Calculated stacking-fault energies of elemental metals
- 15 May 1993
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 47 (19) , 12865-12873
- https://doi.org/10.1103/physrevb.47.12865
Abstract
We have performed ab initio calculations of twin, intrinsic, and extrinsic face-centered-cubic stacking faults for all the 3d, 4d, and 5d transition metals by means of a Green’s-function technique, based on the linear-muffin-tin-orbitals method within the tight-binding and atomic-sphere approximations. The results are in excellent agreement with recent layer Korringa-Kohn-Rostoker Green’s-function calculations where stacking-fault energies for Ni, Cu, Rh, Pd, Ag, Ir, and Au were found by means of the so-called force theorem. We find that the self-consistent fault energies for all the metals in the three transition series vary with atomic number essentially as the calculated structural energy differences between the face-centered-cubic and the hexagonal-close-packed phases. In addition we find that the simple relations between the different types of fault energies predicted by models based on the local atomic coordination are obeyed to a high degree of accuracy.Keywords
This publication has 33 references indexed in Scilit:
- Simple model of stacking-fault energiesPhysical Review B, 1993
- Stacking fault energies in aluminiumJournal of Physics: Condensed Matter, 1992
- Self-consistent Green’s-function technique for surfaces and interfacesPhysical Review B, 1991
- Twin-boundary and stacking-fault energies in Al and PdPhysical Review B, 1991
- On the calculation of the surface Green function by the tight-binding linear muffin-tin orbital methodJournal of Physics: Condensed Matter, 1989
- Explicit, First-Principles Tight-Binding TheoryPhysical Review Letters, 1984
- Self-interaction correction to density-functional approximations for many-electron systemsPhysical Review B, 1981
- Ground State of the Electron Gas by a Stochastic MethodPhysical Review Letters, 1980
- Linear methods in band theoryPhysical Review B, 1975
- Temperature coefficient of twin-boundary energy: The determination of stacking-fault energy from the coherent twin-boundary energy in pure F.C.C. metalsScripta Metallurgica, 1972