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首页> 外文期刊>Journal of Electronic Materials >Investigation of Artificial Forced Cooling in the Bridgman Crystal Growth of Cadmium Zinc Telluride
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Investigation of Artificial Forced Cooling in the Bridgman Crystal Growth of Cadmium Zinc Telluride

机译:碲化镉锌布里奇曼晶体生长中的人工强制冷却研究

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摘要

The effects of artificial forced cooling on the solid–liquid interface and on solute segregation were investigated by modeling the vertical Bridgman method for the single-crystal growth of CdZnTe, taking into consideration effects such as increasing the axial outward heat flux from the crucible bottom, the radial outward heat flux from the crucible wall, and the carbon film thickness on the crucible inner wall. Axial artificially forced cooling noticeably increases convection and the temperature gradient in the melt next to the solid–liquid interface, and substantially reduces interface concavity at the initial solidification stage. Interface concavity increases a little when the solidification proceeds further, however. Axial artificially forced cooling reduces radial solute segregation of the initial segment of the grown crystal and slightly increases the solute iso-concentration segment. Radial artificially forced cooling enhances melt convection substantially, affects solid–liquid interface concavity only slightly, and hardly affects solute segregation in the grown crystal. Doubling the carbon film thickness weakens convection of the melt in front of the interface, substantially increases interface concavity, and hardly affects solute segregation in the grown crystal.
机译:通过对CdZnTe单晶生长的垂直Bridgman方法进行建模,并考虑了诸如增加坩埚底部的轴向向外热通量等影响,研究了人工强制冷却对固液界面和溶质偏析的影响。坩埚壁的径向向外热通量,以及坩埚内壁的碳膜厚度。轴向人工强制冷却显着增加了固液界面附近熔体的对流和温度梯度,并在初始凝固阶段显着降低了界面凹度。但是,当固化进一步进行时,界面凹度会稍微增加。轴向人工冷却降低了生长晶体初始段的径向溶质偏析,并稍微增加了溶质等浓度段。径向人工强制冷却大大提高了熔体对流,仅轻微影响了固液界面的凹度,几乎不影响生长晶体中的溶质偏析。碳膜厚度加倍会使界面前的熔体对流减弱,大大增加界面的凹度,并且几乎不影响生长晶体中的溶质偏析。

著录项

  • 来源
    《Journal of Electronic Materials》 |2007年第8期|971-980|共10页
  • 作者单位

    School of Material Science and Engineering Shandong University of Technology Zibo Shandong 255091 P.R. China;

    School of Material Science and Engineering Shandong University of Technology Zibo Shandong 255091 P.R. China;

    School of Material Science and Engineering Shandong University of Technology Zibo Shandong 255091 P.R. China;

    School of Material Science and Engineering Shandong University of Technology Zibo Shandong 255091 P.R. China;

    Microphysics Laboratory Department of Physics University of Illinois at Chicago Chicago IL 60607-7059 USA;

    Microphysics Laboratory Department of Physics University of Illinois at Chicago Chicago IL 60607-7059 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crystal growth; heat transfer; solid–liquid interface; solute segregation; CdZnTe;

    机译:晶体生长;传热;固液界面;溶质偏析;CdZnTe;

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