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Theoretical studies of Pb on Si(111) and Si(100), global search for H-passivated Si nanowires, and construction of highly localized quasiatomic minimal basis orbitals for Mo

机译:Si(111)和Si(100)上Pb的理论研究,H钝化的Si纳米线的整体搜索以及Mo的高度局部化准原子最小基轨道的构造

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摘要

By first-principles calculations, we have performed extensive studies for the structures of Pb on Si(111) at low coverage. Relative stabilities between these low coverage phases were compared and comparison with scanning tunneling microscopy (STM) experiments were made. By tight-binding molecular dynamics simulations, we discovered that there are significant atomic rearrangements at the Pb/Si interface of the Pb islands on Si(111), which can lead to a change in the electronic structures of ultra-thin Pb films predicted by quantum size effect. In particular, the electronic behavior of nano-scale Moire pattern observed in STM for ultra-thin Pb films on Si(111) support our results. By first-principles calculations, the energetics and dynamical rocking behavior of Pb and Sn dimers on Si(100) were studied. We concluded that Pb and Sn dimers and dimer chains on Si(100) observed in STM experiments are composed of pure metal dimers instead of mixed Pb-Si or Sn-Si dimers due to a lack of favorable intermixing channel. The diffusion of Pb adatoms and dimers on Si(100) surface were studied as well. A construction of a minimal basis set of highly localized quasiatomic orbitals (QUAMBOs) for Mo were described. By using the first-principles eigenstates as input, the orbitals are constructed to look similar to the free-atomic orbitals, but are able to deform to adapt to the bonding environment and reproduce the occupied-states electronic properties of the system from which the orbitals are derived. The QUAMBOs can be used to analyze the chemical bonding for the self-consistent eigenstates obtained from first-principles calculations. We also performed a global optimization study on the structure of [110]-oriented H-passivated Si nanowires using a genetic algorithm. We found that the structures of H-passivated Si nanowires are bulk-like down to sub-nanometer wire dimensions. And structural motifs of \u22magic\u22 nanowires were recognized with chain-like and hexagonal-shaped cross sections. The first type of magic nanowires has not been experimentally observed yet due to its small diameter, but our model for Si nanowires with hexagonal cross section has consistent dimensions and simulated STM images with the smallest nanowires observed experimentally.
机译:通过第一性原理计算,我们对低覆盖率Si(111)上Pb的结构进行了广泛的研究。比较了这些低覆盖率相之间的相对稳定性,并与扫描隧道显微镜(STM)实验进行了比较。通过紧密结合的分子动力学模拟,我们发现在Si(111)上Pb岛的Pb / Si界面处存在显着的原子重排,这可能导致超薄Pb膜的电子结构发生变化,该电子结构由量子尺寸效应。特别是,在STM中观察到的Si(111)上超薄Pb薄膜的纳米级Moire图案的电子行为支持了我们的结果。通过第一性原理计算,研究了Pb和Sn二聚体在Si(100)上的能量和动力学摇摆行为。我们得出的结论是,由于缺乏良好的混合通道,STM实验中观察到的Si(100)上的Pb和Sn二聚体以及二聚体链由纯金属二聚体代替混合的Pb-Si或Sn-Si二聚体组成。还研究了Pb原子和二聚体在Si(100)表面的扩散。描述了Mo的高度局部化准原子轨道(QUAMBO)的最小基础集的构造。通过使用第一性原理本征态作为输入,这些轨道被构造为看起来类似于自由原子轨道,但是能够变形以适应键合环境并重现该系统的占据状态电子性质派生。 QUAMBO可用于分析从第一性原理计算中获得的自洽本征态的化学键合。我们还使用遗传算法对[110]取向的H钝化Si纳米线的结构进行了全局优化研究。我们发现,H钝化的Si纳米线的结构小到亚纳米线尺寸。并以链状和六角形横截面识别了\ u22magic \ u22纳米线的结构图案。第一种类型的魔术纳米线由于直径较小而尚未进行实验观察,但是我们的六边形Si纳米线模型具有一致的尺寸,并且通过实验观察到的最小纳米线具有模拟STM图像。

著录项

  • 作者

    Chan, Tzu-Liang;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:23:42

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