We present the first ab initio prediction of localized electronic excited states in a periodically infinite condensed phase, a heretofore intractable goal. In particular, we examined local excitations within a CO molecule adsorbed on Pd(111). The calculation allows a configuration interaction treatment of a local region, while its interaction with the extended condensed phase is described via an embedding potential obtained from periodic density functional theory. Our work lays the foundation of a microscopic understanding of photochemistry and spectroscopy on metal surfaces
During the last decades, computer simulations have become an important tool for the study of element...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
[EN] Modeling the ultrafast photoinduced dynamics and reactivity of adsorbates on metals requires i...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
Accurate and efficient simulation of excited state properties is an important and much aspired corne...
Our recently developed open-boundary cluster model (OCM), which allows us to calculate electronic st...
Kohn-Sham density functional theory (DFT) is a powerful, well-established tool for the study of cond...
International audienceThe non-reactive interactions of molecules with a metallic or ionic surface ar...
We present a wave packet propagation-based method to study the electron dynamics in molecular specie...
During the last decades, computer simulations have become an important tool for the study of element...
In this thesis, a wide breadth of topics related to the field of surface science are addressed using...
During the last decades, computer simulations have become an important tool for the study of element...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
[EN] Modeling the ultrafast photoinduced dynamics and reactivity of adsorbates on metals requires i...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
We extend our recently reported embedding theory [J. Chem. Phys. 110, 7677 (1999)] to calculate not ...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
Accurate and efficient simulation of excited state properties is an important and much aspired corne...
Our recently developed open-boundary cluster model (OCM), which allows us to calculate electronic st...
Kohn-Sham density functional theory (DFT) is a powerful, well-established tool for the study of cond...
International audienceThe non-reactive interactions of molecules with a metallic or ionic surface ar...
We present a wave packet propagation-based method to study the electron dynamics in molecular specie...
During the last decades, computer simulations have become an important tool for the study of element...
In this thesis, a wide breadth of topics related to the field of surface science are addressed using...
During the last decades, computer simulations have become an important tool for the study of element...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
[EN] Modeling the ultrafast photoinduced dynamics and reactivity of adsorbates on metals requires i...