Analytic atomic gradients in the fermi‐löwdin orbital self‐interaction correction

Kai Trepte, Sebastian Schwalbe, Torsten Hahn, Jens Kortus, Der-you Kao, Yoh Yamamoto, Tunna Baruah, Rajendra R. Zope, Kushantha P. K. Withanage, Juan E. Peralta,

Journal of Computational Chemistry · 2018 · 19 citations · 29 references

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Abstract

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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