Ab initio molecular dynamics using density based energy functionals: application to ground state geometries of some small clusters
Abstract
The ground state geometries of some small clusters have been obtained via ab initio molecular dynamical simulations by employing density based energy functionals. The approximate kinetic energy functionals that have been employed are the standard Thomas-Fermi along with the Weizsacker correction and a combination . It is shown that the functional involving gives superior charge densities and bondlengths over the standard functional. Apart from dimers and trimers of Na, Mg, Al, Li, Si, equilibrium geometries for and clusters have also been reported. For all the clusters investigated, the method yields the ground state geometries with the correct symmetries with bondlengths within 5\% when compared with the corresponding results obtained via full orbital based Kohn-Sham method. The method is fast and a promising one to study the ground state geometries of large clusters.
Keywords
Cite
@article{arxiv.cond-mat/9510083,
title = {Ab initio molecular dynamics using density based energy functionals: application to ground state geometries of some small clusters},
author = {Dinesh Nehete and Vaishali Shah and D. G. Kanhere},
journal= {arXiv preprint arXiv:cond-mat/9510083},
year = {2009}
}
Comments
15 pages, 3 PS figures