Dynamics and control of meniscus height in ribbon growth by the EFG method
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference7 articles.
1. Modern Control Engineering;Ogata,1970
2. The direction of growth of the surface of a crystal in contact with its melt
3. Thermal sensitivity and stability of EFG silicon ribbon growth
4. The edge-defined film-fed growth of controlled shape crystals
5. The growth of shaped crystals from the melt
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1. Creation of a stable and convex static meniscus, which is appropriate for the growth of a single crystal ribbon with specified half thickness;Materials Science in Semiconductor Processing;2010-12
2. Mathematical and Numerical Analysis of Capillarity Problems and Processes;Crystal Growth Processes Based on Capillarity;2010-04-20
3. Pressure difference across the free surface of a stable static meniscus in a possible Ge1−XSiX ribbon growth by edge-defined film-fed growth (E.F.G.) technique;Computational Materials Science;2009-02
4. The effect of the pressure difference across the free surface on the static meniscus shape in the case of ribbon growth by edge-defined film-fed growth (E.F.G.) method;Journal of Crystal Growth;2008-12
5. A mathematical model of the edge-defined film-fed growth process;Journal of Engineering Mathematics;2000
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