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Benchmarking density-functional-theory calculations of rotational g tensors and magnetizabilities using accurate coupled-cluster calculations

Lutnæs, O.B.; Teale, A.M.; Helgaker, T.; Tozer, D.J.; Ruud, K.; Gauss, J.

Benchmarking density-functional-theory calculations of rotational g tensors and magnetizabilities using accurate coupled-cluster calculations Thumbnail


Authors

O.B. Lutnæs

A.M. Teale

T. Helgaker

K. Ruud

J. Gauss



Abstract

An accurate set of benchmark rotational g tensors and magnetizabilities are calculated using coupled-cluster singles-doubles (CCSD) theory and coupled-cluster single-doubles-perturbative-triples [CCSD(T)] theory, in a variety of basis sets consisting of (rotational) London atomic orbitals. The accuracy of the results obtained is established for the rotational g tensors by careful comparison with experimental data, taking into account zero-point vibrational corrections. After an analysis of the basis sets employed, extrapolation techniques are used to provide estimates of the basis-set-limit quantities, thereby establishing an accurate benchmark data set. The utility of the data set is demonstrated by examining a wide variety of density functionals for the calculation of these properties. None of the density-functional methods are competitive with the CCSD or CCSD(T) methods. The need for a careful consideration of vibrational effects is clearly illustrated. Finally, the pure coupled-cluster results are compared with the results of density-functional calculations constrained to give the same electronic density. The importance of current dependence in exchange–correlation functionals is discussed in light of this comparison.

Citation

Lutnæs, O., Teale, A., Helgaker, T., Tozer, D., Ruud, K., & Gauss, J. (2009). Benchmarking density-functional-theory calculations of rotational g tensors and magnetizabilities using accurate coupled-cluster calculations. The Journal of Chemical Physics, 131(14), https://doi.org/10.1063/1.3242081

Journal Article Type Article
Publication Date Oct 1, 2009
Deposit Date Feb 6, 2012
Publicly Available Date Oct 24, 2012
Journal Journal of Chemical Physics
Print ISSN 0021-9606
Electronic ISSN 1089-7690
Publisher American Institute of Physics
Peer Reviewed Peer Reviewed
Volume 131
Issue 14
DOI https://doi.org/10.1063/1.3242081
Keywords Coupled cluster calculations, Density functional theory, Perturbation theory, Rotational states, Vibrational states

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Copyright Statement
Copyright 2009 American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in Lutnæs, O.B. and Teale, A.M. and Helgaker, T. and Tozer, D.J. and Ruud, K. and Gauss, J. (2009) 'Benchmarking density-functional-theory calculations of rotational g tensors and magnetizabilities using accurate coupled-cluster calculations.', The journal of chemical physics., 131 (14 ). p. 144104 and may be found at http://dx.doi.org/10.1063/1.3242081





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