Cohesive and electronic properties of transition metals: The generalized gradient approximation
- 15 June 1992
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 45 (23) , 13293-13297
- https://doi.org/10.1103/physrevb.45.13293
Abstract
We present a comparison between the local-spin-density approximation and the generalized gradient approximation for the calculation of cohesive and electronic properties of transition metals. Atomic s-d promotion energies, equilibrium lattice constants, bulk moduli, magnetic moments, and cohesive energies have been determined for 3d, 4d, and 5d transition metals. Gradient corrections to the density functional seem to have very small effects on calculated atomic s-d promotion energies. In agreement with previous results, we find that the generalized gradient approximation yields equilibrium lattice parameters and bulk moduli that are very close to experimental values for the 3d transition metals, while the results in the 4d and 5d series are less accurate. Cohesive energies calculated with the local-spin-density approximation are found to be too high for all transition metals. The generalized gradient approximation lowers these values, which, however, leads to cohesive energies that are too low in many cases. We argue that a major part of the remaining discrepancy may be due to the muffin-tin-potential approximation.Keywords
This publication has 31 references indexed in Scilit:
- Cohesive properties of 4d-transition-metal carbides and nitrides in the NaCl-type structurePhysical Review B, 1992
- Electronic structure, x-ray photoemission spectra, and transport properties ofC (cementite)Physical Review B, 1991
- Band structure and cohesive properties of 3d-transition-metal carbides and nitrides with the NaCl-type structurePhysical Review B, 1991
- Accurate and simple density functional for the electronic exchange energy: Generalized gradient approximationPhysical Review B, 1986
- Accurate Density Functional for the Energy: Real-Space Cutoff of the Gradient Expansion for the Exchange HolePhysical Review Letters, 1985
- Theory of Magnetic and Structural Ordering in IronPhysical Review Letters, 1985
- Exchange and correlation in atoms, molecules, and solids by the spin-density-functional formalismPhysical Review B, 1976
- Explicit local exchange-correlation potentialsJournal of Physics C: Solid State Physics, 1971
- Self-Consistent Equations Including Exchange and Correlation EffectsPhysical Review B, 1965
- Inhomogeneous Electron GasPhysical Review B, 1964