Publication | Closed Access
Semi-Empirical Potential Methods for Atomistic Simulations of Metals and Their Construction Procedures
24
Citations
75
References
2009
Year
EngineeringMechanical EngineeringMaterial SimulationMultiscale MaterialComputational ChemistryComputational MechanicsTheir Construction ProceduresMeam PotentialsNumerical SimulationNanoscale ModelingMaterials ScienceMaterials EngineeringPhysicsAtomic PhysicsQuantum ChemistryGeneral TheoryElemental MetalMicrostructureAb-initio MethodSemi-empirical Potential MethodsNatural SciencesApplied PhysicsMaterial ModelingMagnesium-based CompositeMaterial PerformanceAtomistic Simulations
General theory of semi-empirical potential methods including embedded-atom method and modified-embedded-atom method (MEAM) is reviewed. The procedures to construct these potentials are also reviewed. A multi-objective optimization (MOO) procedure has been developed to construct MEAM potentials with minimal manual fitting. This procedure has been applied successfully to develop a new MEAM potential for magnesium. The MOO procedure is designed to optimally reproduce multiple target values that consist of important material properties obtained from experiments and first-principle calculations based on density-functional theory. The optimized target quantities include elastic constants, cohesive energies, surface energies, vacancy-formation energies, and the forces on atoms in a variety of structures. The accuracy of the present potential is assessed by computing several material properties of Mg including their thermal properties. We found that the new MEAM potential shows a significant improvement over previously published potentials, especially for the atomic forces and melting temperature calculations.
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