Quantum well states of Ag films grown on stepped Au(111) surfaces are shown to undergo lateral scattering, in analogy with surface states of vicinal Ag(111). Applying angle resolved photoemission spectroscopy we observe quantum well bands with zone-folding and gap openings driven by surface/interface step lattice scattering. Experiments performed on a curved Au(111) substrate allow us to determine a subtle terrace-size effect, i.e., a fine step-density-dependent upward shift of quantum well bands. This energy shift is explained as mainly due to the periodically stepped crystal potential offset at the interface side of the film. Finally, the surface state of the stepped Ag film is analyzed with both photoemission and scanning tunneling micro...
A regular step, a dislocation slip step and a step formed by the emergence of a split edge dislocati...
Vicinal Au(111) surfaces exhibit periodic faceting within a wide range of miscut angles. There, the ...
We investigate the electronic states of thin Ag films grown on GaAs(110) surfaces at low temperature...
Quantum well states of Ag films grown on stepped Au(111) surfaces are shown to undergo lateral scatt...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.Q...
Quantum well states of Ag films grown on stepped Au(111) surfaces are shown to undergo lateral scatt...
Electrons at noble metal surfaces can be confined within terraces leading to one-dimensional surface...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
Vicinal surfaces exhibiting arrays of atomic steps are frequently investigated due to their diverse ...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
The electronic structure of ultrathin Ag films with 1/3 monolayer (ML) of Pb alloyed at the surface ...
Electrons at noble metal surfaces can be confined within terraces leading to one-dimensional surface...
Vicinal surfaces with periodic arrays of steps are among the simplest lateral nanostructures. In par...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
When the thickness of a film approaches the nanoscale, the confinement of electrons in the film by i...
A regular step, a dislocation slip step and a step formed by the emergence of a split edge dislocati...
Vicinal Au(111) surfaces exhibit periodic faceting within a wide range of miscut angles. There, the ...
We investigate the electronic states of thin Ag films grown on GaAs(110) surfaces at low temperature...
Quantum well states of Ag films grown on stepped Au(111) surfaces are shown to undergo lateral scatt...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.Q...
Quantum well states of Ag films grown on stepped Au(111) surfaces are shown to undergo lateral scatt...
Electrons at noble metal surfaces can be confined within terraces leading to one-dimensional surface...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
Vicinal surfaces exhibiting arrays of atomic steps are frequently investigated due to their diverse ...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
The electronic structure of ultrathin Ag films with 1/3 monolayer (ML) of Pb alloyed at the surface ...
Electrons at noble metal surfaces can be confined within terraces leading to one-dimensional surface...
Vicinal surfaces with periodic arrays of steps are among the simplest lateral nanostructures. In par...
Surface states at vicinal Au(788) and Au(322) have been investigated with angle-resolved photoemissi...
When the thickness of a film approaches the nanoscale, the confinement of electrons in the film by i...
A regular step, a dislocation slip step and a step formed by the emergence of a split edge dislocati...
Vicinal Au(111) surfaces exhibit periodic faceting within a wide range of miscut angles. There, the ...
We investigate the electronic states of thin Ag films grown on GaAs(110) surfaces at low temperature...