Accurate and efficient simulation of excited state properties is an important and much aspired cornerstone in the study of adsorbate dynamics on metal surfaces. To this end, the recently proposed linear expansion Δ-self-consistent field method by Gavnholt et al. [Phys. Rev. B 78, 075441 (2008)] https://doi.org/10.1103/PhysRevB.78.075441. presents an efficient alternative to time consuming quasi-particle calculations. In this method, the standard Kohn-Sham equations of density-functional theory are solved with the constraint of a non-equilibrium occupation in a region of Hilbert-space resembling gas-phase orbitals of the adsorbate. In this work, we discuss the applicability of this method for the excited-state dynamics of metal-surface mount...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
The understanding of adsorption and reactions of (large) organic molecules at metal surfaces plays a...
We use time-resolved two-photon photoemission to study two molecular photoswitches at the Au(111) su...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a modification of...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
We present the first ab initio prediction of localized electronic excited states in a periodically i...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
We investigate the thermal and electronic collective fluctuations that contribute to the finitetempe...
The understanding of adsorption and reactions of (large) organic molecules at metal surfaces plays a...
Time- and angle-resolved two-photon photoemission (2PPE) spectroscopies have been used to investigat...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
The understanding of adsorption and reactions of (large) organic molecules at metal surfaces plays a...
We use time-resolved two-photon photoemission to study two molecular photoswitches at the Au(111) su...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a modification of...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
We present the first ab initio prediction of localized electronic excited states in a periodically i...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
We investigate the thermal and electronic collective fluctuations that contribute to the finitetempe...
The understanding of adsorption and reactions of (large) organic molecules at metal surfaces plays a...
Time- and angle-resolved two-photon photoemission (2PPE) spectroscopies have been used to investigat...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
The understanding of adsorption and reactions of (large) organic molecules at metal surfaces plays a...
We use time-resolved two-photon photoemission to study two molecular photoswitches at the Au(111) su...