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Anharmonic force fields from analytic CCSD(T) second derivatives: HOF and F2O
47
Citations
35
References
1999
Year
Numerical AnalysisEngineeringAnalytic CcsdAnharmonic Force FieldsSecond DerivativesComputational ChemistryEnergy MinimizationPotential TheoryNumerical SimulationDouble ExcitationsCluster SciencePerturbation MethodPhysicsAnalytic Second DerivativesQuantum ChemistryCondensed Matter TheoryConformal Field TheoryAb-initio MethodNatural SciencesCluster TheoryApplied PhysicsCondensed Matter PhysicsMany-body Problem
The recent implementation of analytic second derivatives for CCSD(T) (coupled cluster theory with single and double excitations augmented by a perturbational treatment of connected triple excitations) has been combined with a numerical finite difference procedure to calculate cubic and semidiagonal quartic force fields. Computational details of this approach are outlined. Applications are reported for HOF and F2O. The CCSD(T) results are in excellent agreement with experiment and represent a substantial improvement over the results obtained from MP2 (Mo/ller–Plesset second-order perturbation theory).
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