Structural stability and lattice defects in copper:Ab initio, tight-binding, and embedded-atom calculations
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- 21 May 2001
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 63 (22) , 224106
- https://doi.org/10.1103/physrevb.63.224106
Abstract
We evaluate the ability of the embedded-atom method (EAM) potentials and the tight-binding (TB) method to predict reliably energies and stability of nonequilibrium structures by taking Cu as a model material. Two EAM potentials are used here. One is constructed in this work by using more fitting parameters than usual and including ab initio energies in the fitting database. The other potential was constructed previously using a traditional scheme. Excellent agreement is observed between ab initio, TB, and EAM results for the energies and stability of several nonequilibrium structures of Cu, as well as for energies along deformation paths between different structures. We conclude that not only TB calculations but also EAM potentials can be suitable for simulations in which correct energies and stability of different atomic configurations are essential, at least for Cu. The bcc, simple cubic, and diamond structures of Cu were identified as elastically unstable, while some other structures (e.g., hcp and 9R) are metastable. As an application of this analysis, nonequilibrium structures of epitaxial Cu films on (001)-oriented fcc or bcc substrates are evaluated using a simple model and atomistic simulations with an EAM potential. In agreement with experimental data, the structure of the film can be either deformed fcc or deformed hcp. The bcc structure cannot be stabilized by epitaxial constraints.Keywords
This publication has 68 references indexed in Scilit:
- Structural stability of higher-energy phases and its relation to the atomic configurations of extended defects: The example of CuPhysical Review B, 1999
- Interatomic potentials for monoatomic metals from experimental data andab initiocalculationsPhysical Review B, 1999
- Strained Tetragonal States and Bain Paths in MetalsPhysical Review Letters, 1997
- Structural instabilities of excited phasesPhysical Review B, 1997
- Free Energy Contributions to the hcp-bcc Transformation in Transition MetalsPhysical Review Letters, 1996
- Local stability of nonequilibrium phasesPhysical Review Letters, 1994
- Elastic constants of Cu and the instability of its bcc structurePhysical Review B, 1993
- Elastic instability of bcc cobaltPhysical Review B, 1993
- The influence of grain boundary inclination on the structure and energy of σ = 3 grain boundaries in copperPhilosophical Magazine A, 1992
- Theoretical prediction and direct observation of the 9Rstructure in AgPhysical Review Letters, 1992