Quantum zero-point effects contribute less to low-temperature dislocation glide in bcc metals than earlier empirical-potential studies indicated, leaving the simulation-experiment discrepancy unresolved.
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Revisiting quantum effects on dislocation glide in bcc metals from DFT calculations and machine-learning potentials
Quantum zero-point effects contribute less to low-temperature dislocation glide in bcc metals than earlier empirical-potential studies indicated, leaving the simulation-experiment discrepancy unresolved.
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