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Calculation of non-adiabatic coupling vectors in a local-orbital basis set.

Authors :
Abad, Enrique
Lewis, James P.
Zobacˇ, Vladmír
Hapala, Prokop
Jelínek, Pavel
Ortega, José
Source :
Journal of Chemical Physics. 4/21/2013, Vol. 138 Issue 15, p154106. 8p. 3 Diagrams, 5 Graphs.
Publication Year :
2013

Abstract

Most of today's molecular-dynamics simulations of materials are based on the Born-Oppenheimer approximation. There are many cases, however, in which the coupling of the electrons and nuclei is important and it is necessary to go beyond the Born-Oppenheimer approximation. In these methods, the non-adiabatic coupling vectors are fundamental since they represent the link between the classical atomic motion of the nuclei and the time evolution of the quantum electronic state. In this paper we analyze the calculation of non-adiabatic coupling vectors in a basis set of local orbitals and derive an expression to calculate them in a practical and computationally efficient way. Some examples of the application of this expression using a local-orbital density functional theory approach are presented for a few simple molecules: H3, formaldimine, and azobenzene. These results show that the approach presented here, using the Slater transition-state density, is a very promising way for the practical calculation of non-adiabatic coupling vectors for large systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219606
Volume :
138
Issue :
15
Database :
Academic Search Index
Journal :
Journal of Chemical Physics
Publication Type :
Academic Journal
Accession number :
87071394
Full Text :
https://doi.org/10.1063/1.4801511