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首页> 外文期刊>Journal of Crystal Growth >Thermosolutal Convection And Solute Segregation During The Vertical Bridgman Growth Of Hg_(1-x)cd_xte Single Crystals
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Thermosolutal Convection And Solute Segregation During The Vertical Bridgman Growth Of Hg_(1-x)cd_xte Single Crystals

机译:Hg_(1-x)cd_xte单晶在垂直Bridgman生长过程中的热溶对流和溶质偏析

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摘要

The mechanism for thermosolutal convection and the coupling effects of flow, temperature and solute fields during the vertical Bridgman growth of Hg_(1-x)Cd_xTe single crystals have been numerically analyzed. The calculations take into account the thermophysical properties and their dependence on temperature and composition. The results show that there are two main thermal convection cells in the melt caused by two temperature gradients during the growth of Hg_(1-x)Cd_xTe single crystals. The stabilizing axial solute gradient in the melt will significantly damp the thermal convection cells when the absolute value of the solute Rayleigh number is close to the value of the thermal Rayleigh number. When there is a large solute gradient in the melt, the thermosolutal convection will become unstable, and the upper flow cell will evolve into a two-cell flow pattern. During the growth of Hg_(1-x)Cd_xTe single crystals, the radial solute segregation in the melt develops non-monotonically with two minima values. Thus, the methods that solely aim at either damping or enhancing the thermosolutal convection are not always able to improve the radial solute segregation.
机译:数值分析了Hg_(1-x)Cd_xTe单晶在垂直布里奇曼生长过程中的热固对流机理以及流场,温度场和溶质场的耦合效应。该计算考虑了热物理性质及其对温度和组成的依赖性。结果表明,在Hg_(1-x)Cd_xTe单晶的生长过程中,由两个温度梯度引起的熔体中存在两个主要的热对流单元。当溶质瑞利数的绝对值接近热瑞利数的值时,熔体中稳定的轴向溶质梯度将显着衰减热对流单元。当熔体中存在较大的溶质梯度时,热固对流将变得不稳定,并且上流动池将演变为两室流动模式。在Hg_(1-x)Cd_xTe单晶的生长过程中,熔体中的径向溶质偏析非单调发展,具有两个最小值。因此,仅针对阻尼或增强热固对流的方法并不总是能够改善径向溶质的偏析。

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