A modification of an embedded-atom method (EAM)-type potential is proposed for a quantitative description of equilibrium and non-equilibrium properties of metal systems within the molecular dynamics framework. The modification generalizes the previously developed linear cor-rection to EAM-type potentials [Sushko et al., J. Phys.: Condens. Matter 28 (2016) 145201] and asymptotically approaches zero at large interatomic distances. A general procedure for constructing this modification is outlined and its relation to the linear correction is elaborated. To benchmark this procedure, we examine the melting phase transition and several equilibrium properties of finite-size nanosystems made of silver, gold and titanium. The simulations performed w...
We demonstrate that the embedded-atom method and related potentials predict many dimensionless prope...
The validation of classical potentials for describing multicomponent materials in complex geometries...
Embedded-atom methods (EAM) are among the most popular classical force fields for pure metals and al...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] A perfectly transf...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
We fit a new gold embedded atom method (EAM) potential using an improved force matching methodology ...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Capturing segregation behavior in metal alloy nanoparticles accurately using computer simulations is...
In this study, we evaluate the functionals of different embedded-atom methods (EAM) by fitting their...
Atomistic simulations such as molecular dynamics and Monte Carlo are widely used for understanding t...
For a quantitative theoretical description of phase separation and coarsening reliable data of stiff...
The paper describes three common types of interatomic interaction potentials used for constructing t...
We demonstrate that the embedded-atom method and related potentials predict many dimensionless prope...
The validation of classical potentials for describing multicomponent materials in complex geometries...
Embedded-atom methods (EAM) are among the most popular classical force fields for pure metals and al...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] A perfectly transf...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
We fit a new gold embedded atom method (EAM) potential using an improved force matching methodology ...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Atomistic simulations are a powerful tool for the study of materials, especially in the determinatio...
Capturing segregation behavior in metal alloy nanoparticles accurately using computer simulations is...
In this study, we evaluate the functionals of different embedded-atom methods (EAM) by fitting their...
Atomistic simulations such as molecular dynamics and Monte Carlo are widely used for understanding t...
For a quantitative theoretical description of phase separation and coarsening reliable data of stiff...
The paper describes three common types of interatomic interaction potentials used for constructing t...
We demonstrate that the embedded-atom method and related potentials predict many dimensionless prope...
The validation of classical potentials for describing multicomponent materials in complex geometries...
Embedded-atom methods (EAM) are among the most popular classical force fields for pure metals and al...