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Titlebook: Shaped Crystals; Growth by Micro-Pull Tsuguo Fukuda,Valery I. Chani Book 2007 Springer-Verlag Berlin Heidelberg 2007 Fiber.Melt growth.Shap

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978-3-642-09039-4Springer-Verlag Berlin Heidelberg 2007
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Mixed Crystals: ,-PD vs. Czochralski MethodThe purpose of this chapter is to demonstrate, through a case study approach, how beneficial the .-PD method can be for growing mixed crystals.
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Eutectic Fibers with Self-Organized StructuresThe growth of self-organized structures by the micro-pulling-down method is described. This type of growth is based on the directional solidification of eutectics. Potential applications of these structures in modern photonics, in fields such as photonic crystals and metamaterials, are discussed.
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Scintillating Crystals: Ce3+:YAlO3 and Yb3+:Lu3Al5O12The growth and scintillation performance of single-crystal fibers of both Ce.:YAlO. and Yb.:Lu.Al.O. are described. The results demonstrate the ability of the micro-pulling-down technique to grow scintillator crystals in shapes suitable for device applications.
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High-Melting Rare-Earth Sesquioxides: Y2O3, Lu2O3, and Sc2O3In this chapter the application of the .-PD method to the crystal growth of refractory rare-earth sesquioxides with melting temperatures of over 2400°C is demonstrated and discussed.
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Equipment Configurationr improving the commercial efficiency of this technology, some cost-effective technological innovations, and crystal yield and quality are discussed. Real growth process performance is illustrated using examples of crystals grown with a view to their industrialization.
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