Pb-2021-08-04-all-icsd

../../_images/pareto246.png

The current structure dataset comprises 14168 structures generated from unique ICSD prototype structures composed of single elements with zero oxidation state. A more detailed procedure is found in Phys. Rev. B 99, 214108 (2019). The procedure to estimate interatomic potentials from the dataset is found in Phys. Rev. B 99, 214108 (2019) and Phys. Rev. B 102, 174104 (2020).

Improvement from **-dataset-10000-all-icsd

  • More robust for structures with a small interatomic distance

  • More robust for structures with a large interatomic distance

  • More complex potential models are included.

  • MLPs are estimated without using DFT stress tensors.

  • MLPs are estimated by using small regression weights for energetically unstable structures.

Predictions using Pareto optimal MLPs

../../_images/prediction-ecoh-volume140.png

The cohesive energy and volume are obtained by performing a local structure optimization from the DFT equilibrium structure. In addition, the DFT equilibrium structure is obtained by optimizing a prototype structure included in ICSD, and the prototype is used as the structure legend in the figure. Therefore, the structure type of the converged structure is sometimes different from that shown in the legend even if the potential energy surface predicted by MLP is almost the same as the true one.

The other properties predicted by each Pareto optimal MLP are available from column Predictions in the following table.

Pareto optimals

Name

Time [ms] (1core/36cores)

RMSE [meV/atom]/[eV/A]

Predictions

Files

pair-14

0.017 / 0.038

47.884 / 0.0990

pair-27

0.018 / 0.005

14.222 / 0.0642

pair-28

0.027 / 0.007

11.499 / 0.0609

pair-29

0.039 / 0.009

11.306 / 0.0626

pair-31

0.050 / 0.007

10.467 / 0.0594

pair-32

0.051 / 0.010

9.5828 / 0.0585

predictions

mlp.lammps input log

pair-33

0.069 / 0.012

9.4665 / 0.0572

predictions

mlp.lammps input log

pair-34

0.096 / 0.016

8.6344 / 0.0581

predictions

mlp.lammps input log

pair-35

0.121 / 0.021

7.9531 / 0.0595

predictions

mlp.lammps input log

pair-38

0.171 / 0.022

7.0298 / 0.0536

predictions

mlp.lammps input log

gtinv-300

0.228 / 0.023

4.7748 / 0.0417

predictions

mlp.lammps input log

gtinv-235

0.281 / 0.023

4.5529 / 0.0399

predictions

mlp.lammps input log

gtinv-303

0.339 / 0.029

3.3054 / 0.0384

predictions

mlp.lammps input log

gtinv-175

0.376 / 0.031

3.2298 / 0.0372

predictions

mlp.lammps input log

gtinv-240

0.393 / 0.030

3.1645 / 0.0367

predictions

mlp.lammps input log

gtinv-312

0.472 / 0.036

3.0315 / 0.0356

predictions

mlp.lammps input log

gtinv-190

0.523 / 0.038

2.9059 / 0.0342

predictions

mlp.lammps input log

gtinv-255

0.573 / 0.040

2.8526 / 0.0339

predictions

mlp.lammps input log

gtinv-195

0.748 / 0.053

2.7196 / 0.0335

predictions

mlp.lammps input log

gtinv-260

0.787 / 0.053

2.6319 / 0.0330

predictions

mlp.lammps input log

gtinv-242

1.506 / 0.092

2.6241 / 0.0321

predictions

mlp.lammps input log

gtinv-191

1.600 / 0.102

2.5639 / 0.0309

predictions

mlp.lammps input log

gtinv-339

1.704 / 0.073

2.4101 / 0.0324

predictions

mlp.lammps input log

gtinv-342

1.775 / 0.083

2.1237 / 0.0308

predictions

mlp.lammps input log

gtinv-348

2.068 / 0.102

2.0405 / 0.0305

predictions

mlp.lammps input log

gtinv-343

2.986 / 0.131

1.9335 / 0.0287

predictions

mlp.lammps input log

gtinv-354

3.661 / 0.154

1.9158 / 0.0286

predictions

mlp.lammps input log

gtinv-357

3.742 / 0.166

1.7071 / 0.0276

predictions

mlp.lammps input log

Column “Time” shows the time required to compute the energy and forces for 1 MD step and 1 atom, which is estimated from a simulation of 10 runs for a structure with 284 atoms using a workstation with Intel(R) Xeon(R) CPU E5-2695 v4 @ 2.10GHz. Note that the MLPs should be carefully used for extreme structures. The MLPs often return meaningless values for them.

  • All Pareto optimal MLPs are available here.