The atomic structure of the Au 6 × 6 on Si(111) phase has been determined using direct methods and surface X-ray diffraction data. This surface structure is very complicated, with 14 independent gold atoms, relaxations in 24 independent silicon sites and three partially occupied gold sites. In one sense the structure can be described as microdomains of the parent on Si(111) structure. A better description is in terms of a tiling of incomplete pentagonal and trimer units, essentially a pseudopentagonal glass. In terms of these structural units it appears possible to explain all the gold structures in the coverage range of 0.8–1.5 monolayers as pseudoglasses with strong short range order but varying degrees of long range order
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
The α-√3×√3, β-√3×√3, and 6×6 surfaces of Au/Si(111) have been studied by angle-resolved photoelectr...
The atomic structure of the Au 6 × 6 on Si(111) phase has been determined using direct methods and s...
The atomic structure of the Au 6×6 on Si(111) phase has been determined using direct methods and sur...
The atomic structure of the Au 6×6 on Si(111) phase has been determined using direct methods and sur...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
The α-√3×√3, β-√3×√3, and 6×6 surfaces of Au/Si(111) have been studied by angle-resolved photoelectr...
The atomic structure of the Au 6 × 6 on Si(111) phase has been determined using direct methods and s...
The atomic structure of the Au 6×6 on Si(111) phase has been determined using direct methods and sur...
The atomic structure of the Au 6×6 on Si(111) phase has been determined using direct methods and sur...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
International audienceThe conditions of formation of the Au-induced Si-(6×6) reconstruction, its sta...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
Grazing-incidence x-ray diffraction has been used to determine the atomic arrangement in the 5×1 str...
The α-√3×√3, β-√3×√3, and 6×6 surfaces of Au/Si(111) have been studied by angle-resolved photoelectr...