An all-electron numerical method for solving the local density functional for polyatomic molecules
- 1 January 1990
- journal article
- conference paper
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 92 (1) , 508-517
- https://doi.org/10.1063/1.458452
Abstract
A method for accurate and efficient local density functional calculations (LDF) on molecules is described and presented with results. The method, Dmol for short, uses fast convergent three-dimensional numerical integrations to calculate the matrix elements occurring in the Ritz variation method. The flexibility of the integration technique opens the way to use the most efficient variational basis sets. A practical choice of numerical basis sets is shown with a built-in capability to reach the LDF dissociation limit exactly. Dmol includes also an efficient, exact approach for calculating the electrostatic potential. Results on small molecules illustrate present accuracy and error properties of the method. Computational effort for this method grows to leading order with the cube of the molecule size. Except for the solution of an algebraic eigenvalue problem the method can be refined to quadratic growth for large molecules.Keywords
This publication has 29 references indexed in Scilit:
- Charge-density study of boron nitrilotriacetate, C6H6BNO6, at 100 K: a comparison of polar bondsActa crystallographica Section B, Structural science, crystal engineering and materials, 1988
- Numerical solution of Poisson’s equation in polyatomic moleculesThe Journal of Chemical Physics, 1988
- Bonding of noble metals to semiconductor surfaces: first-principles calculations of copper and silver on silicon(111)Journal of the American Chemical Society, 1987
- Generalized Kohn-Sham theory for electronic excitations in realistic systemsPhysical Review B, 1986
- Two‐Dimensional, fully numerical molecular calculations. IV. hartree–fock–slater results on second‐row diatomic moleculesInternational Journal of Quantum Chemistry, 1985
- Metal-Metal Bonding in Cr-Cr and Mo-Mo Dimers: Another Success of Local Spin-Density TheoryPhysical Review Letters, 1983
- Self-Consistent Equations Including Exchange and Correlation EffectsPhysical Review B, 1965
- Inhomogeneous Electron GasPhysical Review B, 1964
- New Developments in Molecular Orbital TheoryReviews of Modern Physics, 1951
- A Simplification of the Hartree-Fock MethodPhysical Review B, 1951