期刊文献+

The chemisorption of Mg on the Si(100)-(2×1) surface

The chemisorption of Mg on the Si(100)-(2×1) surface
原文传递
导出
摘要 The adsorption of a half monolayer of Mg atoms on the Si(100)-(2×1) surface is studied by using the self-consistent tight binding linear muffin-tin orbital method.Energies of the adsorption systems of Mg atoms on the different sites are calculated.It has been found that the adsorbed Mg atoms are more favorable on the cave site above the surface than any other sites on the Si(100)-(2×1) surface and a metastable shallow site also exists above the surface.This is in agreement with the experimental results.The charge transfer and the layer projected density of states are also studied. The adsorption of a half monolayer of Mg atoms on the Si(100)-(2×1) surface is studied by using the self-consistent tight binding linear muffin-tin orbital method.Energies of the adsorption systems of Mg atoms on the different sites are calculated.It has been found that the adsorbed Mg atoms are more favorable on the cave site above the surface than any other sites on the Si(100)-(2×1) surface and a metastable shallow site also exists above the surface.This is in agreement with the experimental results.The charge transfer and the layer projected density of states are also studied.
出处 《Journal of Semiconductors》 EI CAS CSCD 2012年第11期6-9,共4页 半导体学报(英文版)
关键词 silicon chemisorption supercell magnesium low index single crystal surface silicon chemisorption supercell magnesium low index single crystal surface
  • 相关文献

参考文献13

  • 1Shaltaf R, Mete E, Ellialtiogli S. Mg adsorption on Si (001) surface from first principles. Phys Rev B, 2004, 69: 125417.
  • 2Kawashima Y, Tanabe H, Ikeda T, et al. Surface structures of the Mg/Si (100) system studied by low-energy electron diffraction and Auger electron spectroscopy. SurfSci, 1994,319: 165.
  • 3Cho E S, Lee C H, Hwang C C, et al. High-resolution core-level photoelectron spectroscopy of Mg/Si (100) surfaces. Surf Sci, 2003,523: 30.
  • 4Hutchison P, Evans M M R, Nagami J. Initial stages of Mg growth on the Si (001) surface studied by STM. SurfSci, 1998, 411: 99.
  • 5Kubo O, Saranin A A, Zotov A V, et al. Mg/Si (100) reconstructions studied by scanning tunneling microscopy. Jpn J Appl Phys, 2000, 39: 3740.
  • 6Kim J S, Ihm K W, Hwang C C, et al. LEED studies of the adsorption of Mg and Ba on a single domain Si (001)-2 x 1 surface. J Korean Phys Soc, 1999, 35: S550.
  • 7Andersen O K, Jepsen O. Explicit, first-principles tight-binding theory. Phys Rev Lett, 1984, 53: 2571.
  • 8Andersen O K, Pawlowska Z, Jepsen O. Illustration of the linear-muffm-tin-orbital tight-binding representation: compact orbitals and charge density in Si. Phys Rev B, 1986, 34: 5253.
  • 9Nowak H J, Andersen O K, Fujiwara T, et al. Electronic-structure calculations for amorphous solids using the recursion method and linear muffin-tin orbitals: application to FegoB2o- Phys Rev B, 1991,44: 3577.
  • 10Wei S, Yang Z, Dai X, et al. Adsorption of Co on Si(l 00) surface. SurfSci, 2002, 504:37.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部