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On the effects of furnace gradients on interface shape during the growth of cadmium zinc telluride in EDG furnaces

机译:EDG炉中碲化镉锌生长过程中炉梯度对界面形状的影响

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Numerical simulations are performed to assess cadmium zinc telluride (CZT) interface shape dependency on thermal gradients in electrodynamic gradient (EDG) furnaces. Results explain how larger furnace gradients in these systems tend to flatten the shape of the solid-liquid interface. Convection dominates heat transfer through the melt, and mixing acts to radially homogenize the melt temperature field. These features do not significantly change with gradient conditions. In contrast, changing the rate of heat conduction through the solid, notably via changes to the furnace profile adjacent to the crystal, have an overriding influence on the interface shape. Increased gradients increase the ability for latent heat to be transported axially through the crystal and flatten the interface; however, the sensitivity of the shape of the interface to details of the furnace heating profile decreases as overall gradients increase. The engineering of the interface shape in these systems via subtle control of the furnace should be possible, but rational design changes will require the insight obtained froth predictive models. (c) 2006 Elsevier B.V. All rights reserved.
机译:进行了数值模拟,以评估碲化镉锌(CZT)界面形状对电热梯度(EDG)炉中热梯度的依赖性。结果解释了这些系统中较大的炉子梯度如何趋于使固液界面的形状变平。对流控制着通过熔体的热传递,而混合则使径向的熔体温度场均匀化。这些功能不会随梯度条件而显着变化。相反,改变固体的导热率,特别是通过改变与晶体相邻的熔炉轮廓,会对界面形状产生重大影响。梯度的增加增加了潜热通过晶体轴向传递并使界面变平的能力。然而,随着整体梯度的增加,界面形状对炉子加热曲线细节的敏感性降低。通过对熔炉的细微控制,可以在这些系统中进行界面形状的工程设计,但是合理的设计变更将需要洞察获得的泡沫预测模型。 (c)2006 Elsevier B.V.保留所有权利。

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