Interatomic potentials for monoatomic metals from experimental data andab initiocalculations
- 1 February 1999
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 59 (5) , 3393-3407
- https://doi.org/10.1103/physrevb.59.3393
Abstract
We demonstrate an approach to the development of many-body interatomic potentials for monoatomic metals with improved accuracy and reliability. The functional form of the potentials is that of the embedded-atom method, but the interesting features are as follows: (1) The database used for the development of a potential includes both experimental data and a large set of energies of different alternative crystalline structures of the material generated by ab initio calculations. We introduce a rescaling of interatomic distances in an attempt to improve the compatibility between experimental and ab initio data. (2) The optimum parametrization of the potential for the given database is obtained by alternating the fitting and testing steps. The testing step includes a comparison between the ab initio structural energies and those predicted by the potential. This strategy allows us to achieve the best accuracy of fitting within the intrinsic limitations of the potential model. Using this approach we develop reliable interatomic potentials for Al and Ni. The potentials accurately reproduce basic equilibrium properties of these metals, the elastic constants, the phonon-dispersion curves, the vacancy formation and migration energies, the stacking fault energies, and the surface energies. They also predict the right relative stability of different alternative structures with coordination numbers ranging from 12 to 4. The potentials are expected to be easily transferable to different local environments encountered in atomistic simulations of lattice defects.This publication has 40 references indexed in Scilit:
- Ab initio databases for fitting and testing interatomic potentialsPhilosophical Magazine Part B, 1996
- Interatomic Potentials from First-Principles Calculations: The Force-Matching MethodEurophysics Letters, 1994
- Cohesion in aluminum systems: A first-principles assessment of ‘‘glue’’ schemesPhysical Review Letters, 1993
- Simulation of gold in the glue modelPhilosophical Magazine A, 1988
- Positron Lifetime Spectroscopy and Trapping at Vacancies in AluminiumMaterials Science Forum, 1987
- Embedded-atom-method functions for the fcc metals Cu, Ag, Au, Ni, Pd, Pt, and their alloysPhysical Review B, 1986
- A simple empirical N-body potential for transition metalsPhilosophical Magazine A, 1984
- Embedded-atom method: Derivation and application to impurities, surfaces, and other defects in metalsPhysical Review B, 1984
- Semiempirical, Quantum Mechanical Calculation of Hydrogen Embrittlement in MetalsPhysical Review Letters, 1983
- Quenching experiments in high purity NiJournal of Nuclear Materials, 1978