SCF procedure does not converge during ML-FF MD training trajectory
Posted: Mon Feb 12, 2024 2:27 pm
Dear VASP community,
we are currently trying to learn a ML-FF for a Ga SCALMS system with additional H atoms. To that reason, we placed five H2 molecules in vacuum over a Ga liquid (see POSCAR).
During the ML-FF MD calculation the very first SCF cycle is terminated with the error message Error EDDDAV: Call to ZHEGV failed. Returncode = 15 1 16 after a few SCF steps. Looking at the energy change etc., it could bee seen, that the cycle does not convergence properly.
We decided to perform the calculation with ISPIN = 2 based on previous ML-FF calculations, where the trajectory will be more stable, if the system is formally spin-polarized. However, for this system we already tried to change ISPIN to 1 (see directory no_spin). Then, the SCF cycles convergence properly. However, looking at the XDATCAR, the trajectory seems not plausible. H2 molecules are splitted and all molecules move too fast.
Since the file size for the folder no_spin is exceeds the maximum filesize per attachment, the corresponding files are uploaded to our cloud system:
https://faubox.rrze.uni-erlangen.de/get ... TN/no_spin
Best regards
we are currently trying to learn a ML-FF for a Ga SCALMS system with additional H atoms. To that reason, we placed five H2 molecules in vacuum over a Ga liquid (see POSCAR).
During the ML-FF MD calculation the very first SCF cycle is terminated with the error message Error EDDDAV: Call to ZHEGV failed. Returncode = 15 1 16 after a few SCF steps. Looking at the energy change etc., it could bee seen, that the cycle does not convergence properly.
We decided to perform the calculation with ISPIN = 2 based on previous ML-FF calculations, where the trajectory will be more stable, if the system is formally spin-polarized. However, for this system we already tried to change ISPIN to 1 (see directory no_spin). Then, the SCF cycles convergence properly. However, looking at the XDATCAR, the trajectory seems not plausible. H2 molecules are splitted and all molecules move too fast.
Since the file size for the folder no_spin is exceeds the maximum filesize per attachment, the corresponding files are uploaded to our cloud system:
https://faubox.rrze.uni-erlangen.de/get ... TN/no_spin
Best regards