The photoemission cross section of quantum well states in very thin Cu films has been analyzed as a function of photon energy within a wide energy range. We show that this cross section is periodical in k space, peaking around vertical transitions of the respective Cu bulk band. The cross section peak width is analyzed in terms of final- and initial-state wave vector broadening. The latter can only be detected at low kinetic energies due to reduction of final state broadening. The initial state k(perpendicular to) broadening increases when the Cu film gets thinner, as simply expected from the uncertainty principle
We examined by low-energy electron diffraction and scanning tunneling microscopy the surface of thin...
When the thickness of a film approaches the nanoscale, the confinement of electrons in the film by i...
Cu nanostripes with finite arrays of monatomic steps are self-assembled by Ag-induced faceting of vi...
Abstract. Angle-resolved photoemission was employed to probe the quantum-well behaviour, or the lack...
The photon-energy dependence of quantum well states around the belly of the Fermi surface has been i...
Electron confinement in thin films of Pb on Cu(111) leads to the formation of quantum well states, f...
The electronic structure of ultrathin Cu films deposited on top of an FCC-Co(1 0 0) film has been st...
We present systematic $k_ \parallel $-dependent measurements of the Fermi surface and underlying ba...
We studied a quantum-well state (QWS) generated by the adsorption of one monolayer of K on Cu(111) s...
High-resolution photoemission (ΔE=5 meV) at a low photon energy (3.82 eV) is used to probe discrete ...
The quantum wells formed by ultra-thin metallic films on appropriate metallic substrates provide a r...
We present systematic k{sub {parallel}}-dependent measurements of the Fermi surface and underlying b...
Angular-resolved photoemission and inverse-photoemission spectroscopies have been used to investigat...
The electronic structure of thin epitaxial Cu films on Co(lOO) has been studied by spin- and angle-r...
Electronic states are quantized in metallic thin films. Coupled with angular resolution, this allows...
We examined by low-energy electron diffraction and scanning tunneling microscopy the surface of thin...
When the thickness of a film approaches the nanoscale, the confinement of electrons in the film by i...
Cu nanostripes with finite arrays of monatomic steps are self-assembled by Ag-induced faceting of vi...
Abstract. Angle-resolved photoemission was employed to probe the quantum-well behaviour, or the lack...
The photon-energy dependence of quantum well states around the belly of the Fermi surface has been i...
Electron confinement in thin films of Pb on Cu(111) leads to the formation of quantum well states, f...
The electronic structure of ultrathin Cu films deposited on top of an FCC-Co(1 0 0) film has been st...
We present systematic $k_ \parallel $-dependent measurements of the Fermi surface and underlying ba...
We studied a quantum-well state (QWS) generated by the adsorption of one monolayer of K on Cu(111) s...
High-resolution photoemission (ΔE=5 meV) at a low photon energy (3.82 eV) is used to probe discrete ...
The quantum wells formed by ultra-thin metallic films on appropriate metallic substrates provide a r...
We present systematic k{sub {parallel}}-dependent measurements of the Fermi surface and underlying b...
Angular-resolved photoemission and inverse-photoemission spectroscopies have been used to investigat...
The electronic structure of thin epitaxial Cu films on Co(lOO) has been studied by spin- and angle-r...
Electronic states are quantized in metallic thin films. Coupled with angular resolution, this allows...
We examined by low-energy electron diffraction and scanning tunneling microscopy the surface of thin...
When the thickness of a film approaches the nanoscale, the confinement of electrons in the film by i...
Cu nanostripes with finite arrays of monatomic steps are self-assembled by Ag-induced faceting of vi...