Spherical Hartree-Fock calculations with linear momentum projection before the variation.Part I: Energies, form factors, charge densities and mathematical sum rules
arXiv:nucl-th/0503059 · doi:10.1140/epja/i2003-10108-1
Abstract
Spherical Hartree--Fock calculations with projection onto zero total linear momentum before the variation are performed for the nuclei 4He, 12C, 16O, 28Si, 32S and 40Ca using a density--independent effective nucleon--nucleon interaction. The results are compared to those of usual spherical Hartree--Fock calculations subtracting the kinetic energy of the center of mass motion either before or after the variation and to the results obtained analytically with oscillator occupations. Total energies, hole--energies, elastic charge form factors and charge densities and the mathematical Coulomb sum rules are discussed.
16 pages, 13 postscript figures
Cited by in corpus (24)
- Mean field and beyond description of nuclear structure with the Gogny force: A review
- Configuration Mixing within the Energy Density Functional Formalism: Removing Spurious Contributions from Non-Diagonal Energy Kernels
- Symmetry restoration in mean-field approaches
- Hartree-Fock and Many-Body Perturbation Theory with Correlated Realistic NN-Interactions
- Projection on particle number and angular momentum: Example of triaxial Bogoliubov quasiparticle states
- Multi-reference symmetry-projected variational approaches for ground and excited states of the one-dimensional Hubbard model
- Symmetry-projected variational approach for ground and excited states of the two-dimensional Hubbard model
- Density functional theory and Kohn-Sham scheme for self-bound systems
- Breaking and restoring symmetries within the nuclear energy density functional method
- Beyond mean-field study of elastic and inelastic electron scattering off nuclei
- The nuclear energy density functional formalism
- Properties of exotic nuclei and their linkage to the nucleonic interaction
- Variational approximations to exact solutions in shell-model valence spaces: systematic calculations in the -shell
- Variational description of the ground state of the repulsive two-dimensional Hubbard model in terms of nonorthogonal symmetry-projected Slater determinants
- N-electron Slater determinants from non-unitary canonical transformations of fermion operators
- Generalization of internal Density Functional Theory and Kohn-Sham scheme to multicomponent systems, and link with traditional DFT
- Lipkin translational-symmetry restoration in the mean-field and energy-density-functional methods
- Generator coordinate method with a conjugate momentum: application to the particle number projection
- Exact restoration of Galilei invariance in density functional calculations with quantum Monte Carlo
- An alternate well-founded way to treat the center-of-mass correlations: use of a local center-of-mass correlations potential
- Formulation of the Generator Coordinate Method with arbitrary bases
- The one-body and two-body density matrices of finite nuclei with an appropriate treatment of the center-of-mass motion
- Impact of choices for center-of-mass correction energy on the surface energy of Skyrme energy density functionals
- Center-of-Mass Correction in a Relativistic Hartree Approximation Including the Meson Degrees of Freedom