Gauge invariance of the hartree-fock approximation.
Gauge invariance of Hartree-Fock approximation in presence of nonlocal potentials
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Gauge invariance of Hartree-Fock approximation in presence of nonlocal potentials
Hartree-Fock calculation method as zero-order approximation for determining atomic and molecular second-order properties
Coupled Hartree-Fock approximation for calculating frequency-dependent refractive index of helium gas
Perturbation expansions for ground state function of helium atom, using Hartree or Hartree-Fock model Hamiltonian, based on Weiss-Martin variation-perturbation calculation
Hartree-Fock approximation method for calculating efficiencies of multiple-photon processes
Improving uncoupled Hartree-Fock expectation values for atomic and molecular properties
Collective oscillations of atoms in Hartree- Fock approximation
Improvement of uncoupled Hartree-Fock expectation values for physical properties
We have recently estimated the total energy of the BeH 2 molecule as -15.918 ± 0.015 au. One of the steps in the analysis was to estimate the difference between the SCF energies computed with a minimal basis set of Slater orbits and with the best possible single-determinant wave function, the so-called Hartree-Fock limit and was predicted to be -15.773 ± 0.007 au for BeH 2 .
Comparison of hartree-fock orbital with first natural spin orbital for two-electron system
Formulation of hartree-fock approximation for final states of atomic oxygen photoionization
Wave functions and total energy of energy states of diatomic molecules - Hartree-Fock calculation
Magnetization using Hartree-Fock approximation in terms of boson distribution for uniformly interacting spins system
Photoionization cross sections calculated for carbon, nitrogen and oxygen ions, using Hartree- Fock approximation for final transition stages
Hartree-Fock-Slater calculation of internal conversion coefficients for magnetic multipoles for yttrium-87 with 0.05 or 0.15 mc-square gamma energy values
Atomic and molecular time-dependent quantum- mechanical perturbation theory with differential equation formulation within Hartree-Fock approximation
Molecular orbital electron charge density pictures, noting representation close to Hartree-Fock calculation method
Results are reported for quantum-mechanical studies of the ions HSiO(+) and HOSi(+). The equilibrium geometries, rotation constants, and relative stabilities of these ions are determined using the matrix Hartree-Fock model with a basis set of Slater exponential functions. Optimum bond lengths are calculated, and an empirical correction to the computed bond lengths is introduced. The isomer HOSi(+) is found to be more stable than HSiO(+). A frequency of 35.77 GHz is obtained for the J = 1-0 transition of HOSi(+) by assuming that the vibration-rotation interaction constants for this isomer are the same as those for HCP.