The surface plasmon dispersion of ion bombarded Ag(001) is investigated by angle resolved high resolution electron energy loss spectroscopy. We find it to be parabolic and dominated by the quadratic term, contrary to the case of flat Ag(001) where the linear term is dominant. The case is reminiscent of surface plasmon dispersion on the oxygen covered, missing row reconstructed Ag(001) surface, for which case the change of the dispersion from nearly linear to quadratic was attributed to the removal of a surface plasmon decay channel associated to the surface interband transition at (X) over bar. We show moreover, that for the sputtered surface, slope and curvature of the dispersion depend on surface morphology at the nanoscale. When sputteri...
The surface electronic structure and optical response of Ag has been studied using angle- and energy...
Abstract An energy loss spectroscopy low energy electron diffraction (ELS-LEED) study of surface pla...
An energy loss spectroscopy-low-energy electron diffraction (ELS-LEED) study of the electronic excit...
Surface plasmon dispersion and damping on Ag(111) were studied by angle-resolved electron-energy-los...
The surface plasmon excitation on the Ag(110) surface along two high symmetry directions, [11̄0] and...
The effect of surface interband transitions (SIT) on surface plasmon dispersion was investigated by ...
We develop a model for the calculation of screening at the surface of single Ag crystals, including ...
We demonstrate that the qualitative difference of the Ag surfaces with respect to surface plasmon di...
Recent progress in experimental investigation of the surface plasmon for d-electron metals with angl...
The dependence of surface-plasmon damping versus plasmon momentum and energy has been measured for t...
We report on high-resolution electron-energy-loss measurements of surface-plasmon losses on Ag(001) ...
In the present paper, the acoustic surface plasmon (ASP) dispersion is investigated on nanostructure...
We demonstrate that the qualitative difference of the Ag surfaces with respect to surface plasmon di...
Measurements are reported of surface plasmon energy and dispersion carried out by electron energy lo...
Silver has many unique properties distinguishing it from other metals, e.g., strong collective excit...
The surface electronic structure and optical response of Ag has been studied using angle- and energy...
Abstract An energy loss spectroscopy low energy electron diffraction (ELS-LEED) study of surface pla...
An energy loss spectroscopy-low-energy electron diffraction (ELS-LEED) study of the electronic excit...
Surface plasmon dispersion and damping on Ag(111) were studied by angle-resolved electron-energy-los...
The surface plasmon excitation on the Ag(110) surface along two high symmetry directions, [11̄0] and...
The effect of surface interband transitions (SIT) on surface plasmon dispersion was investigated by ...
We develop a model for the calculation of screening at the surface of single Ag crystals, including ...
We demonstrate that the qualitative difference of the Ag surfaces with respect to surface plasmon di...
Recent progress in experimental investigation of the surface plasmon for d-electron metals with angl...
The dependence of surface-plasmon damping versus plasmon momentum and energy has been measured for t...
We report on high-resolution electron-energy-loss measurements of surface-plasmon losses on Ag(001) ...
In the present paper, the acoustic surface plasmon (ASP) dispersion is investigated on nanostructure...
We demonstrate that the qualitative difference of the Ag surfaces with respect to surface plasmon di...
Measurements are reported of surface plasmon energy and dispersion carried out by electron energy lo...
Silver has many unique properties distinguishing it from other metals, e.g., strong collective excit...
The surface electronic structure and optical response of Ag has been studied using angle- and energy...
Abstract An energy loss spectroscopy low energy electron diffraction (ELS-LEED) study of surface pla...
An energy loss spectroscopy-low-energy electron diffraction (ELS-LEED) study of the electronic excit...