The surface electronic structure of two- and three-dimensional Ho silicides grown on Si(111) has been studied with the techniques of metastable de-excitation spectroscopy (MDS) and ultraviolet photoemission spectroscopy. Electronic structure differences between the two cases are examined, and the extreme sensitivity of MDS to the surface density of states (DOS) allows a direct comparison between deconvolved spectra and ab initio density-functional theory calculations. This comparison shows a good agreement between the DOS calculated for the Si (111) -1×1-Ho structure and MDS data obtained from an almost-complete layer of two-dimensional Ho silicide. The dominant role of the topmost silicon bilayer in determining the surface electronic prope...
[[abstract]]Ab initio total energy calculations based on a norm-conserving optimized pseudopotential...
International audienceOptimizing substrate characterization to grow 2D Si layers on surfaces is a ma...
We have applied a combination of surface spectroscopy techniques (XPS, Auger, electron energy loss a...
The surface electronic structure of two- and three-dimensional Ho silicides grown on Si(111) has bee...
The surface structure of the three-dimensional (3D) holmium silicide grown on Si(111) has been deter...
Chemically prepared, long range ordered, ideally hydrogen terminated Si(111) surfaces are model syst...
The electronic structure of the Si (111)-(2×1) surface is analyzed by comparing different reconstruc...
The recently discovered method for the production of an ideally H-terminated, stable and easily tran...
We report an investigation on the electronic structure of metastable, epitaxial FeSi films grown on ...
WOS: 000255302600011Ab initio calculations, based on pseudopotentials and density functional theory,...
The recently discovered method for the production of an ideally H-terminated, stable and easily tran...
The electronic structures of the Eu∕Si(111)-(3×2) and (2×1) surfaces have been investigated by angle...
Periodic density functional calculations were performed to investigate the vibrational properties of...
The Si(113) surface has been investigated using video low-energy electron diffraction (LEED), angle-...
We have investigated the electronic structures of the so-called Eu- and Ca-induced Si(111)-(5×1) sur...
[[abstract]]Ab initio total energy calculations based on a norm-conserving optimized pseudopotential...
International audienceOptimizing substrate characterization to grow 2D Si layers on surfaces is a ma...
We have applied a combination of surface spectroscopy techniques (XPS, Auger, electron energy loss a...
The surface electronic structure of two- and three-dimensional Ho silicides grown on Si(111) has bee...
The surface structure of the three-dimensional (3D) holmium silicide grown on Si(111) has been deter...
Chemically prepared, long range ordered, ideally hydrogen terminated Si(111) surfaces are model syst...
The electronic structure of the Si (111)-(2×1) surface is analyzed by comparing different reconstruc...
The recently discovered method for the production of an ideally H-terminated, stable and easily tran...
We report an investigation on the electronic structure of metastable, epitaxial FeSi films grown on ...
WOS: 000255302600011Ab initio calculations, based on pseudopotentials and density functional theory,...
The recently discovered method for the production of an ideally H-terminated, stable and easily tran...
The electronic structures of the Eu∕Si(111)-(3×2) and (2×1) surfaces have been investigated by angle...
Periodic density functional calculations were performed to investigate the vibrational properties of...
The Si(113) surface has been investigated using video low-energy electron diffraction (LEED), angle-...
We have investigated the electronic structures of the so-called Eu- and Ca-induced Si(111)-(5×1) sur...
[[abstract]]Ab initio total energy calculations based on a norm-conserving optimized pseudopotential...
International audienceOptimizing substrate characterization to grow 2D Si layers on surfaces is a ma...
We have applied a combination of surface spectroscopy techniques (XPS, Auger, electron energy loss a...