4.7 Article

Analytical energy gradients for second-order multireference perturbation theory using density fitting

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 138, Issue 10, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.4793737

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Funding

  1. Deutsche Forschungsgemeinschaft (DFG) as part of the SimTech Cluster of Excellence at the University of Stuttgart

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We present algorithms for computing analytical energy gradients for multi-configuration self-consistent field methods and partially internally contracted complete active space second-order perturbation theory (CASPT2) using density fitting (DF). Our implementation is applicable to both single-state and multi-state CASPT2 analytical gradients. The accuracy of the new methods is demonstrated for structures and excitation energies of valence and Rydberg states of pyrrole, as well as for structures and adiabatic singlet-triplet energy splittings for the hydro-, the O,O'-formato-, and the N,N'-diiminato-copper-dioxygen complexes. It is shown that the effects of density fitting on optimized structures and relative energies are negligible. For cases in which the total cost is dominated by the integral evaluations and transformations, the DF-CASPT2 gradient calculations are found to be faster than the corresponding conventional calculations by typically a factor of three to five using triple-zeta basis sets, and by about a factor of ten using quadruple-zeta basis sets. (C) 2013 American Institute of Physics. [http://dx.doi.org/10.1063/1.4793737]

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