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首页> 外文期刊>Journal of Applied Physics >Crystal Growth on Cathode Sputtered Copper Films by Pairs of Double Spiral Mechanisms Analogous to Frank‐Read Sources
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Crystal Growth on Cathode Sputtered Copper Films by Pairs of Double Spiral Mechanisms Analogous to Frank‐Read Sources

机译:阴极溅射铜膜上的晶体生长,通过类似于Frank-read源的双螺旋机理对

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摘要

Unique crystal growth patterns with closed loops, partly concentric and partly eccentric, with very large step heights between the ledges were observed on microblisters of copper films sputtered onto glass substrate. While the primary cause for the generation of the blisters is explained as due to diffusion‐oil deposits present on the glass substrate and to heat from secondary electrons released by the target producing a high vapor pressure underneath the sputtered film, the generation of the loop patterns on the flat circular surface of the blisters is considered to be caused by alternative slips induced by the inside pressure which affect a triangular part of the {111} surface with two sides of {111} slip planes, one in radial ≪110≫ direction and the other in a ≪110≫ direction along the rim of the blister. Two alternately generated monatomic radial steps on the flat part of the blister produce two superposing spirals of opposite sense each due to one‐half of two Frank‐Read sources and create by repetition of this process the observed patterns with very large step heights of the ledges.
机译:在溅射到玻璃基板上的铜膜微泡上观察到独特的晶体生长模式,该模式具有闭环,部分同心和部分偏心,壁架之间的台阶高度非常大的特征。虽然起泡的主要原因被解释为是由于存在于玻璃基板上的扩散油沉积物,以及由于靶材释放的二次电子产生的热量,从而在溅射膜下方产生了高蒸气压,但回路图案的产生在水泡的平坦圆形表面上的气泡被认为是由内部压力引起的交替滑动引起的,该交替滑动影响{111}滑动面的两个侧面,其中{111}滑动面的两个侧面,一个沿径向≪110≫方向,并且另一个沿水泡边缘沿≪110方向移动。水泡平坦部分上的两个交替生成的单原子径向台阶产生两个方向相反的重叠螺旋,每个螺旋都是由于两个Frank-Read源的一半而产生的,并通过重复此过程来创建具有很大台阶高度的壁架的观察模式。

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  • 来源
    《Journal of Applied Physics 》 |1958年第10期| 共8页
  • 作者

    Henschke Erich B.;

  • 作者单位

    Electronic Components Laboratory, Wright Air Development Center, Air Research and Development Command, United States Air Force, Dayton, Ohio;

  • 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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