Non-self-consistent density-functional theory exchange-correlation forces for GGA functionals

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Abstract

When using density functional theory (DFT), generalized gradient approximation (GGA) functionals are often necessary for accurate modeling of important properties of biomolecules, including hydrogen-bond strengths and relative energies of conformers. We consider the calculations of forces using non-self-consistent (NSC) methods based on the Harris-Foulkes expression for energy. We derive an expression for the GGA NSC force on atoms, valid for a hierarchy of methods based on local orbitals, and discuss its implementation in the linear scaling DFT code Conquest, using a standard (White-Bird) approach. We investigate the use of NSC structural relaxations before full self-consistent relaxations as a method for improving convergence. Example calculations for glycine and small alanine peptides suggest that NSC pre-relaxations of the structure are indeed useful to save computer effort and time. © 2009 American Chemical Society.

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Torralba, A. S., Bowler, D. R., Miyazaki, T., & Gillan, M. J. (2009). Non-self-consistent density-functional theory exchange-correlation forces for GGA functionals. Journal of Chemical Theory and Computation, 5(6), 1499–1505. https://doi.org/10.1021/ct8005425

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