2009
DOI: 10.1016/j.ijheatmasstransfer.2009.02.029
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Suppression of melt convection in a proposed Bridgman crystal growth system

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Cited by 12 publications
(3 citation statements)
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“…One can mention, for instance, the oscillatory Bridgman technique [75,76], tilting the crucible in the vertical Bridgman growth [77], traveling liquidus-zone method [78], modified horizontal traveling heater method [79], Bridgman growth with the cooling of the top melt [80], etc.…”
Section: Last Notesmentioning
confidence: 99%
“…One can mention, for instance, the oscillatory Bridgman technique [75,76], tilting the crucible in the vertical Bridgman growth [77], traveling liquidus-zone method [78], modified horizontal traveling heater method [79], Bridgman growth with the cooling of the top melt [80], etc.…”
Section: Last Notesmentioning
confidence: 99%
“…((1a) and (1b)) and ((2a) and (2b)), respectively, with melting point temperatures T M,InSb ¼ 527 1 C and T M,GaSb ¼ 712 1 C [1] and enthalpies of fusion DH f ,InSb ¼ 11:64 kcal=mol (48,720 kJ/kmol) [13] and DH f ,GaSb ¼ 15:46 kcal=mol (64,740 kJ/kmol) [10,14]. Then, for a specific alloy, the first liquidus mole fraction of InSb (x l InSb ) is specified by the relative masses of the components.…”
Section: Numerical Modelmentioning
confidence: 99%
“…For materials with low Prandtl and low Grashof numbers, the convection is weak [22]. For the materials with high Prandtl numbers in their melt status and the growth system with high Grashof number, the temperature field and the growth interface are significantly influenced by melt flow, resulting in the complicated flow pattern and curved interface shape.…”
Section: Introductionmentioning
confidence: 99%