Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals
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 poten...
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Peter the Great St.Petersburg Polytechnic University
2020-09-01
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doaj-b10856a33abe4d4a848fdfcaf1e73c852021-08-30T09:05:38ZengPeter the Great St.Petersburg Polytechnic UniversitySt. Petersburg Polytechnical University Journal: Physics and Mathematics2405-72232020-09-0113310.18721/JPM.1330320714726Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metalsVerkhovtsev Alexey0Korol Andrei1Sushko Gennady2Schramm Stefan3Solov'yov Andrey4MBN Research Center at Frankfurt Innovation Center of BiotechnologyMBN Research Center at Frankfurt Innovation Center of BiotechnologyMBN Research Center at Frankfurt Innovation Center of BiotechnologyGoethe UniversityMBN Research Center at Frankfurt Innovation Center of BiotechnologyA 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 with the modified potential predict higher bulk melting temperatures of the metals and agree better with experimental values as compared to the original EAM-type potential. Our results show that the modification works well for metals with both cubic and hexagonal lattice structures. The Gupta potential is chosen as an example but the modification proposed can also be applied to other potentials of the EAM type.https://physmath.spbstu.ru/article/2020.49.03/molecular dynamics simulationmany-body potentialphase transitionequilibrium propertiesmetal nanoparticle |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Verkhovtsev Alexey Korol Andrei Sushko Gennady Schramm Stefan Solov'yov Andrey |
spellingShingle |
Verkhovtsev Alexey Korol Andrei Sushko Gennady Schramm Stefan Solov'yov Andrey Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals St. Petersburg Polytechnical University Journal: Physics and Mathematics molecular dynamics simulation many-body potential phase transition equilibrium properties metal nanoparticle |
author_facet |
Verkhovtsev Alexey Korol Andrei Sushko Gennady Schramm Stefan Solov'yov Andrey |
author_sort |
Verkhovtsev Alexey |
title |
Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
title_short |
Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
title_full |
Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
title_fullStr |
Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
title_full_unstemmed |
Generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
title_sort |
generalized correction to embedded-atom potentials for modeling equilibrium and non-equilibrium properties of metals |
publisher |
Peter the Great St.Petersburg Polytechnic University |
series |
St. Petersburg Polytechnical University Journal: Physics and Mathematics |
issn |
2405-7223 |
publishDate |
2020-09-01 |
description |
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 with the modified potential predict higher bulk melting temperatures of the metals and agree better with experimental values as compared to the original EAM-type potential. Our results show that the modification works well for metals with both cubic and hexagonal lattice structures. The Gupta potential is chosen as an example but the modification proposed can also be applied to other potentials of the EAM type. |
topic |
molecular dynamics simulation many-body potential phase transition equilibrium properties metal nanoparticle |
url |
https://physmath.spbstu.ru/article/2020.49.03/ |
work_keys_str_mv |
AT verkhovtsevalexey generalizedcorrectiontoembeddedatompotentialsformodelingequilibriumandnonequilibriumpropertiesofmetals AT korolandrei generalizedcorrectiontoembeddedatompotentialsformodelingequilibriumandnonequilibriumpropertiesofmetals AT sushkogennady generalizedcorrectiontoembeddedatompotentialsformodelingequilibriumandnonequilibriumpropertiesofmetals AT schrammstefan generalizedcorrectiontoembeddedatompotentialsformodelingequilibriumandnonequilibriumpropertiesofmetals AT solovyovandrey generalizedcorrectiontoembeddedatompotentialsformodelingequilibriumandnonequilibriumpropertiesofmetals |
_version_ |
1721185430256222208 |