Robust nonadiabatic molecular dynamics for metals and insulators


Autoria(s): Stella, L.; Meister, M.; Fisher, A. J.; Horsfield, A. P.
Data(s)

07/12/2007

Resumo

<p>We present a new formulation of the correlated electron-ion dynamics (CEID) scheme, which systematically improves Ehrenfest dynamics by including quantum fluctuations around the mean-field atomic trajectories. We show that the method can simulate models of nonadiabatic electronic transitions and test it against exact integration of the time-dependent Schrodinger equation. Unlike previous formulations of CEID, the accuracy of this scheme depends on a single tunable parameter which sets the level of atomic fluctuations included. The convergence to the exact dynamics by increasing the tunable parameter is demonstrated for a model two level system. This algorithm provides a smooth description of the nonadiabatic electronic transitions which satisfies the kinematic constraints (energy and momentum conservation) and preserves quantum coherence. The applicability of this algorithm to more complex atomic systems is discussed.</p>

Identificador

http://pure.qub.ac.uk/portal/en/publications/robust-nonadiabatic-molecular-dynamics-for-metals-and-insulators(e199056c-cb36-4491-b27a-97c6b86d8424).html

http://dx.doi.org/10.1063/1.2801537

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Stella , L , Meister , M , Fisher , A J & Horsfield , A P 2007 , ' Robust nonadiabatic molecular dynamics for metals and insulators ' Journal of Chemical Physics , vol 127 , no. 21 , 214104 . DOI: 10.1063/1.2801537

Palavras-Chave #QUANTUM-CLASSICAL DYNAMICS #ELECTRON-ION DYNAMICS #SYSTEMS #TRANSITIONS #ENERGY #AVERAGES #SURFACES
Tipo

article