal of Applied Physics · 2000 · 237 citations · 5 references
Materials ScienceOptical MaterialsEngineeringPhotoluminescenceOptical PropertiesCerium-doped Lu1.8y0.2sio5Crystal Growth TechnologyApplied PhysicsLuminescent GlassOptical AbsorptionOptical CeramicChemistryCzochralski GrowthLuminescence PropertyCrystallographyOptoelectronics
Czochralski growth of cerium-doped Lu1.8Y0.2SiO5 (LYSO) from a 90/10 solution of Lu2SiO5 (LSO) and Y2SiO5 (YSO) is demonstrated. The alloyed scintillator retains the favorable growth properties of YSO and the desirable physical and optical scintillator properties of LSO. Radioluminescence, thermally stimulated luminescence, optical absorption, and lifetime measurements confirm the equivalence of LYSO and LSO optical properties. Advantages of LYSO Czochralski growth relative to LSO include reduced melting point, less propensity for formation of crystalline inclusions, lower cost of starting material, and easier incorporation of cerium into the host lattice. This material offers an attractive alternative to LSO for scintillator applications.
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UV and gamma-ray excited luminescence of cerium-doped rare-earth oxyorthosilicates
Hideo Suzuki, T.A. Tombrello, Charles L. Melcher et al. · Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 1992 · 261 citations
Rare Earth Mineral, Inorganic Chemistry, Gamma-ray Excited Luminescence +3