Publication | Open Access
Analytic atomic gradients in the fermi‐löwdin orbital self‐interaction correction
19
Citations
29
References
2018
Year
Pulay CorrectionQuantum ScienceEngineeringPhysicsNatural SciencesApplied PhysicsComplete Analytic ExpressionAtomic PhysicsAnalytic Atomic GradientsMolecular MechanicQuantum ChemistryEnergy MinimizationElectronic StructureAb-initio MethodAnalytic ForcesMany-body Problem
We derived, implemented, and thoroughly tested the complete analytic expression for atomic forces, consisting of the Hellmann-Feynman term and the Pulay correction, for the Fermi-Löwdin orbital self-interaction correction (FLO-SIC) method. Analytic forces are shown to be numerically accurate through an extensive comparison to forces obtained from finite differences. Using the analytic forces, equilibrium structures for a small set of molecules were obtained. This work opens the possibility of routine self-interaction free geometrical relaxations of molecules using the FLO-SIC method. © 2018 Wiley Periodicals, Inc.
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