Ab initio molecular dynamics with an orbital-free density functional
- 10 May 1993
- journal article
- Published by IOP Publishing in Journal of Physics: Condensed Matter
- Vol. 5 (19) , 3221-3240
- https://doi.org/10.1088/0953-8984/5/19/019
Abstract
A scheme for ab initio simulations of extended systems, which involves the use of the electron density as the basic variable, is discussed. The form of the kinetic energy functional is chosen to incorporate several exact limits (uniform system, linear response and rapidly varying density) while the rest of the energy functional is exactly the same as in a Kohn-Sham density functional calculation with the local density approximation. The authors' show that for sodium the present scheme yields high-quality results in a fraction of the time required with an orbital-based functional. The electronic part of the algorithm scales linearly with system size. An analysis of the stability of the method is made, and leads to criteria for selecting the non-physical parameters in the calculation so as to maximize the computational efficiency.Keywords
This publication has 26 references indexed in Scilit:
- Large scale electronic structure calculationsPhysical Review Letters, 1992
- Iterative minimization techniques forab initiototal-energy calculations: molecular dynamics and conjugate gradientsReviews of Modern Physics, 1992
- Towards Very Large-Scale Electronic-Structure CalculationsEurophysics Letters, 1992
- Efficient pseudopotentials for plane-wave calculationsPhysical Review B, 1991
- Molecular dynamics without effective potentials via the Car-Parrinello approachMolecular Physics, 1990
- Optimized pseudopotentialsPhysical Review B, 1990
- Pseudopotential methods in condensed matter applicationsComputer Physics Reports, 1989
- Unified Approach for Molecular Dynamics and Density-Functional TheoryPhysical Review Letters, 1985
- Self-Consistent Equations Including Exchange and Correlation EffectsPhysical Review B, 1965
- Inhomogeneous Electron GasPhysical Review B, 1964