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Second-order perturbation theory with a complete active space self-consistent field reference function
The Journal of Chemical Physics · 1992 · Vol. 96(2) · pp. 1218–1226
Kerstin Andersson✉(Swedish e-Science Research Centre)Per‐Åke Malmqvist(Swedish e-Science Research Centre)Björn O. Roos(Swedish e-Science Research Centre)
Abstract
The recently implemented second-order perturbation theory based on a complete active space self-consistent field reference function has been extended by allowing the Fock-type one-electron operator, which defines the zeroth-order Hamiltonian to have nonzero elements also in nondiagonal matrix blocks. The computer implementation is now less straightforward and more computer time will be needed in obtaining the second-order energy. The method is illustrated in a series of calculations on N2, NO, O2, CH3, CH2, and F−.
Advanced Chemical Physics StudiesSpectroscopy and Laser ApplicationsAtmospheric Ozone and ClimateHamiltonian (control theory)Fock spaceComplete active spacePerturbation (astronomy)Perturbation theory (quantum mechanics)MathematicsMathematical physicsPhysicsQuantum mechanicsElectron
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References
Second-order perturbation theory with a CASSCF reference function
The Journal of Physical Chemistry · 1990 · 3,301 citations
A simple method for the evaluation of the second-order-perturbation energy from external double-excitations with a CASSCF reference wavefunction
Chemical Physics · 1982 · 294 citations
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