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Influence of internal radiation on the heat transfer during growth of YAG single crystals by the Czochralski method

✍ Scribed by Z. Galazka; D. Schwabe; H. Wilke


Publisher
John Wiley and Sons
Year
2003
Tongue
English
Weight
525 KB
Volume
38
Category
Article
ISSN
0232-1300

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✦ Synopsis


Abstract

Heat and mass transfer taking place during growth of Y~3~Al~5~O~12~ (YAG) crystals by the Czochralski method, including inner radiation, is analyzed numerically using a Finite Element Method. For inner radiative heat transfer through the crystal the band approximation model and real transmission characteristics, measured from obtained crystals, are used. The results reveal significant differences in temperature and melt flow for YAG crystals doped with different dopands influencing the optical properties of the crystals. When radiative heat transport through the crystal is taken into account the melt‐crystal interface shape is different from that when the radiative transport is not included. Its deflection remains constant over a wide range of crystal rotation rates until it finally rapidly changes in a narrow range of rotation rates. (Β© 2003 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)


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