2006
DOI: 10.1088/0965-0393/14/5/002
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An embedded-atom potential for the Cu–Ag system

Abstract: A new embedded-atom method (EAM) potential has been constructed for Ag by fitting to experimental and first-principles data. The potential accurately reproduces the lattice parameter, cohesive energy, elastic constants, phonon frequencies, thermal expansion, lattice-defect energies, as well as energies of alternate structures of Ag. Combining this potential with an existing EAM potential for Cu, a binary potential set for the Cu-Ag system has been constructed by fitting the cross-interaction function to first-… Show more

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Cited by 491 publications
(321 citation statements)
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“…Interactions between the atoms were modeled by embedded-atom method potentials for copper 21 and the Cu-Ag system. 22 The binary potential reproduces the eutectic phase diagram of the Cu-Ag system in semi-quantitative agreement with experiment. 23 Cu was chosen as component 1 and Ag as component 2.…”
Section: Methodology Of Atomistic Simulations a Simulated Systemssupporting
confidence: 68%
“…Interactions between the atoms were modeled by embedded-atom method potentials for copper 21 and the Cu-Ag system. 22 The binary potential reproduces the eutectic phase diagram of the Cu-Ag system in semi-quantitative agreement with experiment. 23 Cu was chosen as component 1 and Ag as component 2.…”
Section: Methodology Of Atomistic Simulations a Simulated Systemssupporting
confidence: 68%
“…Moreover, BCS values are also compared to experimental results [16,54,69,[71][72][73][74][75][76][77][78], as well as barriers obtained from our nudged-elasticband (NEB) calculations using an embedded atom method interatomic potential [79]. Activation barriers for selected processes are listed in Table I.…”
Section: Theory and Computational Detailsmentioning
confidence: 99%
“…It was therefore necessary to create equilibrium segregation of Ag in the simulated models. To this end, we used the semi-grand canonical Monte Carlo method [23] with Cu-Ag interactions modeled with the embedded-atom potential [24]. At each temperature T , the desired equilibrium chemical composition c inside the grains was established by adjusting the imposed chemical potential difference ∆µ between Ag and Cu.…”
mentioning
confidence: 99%