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Buoyant and rotational flows during ACRT vertical bridgman crystal growth

机译:ACRT垂直布里奇曼晶体生长过程中的浮力和旋转流

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Axisymmetric, time-dependent simulations of the high-pressure vertical Bridgman growth of large-diameter cadmium zinc telluride are performed to study the effect of accelerated crucible rotation (ACRT) on crystal growth dynamics. The model includes details of heat transfer, melt convection, solid-liquid interface shape, and dilute zinc segregation. Application of ACRT greatly improves mixing in the melt, but causes an overall increased deflection of the solid-liquid interface. The flow exhibits a Taylor-Gortler instability at the crucible side--wall, which further enhances melt mixing.
机译:对大直径碲化镉锌的高压垂直Bridgman生长进行轴对称,随时间变化的模拟,以研究加速坩埚旋转(ACRT)对晶体生长动力学的影响。该模型包括传热,熔体对流,固液界面形状和稀锌偏析的详细信息。 ACRT的应用极大地改善了熔体中的混合,但是却导致了固液界面的整体挠度的增加。流动在坩埚侧壁显示出泰勒-戈特勒不稳定性,这进一步增强了熔体混合。

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