You need to agree to share your contact information to access this model

This repository is publicly accessible, but you have to accept the conditions to access its files and content.

Log in or Sign Up to review the conditions and access this model content.

Correction layers for GRACE-2L-SMAX-OMAT-large

Additive correction layers for 13 elements (Ag, Al, Au, Ca, Cu, Mg, Mo, Ni, Pa, Ti, U, V, Zr). Each layer is a linear atomic cluster expansion (ACE) that is added to the energy of the foundation model GRACE-2L-SMAX-OMAT-large. The layers are fitted so that the corrected model reproduces the transition temperatures of the SGTE unary assessment at zero pressure. The base model is not modified.

Use in LAMMPS

LAMMPS must be built with the GRACE (pair_style grace) and ML-PACE (pair_style pace) packages. The layer is combined with the base model through hybrid/overlay:

pair_style      hybrid/overlay grace pace
pair_coeff      * * grace /path/to/GRACE-2L-SMAX-OMAT-large Cu
pair_coeff      * * pace layers/Cu_correction.yace Cu

example.lammps contains a complete input. Each layer is valid only together with GRACE-2L-SMAX-OMAT-large and only for the element it was fitted for. The layers are for single elements; they contain no terms for mixed-element environments.

Files

File Content
layers/<El>_correction.yace layer in the format read by pair_style pace
layers/<El>_correction.yaml the same layer in the python-ace potential format
manifest.json basis size, cutoff and transition temperatures per element
SHA256SUMS checksums of the layer files
example.lammps example LAMMPS input

All layers use a cutoff of 6.5 Å and simplified spherical Bessel radial functions. The basis contains 62 functions (Ag: 78, Au: 136).

Transition temperatures at zero pressure

Mean and standard deviation over independent reversible scaling sweeps (four sweeps; three for Ag and Au).

Element Transition SGTE (K) GRACE (K) GRACE + layer (K)
Al melting 933 926 933 ± 2
Cu melting 1358 1270 1359 ± 2
Ni melting 1728 1681 1736 ± 5
Ag melting 1235 991 1228 ± 5
Au melting 1337 842 1331 ± 4
Mg melting 923 899 927 ± 2
Ca fcc–bcc 716 471 701 ± 21
Ca melting 1115 1078 1105 ± 5
Ti hcp–bcc 1155 1283 1149 ± 14
Ti melting 1941 1788 1941 ± 9
Zr hcp–bcc 1139 1130 1101 ± 8
Zr melting 2128 1947 2131 ± 4
V melting 2183 2149 2187 ± 3
Mo melting 2896 2791 2891 ± 4
U melting 1408 1236 1405 ± 8
Pa melting 1845 1832 1842 ± 12

Scope and known limitations

  • The layers were fitted at zero pressure. At finite pressure the transition lines follow the pressure dependence of the base model; for Ti the hcp–bcc temperature of the corrected model does not decrease with pressure as observed experimentally.
  • The layers change the free energy differences between phases; they do not correct the transition entropies of the base model.
  • Properties of the base model that the layers do not address remain: bcc V has a negative C44 in GRACE-2L-SMAX-OMAT-large, bcc U is mechanically unstable below about 900 K, and fcc Pa is lower in energy than the experimental ground state α-Pa.
  • The layers leave the 0 K lattice parameters, bulk moduli and relative energies of competing crystal structures close to those of the base model.

Citation

If you use these layers, please cite the accompanying publication (reference to be added) and the GRACE foundation model.

Downloads last month

-

Downloads are not tracked for this model. How to track
Inference Providers NEW
This model isn't deployed by any Inference Provider. 🙋 Ask for provider support