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Hartree-Fock LCAO Method for Periodic Systems

Hartree—Fock LCAO Method for Periodic Systems... [Pg.105]

The unrestricted and restricted open-sheU Hartree-Fock Methods (UHF and ROHF) for crystals use a single-determinant wavefunction of type (4.40) introduced for molecules. The differences appearing are common with those examined for the RHF LCAO method use of Bloch functions for crystalline orbitals, the dependence of the Fock matrix elements on the lattice sums over the direct lattice and the Brillouin-zone summation in the density matrix calculation. The use of one-determinant approaches is the only possibility of the first-principles wavefunction-based calculations for crystals as the many-determinant wavefunction approach (used for molecules) is practically unrealizable for the periodic systems. The UHF LCAO method allowed calculation of the bulk properties of different transition-metal compounds (oxides, perovskites) the qrstems with open shells due to the transition-metal atom. We discuss the results of these calculations in Chap. 9. The point defects in crystals in many cases form the open-sheU systems and also are interesting objects for UHF LCAO calculations (see Chap. 10). [Pg.122]


See other pages where Hartree-Fock LCAO Method for Periodic Systems is mentioned: [Pg.5]    [Pg.119]    [Pg.224]    [Pg.4]    [Pg.92]    [Pg.617]    [Pg.282]    [Pg.158]   


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Hartree-Fock method

Hartree-Fock methods, for

LCAO

LCAOs

Periodic Hartree-Fock

Periodic methods

Periodic systems

System method

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