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Subsystem density functional theory with meta-generalized gradient approximation exchange-correlation functionals

Academic Article
Publication Date:
2015
abstract:
We analyze the methodology and the performance of subsystem density functional theory (DFT) with meta-generalized gradient approximation (meta-GGA) exchange-correlation functionals for non-bonded molecular systems. Meta-GGA functionals depend on the Kohn-Sham kinetic energy density (KED), which is not known as an explicit functional of the density. Therefore, they cannot be directly applied in subsystem DFT calculations. We propose a Laplacian-level approximation to the KED which overcomes this limitation and provides a simple and accurate way to apply meta-GGA exchange-correlation functionals in subsystem DFT calculations. The so obtained density and energy errors, with respect to the corresponding supermolecular calculations, are comparable with conventional approaches, depending almost exclusively on the approximations in the non-additive kinetic embedding term. An embedding energy error decomposition explains the accuracy of our method.
Iris type:
01.01 Articolo in rivista
Keywords:
KINETIC-ENERGY DENSITY; CONSTRAINED ELECTRON-DENSITY; KOHN-SHAM EQUATIONS; NONBONDED INTERACTIONS; CORRELATION POTENTIALS; MOLECULAR-PROPERTIES; GGA FUNCTIONALS; ACCURACY; THERMOCHEMISTRY; FORMULATION
List of contributors:
Fabiano, Eduardo; DELLA SALA, Fabio
Authors of the University:
DELLA SALA FABIO
FABIANO EDUARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/290256
Published in:
THE JOURNAL OF CHEMICAL PHYSICS
Journal
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