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Double in-plane alignment in biaxially textured thin films

机译:双轴纹理薄膜中的双重面内对齐

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摘要

The scientific interest and technological relevance of biaxially textured polycrystalline thin films stem from their microstructure that resembles that of single crystals. To explain the origin and predict the type of biaxial texture in off-normally deposited films, Mahieu et al. have developed an analytical model [S. Mahieu et al., Thin Solid Films 515, 1229 (2006)]. For certain materials, this model predicts the occurrence of a double in-plane alignment, however, experimentally only a single in-plane alignment has been observed and the reason for this discrepancy is still unknown. The model calculates the resulting in-plane alignment by considering the growth of faceted grains with an out-of-plane orientation that corresponds to the predominant film out-of-plane texture. This approach overlooks the fact that in vapor condensation experiments where growth kinetics is limited and only surface diffusion is active, out-of-plane orientation selection is random during grain nucleation and happens only upon grain impingement. Here, we compile and implement an experiment that is consistent with the key assumptions set forth by the in-plane orientation selection model by Mahieu et al.; a Cr film is grown off-normally on a fiber textured Ti epilayer to pre-determine the out-of-plane orientation and only allow for competitive growth with respect to the in-plane alignment. Our results show unambiguously a biaxially textured Cr (110) film that possesses a double in-plane alignment, in agreement with predictions of the in-plane selection model. Thus, a long standing discrepancy in the literature is resolved, paving the way towards more accurate theoretical descriptions and hence knowledge-based control of microstructure evolution in biaxially textured thin films.
机译:双轴织构多晶薄膜的科学兴趣和技术相关性源于其类似于单晶的微观结构。为了解释成因并预测非正常沉积膜中双轴织构的类型,Mahieu等人。已经开发了一个分析模型[S. Mahieu等人,Thin Solid Films 515,1229(2006)。对于某些材料,此模型可预测会发生两次面内对齐,但是,实验上仅观察到了一次面内对齐,而这种差异的原因仍然未知。该模型通过考虑面外取向与主要薄膜面外纹理相对应的刻面晶粒的生长来计算所得面内对齐。这种方法忽略了以下事实:在蒸汽凝结实验中,生长动力学受到限制并且仅表面扩散起作用,在晶核形成过程中,面外取向选择是随机的,并且仅在冲击晶粒时发生。在这里,我们编译并实施了一个与Mahieu等人的面内定向选择模型提出的关键假设相一致的实验; Cr膜通常在纤维织构的Ti外延层上偏离生长,以预先确定平面外取向,并且仅允许相对于平面内对齐的竞争性增长。我们的结果清楚地表明,双轴织构Cr(110)膜具有双重的面内取向,与面内选择模型的预测相符。因此,解决了长期以来文献中的差异,为更准确的理论描述和因此基于知识的双轴纹理薄膜微观结构演变的控制铺平了道路。

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  • 来源
    《Applied Physics Letters 》 |2014年第23期| 233113.1-233113.5| 共5页
  • 作者单位

    Nanoscale Engineering Division, Department of Physics, Chemistry and Biology, Linkoeping University,SE-581 83 Linkoeping, Sweden;

    Sandvik Coromant AB, SE-126 80 Stockholm, Sweden;

    Plasma and Coatings Physics Division, Department of Physics, Chemistry and Biology, Linkoeping University,SE-581 83 Linkoeping, Sweden;

    Nanoscale Engineering Division, Department of Physics, Chemistry and Biology, Linkoeping University,SE-581 83 Linkoeping, Sweden;

  • 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
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