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首页> 外文期刊>Journal of Crystal Growth >Three-dimensional simulation of facet formation and the coupled heat flow and segregation in Bridgman growth of oxide crystals
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Three-dimensional simulation of facet formation and the coupled heat flow and segregation in Bridgman growth of oxide crystals

机译:氧化物晶体的布里奇曼生长中小面形成以及耦合热流和偏析的三维模拟

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摘要

Three-dimensional (3D) simulation of facet formation and its coupled heat flow and segregation in the Bridgman growth of oxide crystals is presented. The growth of YAG crystals in the [111] direction, with {211} facets, is taken as an example to illustrate the finite volume treatment of the interfacial kinetics involving supercooling and crystallographic constrains. The simulation successfully reveals experimental observations, and the growth conditions for reducing faceting are consistent with growth experience in general.
机译:提出了在晶体晶体的布里奇曼生长中刻面形成及其耦合的热流和偏析的三维(3D)模拟。以具有{211}晶面的[111]方向上的YAG晶体生长为例,以说明涉及过冷和晶体学约束的界面动力学的有限体积处理。该模拟成功地揭示了实验观察结果,并且减少刻面的生长条件通常与生长经验一致。

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