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  5. Assessment of correlation energies based on the random-phase approximation

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Article
English
2012

Assessment of correlation energies based on the random-phase approximation

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English
2012
New Journal of Physics
Vol 14 (4)
DOI: 10.1088/1367-2630/14/4/043002

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Kresse Georg
Kresse Georg

University of Vienna

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Joachim Paier
Xinguo Ren
Patrick Rinke
+4 more

Abstract

The random-phase approximation to the ground state correlation energy (RPA) in combination with exact exchange (EX) has brought the Kohn–Sham (KS) density functional theory one step closer towards a universal, 'general purpose first-principles method'. In an effort to systematically assess the influence of several correlation energy contributions beyond RPA, this paper presents dissociation energies of small molecules and solids, activation energies for hydrogen transfer and non-hydrogen transfer reactions, as well as reaction energies for a number of common test sets. We benchmark EX + RPA and several flavors of energy functionals going beyond it: second-order screened exchange (SOSEX), single-excitation (SE) corrections, renormalized single-excitation (rSE) corrections and their combinations. Both the SE correction and the SOSEX contribution to the correlation energy significantly improve on the notorious tendency of EX + RPA to underbind. Surprisingly, activation energies obtained using EX + RPA based on a KS reference alone are remarkably accurate. RPA + SOSEX + rSE provides an equal level of accuracy for reaction as well as activation energies and overall gives the most balanced performance, because of which it can be applied to a wide range of systems and chemical reactions.

How to cite this publication

Joachim Paier, Xinguo Ren, Patrick Rinke, Gustavo E. Scuseria, Andreas Grüneis, Kresse Georg, Matthias Scheffler (2012). Assessment of correlation energies based on the random-phase approximation. New Journal of Physics, 14(4), pp. 043002-043002, DOI: 10.1088/1367-2630/14/4/043002.

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Publication Details

Type

Article

Year

2012

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

New Journal of Physics

DOI

10.1088/1367-2630/14/4/043002

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