6 pages, 5 figures.-- Published online before print November 22, 2010.-- Full-text available Open Access at the publisher's site.Femtosecond and subfemtosecond time scales typically rule electron dynamics at metal surfaces. Recent advance in experimental techniques permits now remarkable precision in the description of these processes. In particular, shorter time scales, smaller system sizes, and spin-dependent effects are current targets of interest. In this article, we use state-of-the-art theoretical methods to analyze these refined features of electron dynamics. We show that the screening of localized charges at metal surfaces is created locally in the attosecond time scale, while collective excitations transfer the perturbation to larg...
Chemical reactions at metal surfaces are influenced by inherent dissipative processes which involve ...
Time-resolved two-photon photoemission in combination with the coherent excitation of several quantu...
We report on a novel approach to measure the phase relaxation length and femtosecond lifetime of hot...
6 pages, 5 figures.-- Published online before print November 22, 2010.-- Full-text available Open Ac...
The dynamics of charge transfer and electronic excitations are of fundamental importance in many are...
The recent work of Cavalieri et al. [Nature (London) 449, 1029 (2007)] has provided the first experi...
The creation and stabilization of localized, low-energy electrons is investigated in polar molecular...
We study the unoccupied electronic structure and dynamics of chemisorbed atoms and molecules on meta...
Electron–electron interactions are the fastest processes in materials, occurring on femtosecond to a...
Electron–electron interactions are the fastest processes in materials, occurring on femtosecond to a...
We present a brief overview of recent studies and new theoretical results for electron-phonon intera...
Resumen del trabajo presentado al 8th International Workshop on Electron Energy Loss Spectroscopy an...
190 p.The ability of materials to transfer electrons is a basic property controlling the functionali...
Both theoretical and experimental results for the dynamics of photoexcited electrons at surfaces of ...
Surface chemical reactions are influenced by inherent dissipative processes which involve energy tra...
Chemical reactions at metal surfaces are influenced by inherent dissipative processes which involve ...
Time-resolved two-photon photoemission in combination with the coherent excitation of several quantu...
We report on a novel approach to measure the phase relaxation length and femtosecond lifetime of hot...
6 pages, 5 figures.-- Published online before print November 22, 2010.-- Full-text available Open Ac...
The dynamics of charge transfer and electronic excitations are of fundamental importance in many are...
The recent work of Cavalieri et al. [Nature (London) 449, 1029 (2007)] has provided the first experi...
The creation and stabilization of localized, low-energy electrons is investigated in polar molecular...
We study the unoccupied electronic structure and dynamics of chemisorbed atoms and molecules on meta...
Electron–electron interactions are the fastest processes in materials, occurring on femtosecond to a...
Electron–electron interactions are the fastest processes in materials, occurring on femtosecond to a...
We present a brief overview of recent studies and new theoretical results for electron-phonon intera...
Resumen del trabajo presentado al 8th International Workshop on Electron Energy Loss Spectroscopy an...
190 p.The ability of materials to transfer electrons is a basic property controlling the functionali...
Both theoretical and experimental results for the dynamics of photoexcited electrons at surfaces of ...
Surface chemical reactions are influenced by inherent dissipative processes which involve energy tra...
Chemical reactions at metal surfaces are influenced by inherent dissipative processes which involve ...
Time-resolved two-photon photoemission in combination with the coherent excitation of several quantu...
We report on a novel approach to measure the phase relaxation length and femtosecond lifetime of hot...