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Size consistency, effective Hamiltonians

The MPn method treats the correlation part of the Hamiltonian as a perturbation on the Hartree-Fock part, and truncates the perturbation expansion at some order, typically n = 4. MP4 theory incorporates the effect of single, double, triple and quadruple substitutions. The method is size-consistent but not variational. It is commonly believed that the series MPl, MP2, MP3,. .. converges very slowly. [Pg.206]

Obviously, the sfss technique is not bounded to be applied only in AIMP calculations or in other valence-only calculations, but it can be used with any relativistic Hamiltonian which can be separated in spin-free and spin-dependent parts [48]. Being a very simple procedure, it is an effective means for the inclusion of dynamic correlation and size consistency in spin-orbit Cl calculations with any choice of Cl basis, such as determinants, double-group adapted configuration state functions, or spin-free Cl functions. In the latter case [46], the technique reduces to changing the diagonal elements of the spin-orbit Cl matrix. [Pg.429]

Size consistency of the Brillouin-Wigner perturbation theory is studied using the Lippmann-Schwinger equation and an exponential ansatz for the wave function. Relation of this theory to the coupled cluster method is studied and a comparison through the effective Hamiltonian method is also provided. [Pg.43]

Although BWPT looks conceptually simple, it has the disadvantage that the effective Hamiltonian depends in this case on the exact energy, which means that correlation corrections can only be calculated iteratively to get a self-consistent solution. A direct consequence of this is that only SRS PT is possible for BWPT. Another disadvantage is that not all orders of BWPT are size-extensive. [Pg.1718]


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Effective Hamiltonian

Effective Hamiltonians

Size consist

Size-consistency

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