For a microscopic understanding of chemical reactions at surfaces, it is essential to obtain detailed knowledge on the underlying elementary processes. The reaction mechanism, the pathways and time scales of energy flow and the energy partitioning between different degrees of freedom of the reaction products are of key interest. Reactions of species adsorbed on a metal surface are generally mediated through electron and/or phonon excitations of the substrate. Since thermal equilibration between these excitations occurs on a femto- to picosecond time scale, chemical reactions initiated by ultrashort-laser pulses provide the base to investigate processes beyond equilibrium conditions. The recombination of two hydrogen atoms forming an H2 mole...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
The energy transfer between metal substrates and adsorbates occurs on an ultrafast timescale, mediat...
For a microscopic understanding of chemical reactions at surfaces, it is essential to obtain detaile...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Femtosecond-laser excitation induces recombinative desorption of molecular H-2 from atomic hydrogen ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The mechanism of recombinative desorption of hydrogen from a Ru(0001) surface induced by femtosecond...
The mechanism of recombinative desorption of hydrogen from a Ru(0001) surface induced by femtosecond...
This thesis investigates the reaction mechanisms of femtosecond-laser induced associative desorption...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
The energy transfer between metal substrates and adsorbates occurs on an ultrafast timescale, mediat...
For a microscopic understanding of chemical reactions at surfaces, it is essential to obtain detaile...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Absorption of femtosecond near-infrared laser pulses in the surface near region of Ru(001) covered w...
Femtosecond-laser excitation induces recombinative desorption of molecular H-2 from atomic hydrogen ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The goal of this work is to acquire detailed insight into the fundamental interaction mechanisms in ...
The mechanism of recombinative desorption of hydrogen from a Ru(0001) surface induced by femtosecond...
The mechanism of recombinative desorption of hydrogen from a Ru(0001) surface induced by femtosecond...
This thesis investigates the reaction mechanisms of femtosecond-laser induced associative desorption...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
Fundamental insights into the ultrafast dynamics of energy transfer processes at surfaces are of cen...
The energy transfer between metal substrates and adsorbates occurs on an ultrafast timescale, mediat...