MEAM_LAMMPS_AlviFaiyadMunshi_2022_AgAu__MO_511467482222_000
| Title
A single sentence description.
|
MEAM potential developed by Alvi et al. for cyclic loading of Ag–Au composite nanowire (2022) v000 |
|---|---|
| Description
A short description of the Model describing its key features including for example: type of model (pair potential, 3-body potential, EAM, etc.), modeled species (Ac, Ag, ..., Zr), intended purpose, origin, and so on.
|
MEAM potential developed by Alvi et al. to model the effect of dislocations and defect interaction on the mechanical behavior of Au–Ag and Ag–Au Core-shell nanostructures under tensile and cyclic loading of Ag-Au nanowires. Designed to model pure Ag, Au, and their alloys. |
| Species
The supported atomic species.
| Ag, Au |
| Disclaimer
A statement of applicability provided by the contributor, informing users of the intended use of this KIM Item.
|
None |
| Content Origin | https://www.ctcms.nist.gov/potentials/entry/2022--Alvi-S-M-A-A-Faiyad-A-Munshi-M-A-M-et-al--Ag-Au/2022--Alvi-S-M-A-A--Ag-Au--LAMMPS--ipr1.html |
| Contributor |
Claire Waters |
| Maintainer |
Claire Waters |
| Developer |
SK MD AHNAF AKIF ALVI Abrar Faiyad Md Adnan Mahathir Munshi Mohammad Motalab M. Mahbub Islam Sourav Saha |
| Published on KIM | 2026 |
| How to Cite |
This Model originally published in [1] is archived in OpenKIM [2-5]. [1] Alvi SMAA, Faiyad A, Munshi MAM, Motalab M, Islam MM, Saha S. Cyclic and tensile deformations of Gold–Silver core shell systems using newly parameterized MEAM potential. Mechanics of Materials [Internet]. 2022;169:104304. Available from: https://www.sciencedirect.com/science/article/pii/S0167663622000850 doi:10.1016/j.mechmat.2022.104304 — (Primary Source) A primary source is a reference directly related to the item documenting its development, as opposed to other sources that are provided as background information. [2] ALVI SKMDAHNAFAKIF, Faiyad A, Munshi MAM, Motalab M, Islam MM, Saha S. MEAM potential developed by Alvi et al. for cyclic loading of Ag–Au composite nanowire (2022) v000. OpenKIM; 2026. doi:10.25950/9f5a9bf2 [3] Afshar Y, Hütter S, Rudd RE, Stukowski A, Tipton WW, Trinkle DR, et al. The modified embedded atom method (MEAM) potential v002. OpenKIM; 2023. doi:10.25950/ee5eba52 [4] Tadmor EB, Elliott RS, Sethna JP, Miller RE, Becker CA. The potential of atomistic simulations and the Knowledgebase of Interatomic Models. JOM. 2011;63(7):17. doi:10.1007/s11837-011-0102-6 [5] Elliott RS, Tadmor EB. Knowledgebase of Interatomic Models (KIM) Application Programming Interface (API). OpenKIM; 2011. doi:10.25950/ff8f563a |
| Funding | Not available |
| Short KIM ID
The unique KIM identifier code.
| MO_511467482222_000 |
| Extended KIM ID
The long form of the KIM ID including a human readable prefix (100 characters max), two underscores, and the Short KIM ID. Extended KIM IDs can only contain alpha-numeric characters (letters and digits) and underscores and must begin with a letter.
| MEAM_LAMMPS_AlviFaiyadMunshi_2022_AgAu__MO_511467482222_000 |
| DOI |
10.25950/9f5a9bf2 https://doi.org/10.25950/9f5a9bf2 https://commons.datacite.org/doi.org/10.25950/9f5a9bf2 |
| KIM Item Type
Specifies whether this is a Portable Model (software implementation of an interatomic model); Portable Model with parameter file (parameter file to be read in by a Model Driver); Model Driver (software implementation of an interatomic model that reads in parameters).
| Portable Model using Model Driver MEAM_LAMMPS__MD_249792265679_002 |
| Driver | MEAM_LAMMPS__MD_249792265679_002 |
| KIM API Version | 2.3 |
| Potential Type | meam |
This bar chart plot shows the mono-atomic body-centered cubic (bcc) lattice constant predicted by the current model (shown in the unique color) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This graph shows the cohesive energy versus volume-per-atom for the current mode for four mono-atomic cubic phases (body-centered cubic (bcc), face-centered cubic (fcc), simple cubic (sc), and diamond). The curve with the lowest minimum is the ground state of the crystal if stable. (The crystal structure is enforced in these calculations, so the phase may not be stable.) Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the mono-atomic face-centered diamond lattice constant predicted by the current model (shown in the unique color) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This graph shows the dislocation core energy of a cubic crystal at zero temperature and pressure for a specific set of dislocation core cutoff radii. After obtaining the total energy of the system from conjugate gradient minimizations, non-singular, isotropic and anisotropic elasticity are applied to obtain the dislocation core energy for each of these supercells with different dipole distances. Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the mono-atomic face-centered cubic (fcc) elastic constants predicted by the current model (shown in blue) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the mono-atomic face-centered cubic (fcc) lattice constant predicted by the current model (shown in red) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the intrinsic and extrinsic stacking fault energies as well as the unstable stacking and unstable twinning energies for face-centered cubic (fcc) predicted by the current model (shown in blue) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the mono-atomic face-centered cubic (fcc) relaxed surface energies predicted by the current model (shown in blue) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This bar chart plot shows the mono-atomic simple cubic (sc) lattice constant predicted by the current model (shown in the unique color) compared with the predictions for all other models in the OpenKIM Repository that support the species. The vertical bars show the average and standard deviation (one sigma) bounds for all model predictions. Graphs are generated for each species supported by the model.
(No matching species)This Model requires a Model Driver. Click below for the Model Driver MEAM_LAMMPS__MD_249792265679_002 archive.