Foundation machine-learning interatomic potentials (MLIPs) are rapidly replacing density-functional theory (DFT) for modeling structure and nuclear dynamics, making their fidelity in strongly correlated systems an urgent question. We test three foundation potentials on the low-temperature order of three correlated, isostructural ABO3 perovskite oxides: LaMnO3 (d4), LaCoO3 (d6), and NdNiO3 (d7). We run molecular dynamics for 1 ns on 80- and 160-atom supercells from 50 to 300 K with no system-specific training. These oxides expose three distinct classes of low-temperature order that define a hierarchy of difficulty for the potentials. The scalar class, represented by NdNiO3, has a simple geometric fingerprint and is captured. The vector class, represented by LaMnO3, requires identifying which Cartesian axis carries the long bond at each site, and is captured in magnitude but not in symmetry. The on-site class, represented by the low-spin to high-spin crossover in LaCoO3, is a purely local multiplet population shift with no spatial order parameter and remains inaccessible to present-day MLIPs.
The full elastic constant tensor and the surface energies of five low-index planes—(100), (101), (110), (111), and (001)—of β-Sn (tetragonal, I41/amd) are calculated using density functional theory (DFT) with the Perdew–Burke–Ernzerhof (PBE) functional and a universal machine-learning interatomic potential (MLIP; Prefe...
H. Tatsumi, Atsushi M. Ito, Arimichi Takayama et al.· Modelling and Simulation in...· 0 citations
The OSOS database establishes a rigorous standard to guide the development and validation of next-generation density functionals and machine-learning potentials for doublet radicals.
Amir Karton· Journal of Physical Chemistr...· 0 citations
Coupled-cluster theory defines the accuracy standard for molecular electronic-structure properties but scales too steeply for routine application, whereas density-functional theory is affordable yet systematically biased. We resolve this trade-off with a single equivariant network, HARP (Hamiltonian Read-out for Proper...
Here, we summarize the general use of the symmetry-adapted perturbation theory (SAPT) toward empirical prediction of the energy (and splitting when present) of the Qx- and Qy-bands in a large variety of substituted phthalocyanines (Pcs) and their analogues (i.e., tetraazaporphyrins (TAPs), naphthalocyanines (Ncs), and...
V. Nemykin, M. McKenna, Brendon J. McNicholas· Journal of Physical Chemistr...· 0 citations