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- W2006164019 abstract "Quantitative comparisons are made between optimum growth rates determined experimentally for growth of homogeneous alloy crystals in the Ge-Si, Bi-Sb, and Se-Te systems and the critical growth rates calculated on the basis of the Tiller constitutional supercooling theory and on the Mullins-Sekerka theory of interface stability. The effect of thermal diffusion upon critical growth rate is also calculated. The critical growth rates calculated using the Mullins-Sekerka theory, with the effect of thermal diffusion also included, exceed those of the Tiller theory by amounts ranging from 26 to 85%, depending upon alloy system and composition. This relatively small difference, within a factor of two, could be due to uncertainty in the values of thermophysical parameters used in the present calculations. Accordingly, the simpler Tiller theory can be used, as a useful first approximation, to predict conditions for homogeneous growth." @default.
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- W2006164019 date "1974-06-01" @default.
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- W2006164019 title "A survey of interface stability criteria in the elemental alloy systems: Ge-Si, Bi-Sb, And Se-Te" @default.
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- W2006164019 doi "https://doi.org/10.1016/0022-0248(74)90172-9" @default.
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