We present an experimental setup for the investigation of the processes occurring during the deposition of mass-selected clusters on a well-defined surface. The sample is analyzed in situ by two complementary methods: thermal energy atom scattering (TEAS) and scanning tunneling microscopy (STM). TEAS is used to study the dynamical processes during the deposition and to gather statistical information about the resulting structures on the surface. Subsequent STM measurements allow us to investigate the collision outcome on an atomic scale. The setup is highly versatile and guarantees ultra-high-vacuum conditions and cryogenic temperatures (≈ 30K) of the sample at all times even during sample transfer. Clusters are produced in a CORDIS-type cl...
The low energy deposition of silver cluster cations with 561 (+/- 5) atoms on a cold fullerene cover...
The growth of Fe clusters by collisions of Fe atoms with Ar atoms flowing in a supersonic ...
Gölzhäuser A, Ehrlich G. Atom movement and binding on surface clusters: Pt on Pt(111) clusters. Phys...
Size-selected Si30 and Si39 clusters produced by a laser vaporization cluster source are deposited o...
This dissertation presents technical developments and experimental and computational investigations ...
We have investigated the growth of Ag nanoparticles deposited on Si(111), H/Si(111)-(1×1) and Bi$\te...
Experimental studies on small clusters of atoms are a part of the growing field of nanometer-scale s...
Mass selected Ag7 clusters have been deposited at two different impact energies (20 and 95 eV) on a ...
Clusters are small particles whose size is less than 103 A. They possess special characteristics com...
This thesis research focuses on the interactions between nanometer-sized clusters and atomically fla...
In this experiment, the scanning tunnelling microscope (STM) has been used to study some of the beha...
This thesis consists of two separate tasks: the installation of a radio frequency (RF) source in the...
We study size-selected deposition of Ag/sub 19//sup +/ clusters on Pd(100) at total kinetic energies...
Silver (Ag) clusters, deposited on the Si(111) 7 ?? 7 reconstruction surface at room temperature, we...
The temperature variable Scanning Tunneling Microscope (STM/ 20 K-700 K) was used to measure the sur...
The low energy deposition of silver cluster cations with 561 (+/- 5) atoms on a cold fullerene cover...
The growth of Fe clusters by collisions of Fe atoms with Ar atoms flowing in a supersonic ...
Gölzhäuser A, Ehrlich G. Atom movement and binding on surface clusters: Pt on Pt(111) clusters. Phys...
Size-selected Si30 and Si39 clusters produced by a laser vaporization cluster source are deposited o...
This dissertation presents technical developments and experimental and computational investigations ...
We have investigated the growth of Ag nanoparticles deposited on Si(111), H/Si(111)-(1×1) and Bi$\te...
Experimental studies on small clusters of atoms are a part of the growing field of nanometer-scale s...
Mass selected Ag7 clusters have been deposited at two different impact energies (20 and 95 eV) on a ...
Clusters are small particles whose size is less than 103 A. They possess special characteristics com...
This thesis research focuses on the interactions between nanometer-sized clusters and atomically fla...
In this experiment, the scanning tunnelling microscope (STM) has been used to study some of the beha...
This thesis consists of two separate tasks: the installation of a radio frequency (RF) source in the...
We study size-selected deposition of Ag/sub 19//sup +/ clusters on Pd(100) at total kinetic energies...
Silver (Ag) clusters, deposited on the Si(111) 7 ?? 7 reconstruction surface at room temperature, we...
The temperature variable Scanning Tunneling Microscope (STM/ 20 K-700 K) was used to measure the sur...
The low energy deposition of silver cluster cations with 561 (+/- 5) atoms on a cold fullerene cover...
The growth of Fe clusters by collisions of Fe atoms with Ar atoms flowing in a supersonic ...
Gölzhäuser A, Ehrlich G. Atom movement and binding on surface clusters: Pt on Pt(111) clusters. Phys...