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Application of rotating magnetic fields in Czochralski crystal growth
Authors:K.-H.
Affiliation:

aInstitut für Allgemeine Metallurgie, Technische Universität Clausthal, Robert Koch Str. 42, 38678 Clausthal-Zellerfeld, Germany

Abstract:The physical principles of electromagnetic stirring with a rotating magnetic field are explained and a mathematical model to calculate the electromagnetic volume force, the fluid flow and the transport of heat and solutes is outlined. For the electromagnetic volume force and for the order of magnitude of the flow velocities approximative analytical expressions are given. A high flexibility in configuring the volume force in order to achieve a desired flow distribution is obtained by multi-frequency stirring that is by superposition of two or several magnetic fields with different frequencies and/or sense of rotation. Results of experimental investigation and mathematical simulation of multi-frequency stirring are given. Numerical simulation of the fluid flow, the temperature and the oxygen distribution in a Czochralski process crucible was performed including the effect of single mode and multi-frequency stirring. The results indicate that electromagnetic stirring should offer large potentials for the optimization of the flow configuration in a Czochralski process crucible. Finally examples from literature of practical application of rotating magnetic fields in crystal growth are presented.
Keywords:Czochralski process   fluid flow   rotating magnetic field   electromagnetic stirring   multi-frequency stirring   mathematical modeling
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