Trajectory Surface Hopping in the Time-Dependent Kohn-Sham Approach for Electron-Nuclear Dynamics
Indexed incrossrefpubmed
Abstract
The mean-field treatment of electron-nuclear interaction results in many qualitative breakdowns in the time-dependent Kohn-Sham (TDKS) density functional theory. Examples include current-induced heating in nanoelectronics, charge dynamics in quantum dots and carbon nanotubes, and relaxation of biological chromophores. The problem is resolved by the trajectory surface-hopping TDKS approach, which is illustrated by the photoinduced electron injection from a molecular chromophore into TiO2, and the excited-state relaxation of the green fluorescent protein chromophore.
Citation impact
807
total citations
- FWCI
- 10.14
- Percentile
- 100%
- References
- 55
Citations per year
Authors
3Topics & keywords
Topics
Keywords
- Surface hopping
- Chromophore
- Kohn–Sham equations
- Relaxation (psychology)
- Excited state
- Electron
- Density functional theory
- Time-dependent density functional theory
No related works found for this paper.