We present new results for the inner valence levels of clusters of the three inert gases Ar, Kr and Xe based on photoelectron spectroscopy studies. The inner valence levels are compared to the localised core levels and to the delocalised outer valence levels. This comparison shows a gradual change from a relatively localised behaviour for Ar inner valence 3s, over the intermediate case of Kr inner valence 4s, to a more delocalised behaviour for Xe inner valence 5s. This change correlates well with the ratio between the orbital sizes and the interatomic distances. The Kr4s intermediate case is found to exhibit characteristics of both localised and delocalised behaviour
The 3p valence region of argon clusters has been investigated with photoemission near the photoioniz...
Clusters are finite ensembles of atoms or molecules with sizes in the nanometer regime (i.e. nanopar...
The main topic of this Thesis is the x-ray spectroscopic studies of free nano-clusters with size mor...
An overview of the present status of valence- and inner-shell spectroscopy on rare-gas clusters is g...
The electronic and geometric structure of rare gas clusters doped with rare-gas atoms Rg = Xe, Kr o...
The electronic structure of rare gas clusters has been probed with time- and spectrally resolved flu...
Photoionization of rare gas clusters in the innervalence shell region has been investigated using t...
Photoelectrons (PE) from jet-cooled mass-identified silver and palladium cluster anions (number of a...
In this paper the first resonant photoemission and partial electron yield studies of free clusters a...
The development of electronic states in krypton clusters is investigated by high-resolution core-lev...
Photoelectron spectra of Na; , Cu; , Ag; , and Au; clusters reveal the electronic structure of these...
Heterogeneous rare-gas clusters produced by a coexpansion of an argon/xenon mixture have been studie...
Energy relaxation processes of photo-excited Kr50 clusters covered with a shell of Ar atoms (up to 4...
We deduce the evolution of electronic excitations in Kr clusters (N=2−3000) from fluorescence excita...
The ability to map valence electronic structure is the result of a recent advance in photoelectron s...
The 3p valence region of argon clusters has been investigated with photoemission near the photoioniz...
Clusters are finite ensembles of atoms or molecules with sizes in the nanometer regime (i.e. nanopar...
The main topic of this Thesis is the x-ray spectroscopic studies of free nano-clusters with size mor...
An overview of the present status of valence- and inner-shell spectroscopy on rare-gas clusters is g...
The electronic and geometric structure of rare gas clusters doped with rare-gas atoms Rg = Xe, Kr o...
The electronic structure of rare gas clusters has been probed with time- and spectrally resolved flu...
Photoionization of rare gas clusters in the innervalence shell region has been investigated using t...
Photoelectrons (PE) from jet-cooled mass-identified silver and palladium cluster anions (number of a...
In this paper the first resonant photoemission and partial electron yield studies of free clusters a...
The development of electronic states in krypton clusters is investigated by high-resolution core-lev...
Photoelectron spectra of Na; , Cu; , Ag; , and Au; clusters reveal the electronic structure of these...
Heterogeneous rare-gas clusters produced by a coexpansion of an argon/xenon mixture have been studie...
Energy relaxation processes of photo-excited Kr50 clusters covered with a shell of Ar atoms (up to 4...
We deduce the evolution of electronic excitations in Kr clusters (N=2−3000) from fluorescence excita...
The ability to map valence electronic structure is the result of a recent advance in photoelectron s...
The 3p valence region of argon clusters has been investigated with photoemission near the photoioniz...
Clusters are finite ensembles of atoms or molecules with sizes in the nanometer regime (i.e. nanopar...
The main topic of this Thesis is the x-ray spectroscopic studies of free nano-clusters with size mor...