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Improvement of modified analytic embedded atom method potentials for noble metals and Cu
Authors:Chong-Guk Jon  Chol-Jun Hwang
Affiliation:Energy Science, Kim Il Sung University, Pyongyang, DPR Korea
Abstract:The modified analytic embedded atom model (EAM) potentials considering farther neighbor atoms are improved for the noble metals (Ag, Au, Pt, Pd, Rh) and Cu. We not only adopt an end processing function and an enhanced smooth continuous condition for the pair potential, but also adjust the model parameters of multi-body potential by fitting a cohesive energy, a mono-vacancy formation energy, the Rose equation curve for the cohesive energy as a function of lattice parameter, a structure energy difference, elastic parameters and an equilibrium condition of crystal. The calculation results of structure energy differences misfit the experiment data for the noble metals and Cu in the unimproved EAM, because anyone of these differences have not been considered in the calculation of its model parameters. After the modification, the model showed better simulation results for the noble metals and Cu.
Keywords:Embedded atom method  pair potential  multi-body potential  noble metal  vacancy property  phonon dispersion  phonon density of states  face centered cube  lattice dynamics  rose equation  cohesive energy  specific capacity  coefficient of thermal expansion
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