We study the effect of electron and phonon degrees of freedom on the relaxation dynamics of adsorption processes in gas-surface systems by using ab initio molecular dynamics that incorporates an electronic friction force (AIMDEF). As representative cases we have chosen three systems with different adsorption energies and adsorbate-to-surface atom mass ratios: H on Pd(1 0 0), N on Ag(1 1 1), and on Fe(1 1 0). We show, through inspection of the total energies and trajectories of the hot adsorbates on the surface, that electron–hole (e–h) pair excitations dominate relaxation of the light gas species, while the phonon channel is dominant for the heavy species. In the latter case e–h pairs become more important at the final thermalization stage...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
A model for treating excitation and relaxation of adsorbates at metallic surfaces induced by non-adi...
The relaxation dynamics of hot H, N, and N2 on Pd(100), Ag(111), and Fe(110), respectively, is studi...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
Trabajo presentado en el 23rd International Workshop on Inelastic Ion-Surface Collisions IISC (IISC-...
Great success has been achieved in the modeling of gas-surface elementary processes by the use of th...
We study the dynamics of transient hot H atoms on Pd(100) that originated from dissociative adsorpti...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
Resumen del trabajo presentado al MANA International Symposium, celebrado en Tsukuba (Japan) del 9 a...
Conversion of energy at the gas–solid interface lies at the heart of many industrial applications su...
Ab initio molecular dynamics with electronic friction (AIMDEF) is a valuable methodology to study th...
We study surface temperature effects on the adsorption and relaxation of N atoms on Ag(111). To this...
Using density functional theory and Ab Initio Molecular Dynamics with Electronic Friction (AIMDEF), ...
We theoretically study the competition between different energy dissipation channels in the adsorpti...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
A model for treating excitation and relaxation of adsorbates at metallic surfaces induced by non-adi...
The relaxation dynamics of hot H, N, and N2 on Pd(100), Ag(111), and Fe(110), respectively, is studi...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
Trabajo presentado en el 23rd International Workshop on Inelastic Ion-Surface Collisions IISC (IISC-...
Great success has been achieved in the modeling of gas-surface elementary processes by the use of th...
We study the dynamics of transient hot H atoms on Pd(100) that originated from dissociative adsorpti...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
Resumen del trabajo presentado al MANA International Symposium, celebrado en Tsukuba (Japan) del 9 a...
Conversion of energy at the gas–solid interface lies at the heart of many industrial applications su...
Ab initio molecular dynamics with electronic friction (AIMDEF) is a valuable methodology to study th...
We study surface temperature effects on the adsorption and relaxation of N atoms on Ag(111). To this...
Using density functional theory and Ab Initio Molecular Dynamics with Electronic Friction (AIMDEF), ...
We theoretically study the competition between different energy dissipation channels in the adsorpti...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
A model for treating excitation and relaxation of adsorbates at metallic surfaces induced by non-adi...