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Composition and Order-Disorder Transition in the Cu_3Au (001) Surface Layer Investigated with the Use of DAES and DEPES

机译:使用DAES和DEPES研究了Cu_3Au(001)表面层的组成和无序过渡

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摘要

The composition of the first atomic layer of Cu_3Au(001) crystal (about half-and-half copper and gold atoms) changes only slowly even at temperatures much higher than that of the order-disorder transition (T_C = 663 K). Theoretical and experimental works show a general trend of these changes but they differ in quantitative findings. In the present work we used directional elastic peak electron spectroscopy and directional Auger electron spectroscopy to investigate changes of atomic order and composition in the first atomic layers of the Cu_3Au(001) crystal during the sample temperature increase. The height of central maximum in DEPES polar profile of the sample investigated was measured as a function of sample temperature. It was found that the measured dependence is linear, but the slope of this dependence changes abruptly around T_C. This change seems to be connected with disappearance of the atomic order in the first and second atomic layers. In DAES the height of the Auger peaks for copper and gold low energy transitions (MVV and NVV, respectively) were measured in the dN(E)/dE mode as a function of the primary electron beam incidence angle. The composition of the first, second, and third atomic layers was determined by fitting the ratio of calculated DAES polar profiles for copper and gold to such a ratio for the measured profiles.
机译:Cu_3Au(001)晶体的第一原子层(大约一半和一半的铜和金原子)的组成即使在远高于无序转变温度(T_C = 663 K)的温度下也仅缓慢变化。理论和实验工作表明了这些变化的总体趋势,但是在定量结果上却有所不同。在当前的工作中,我们使用了方向弹性峰电子光谱学和方向俄歇电子能谱学来研究样品温度升高过程中Cu_3Au(001)晶体的第一原子层中原子序和组成的变化。测量所研究样品的DEPES极性分布中最大最大值的高度与样品温度的关系。发现测得的相关性是线性的,但是该相关性的斜率在T_C附近突然改变。这种变化似乎与第一和第二原子层中原子序的消失有关。在DAES中,铜和金低能态跃迁(分别为MVV和NVV)的俄歇峰高度是在dN(E)/ dE模式下作为主电子束入射角的函数进行测量的。通过将计算出的铜和金的DAES极性分布图的比率与测量的分布图的比率进行拟合,可以确定第一,第二和第三原子层的组成。

著录项

  • 来源
    《Acta physica polonica A》|2008年|S.115-S.124|共10页
  • 会议地点 Wroclaw(PL)
  • 作者

    L. Rok; S. Mroz;

  • 作者单位

    Institute of Experimental Physics, University of Wroclaw pl. Maxa Borna 9, PL-50-204 Wroclaw, Poland;

    Institute of Experimental Physics, University of Wroclaw pl. Maxa Borna 9, PL-50-204 Wroclaw, Poland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

    phase transitions and critical phenomena;

    机译:相变和临界现象;

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