Fitting NLO pseudopotentials through central plus tensor Landau parameters
arXiv:1401.7914 · doi:10.1088/0954-3899/41/6/065104
Abstract
Landau parameters determined from phenomenological finite-range interactions are used to get an estimation of NLO pseudopotentials parameters. The parameter sets obtained in this way are shown to lead to consistent results concerning saturation properties. The uniqueness of this procedure is discussed, and an estimate of the error induced by the truncation at NLO is given.
References in corpus (6)
- Nuclear energy density optimization: Shell structure
- Surface Symmetry Energy of Nuclear Energy Density Functionals
- Microscopically-based energy density functionals for nuclei using the density matrix expansion: Implementation and pre-optimization
- Effective pseudopotential for energy density functionals with higher order derivatives
- Convergence of density-matrix expansions for nuclear interactions
- New parameterization of Skyrme's interaction for regularized multi-reference energy density functional calculations
Cited by in corpus (14)
- Linear response theory and neutrino mean free path using Brussels-Montreal Skyrme functionals
- Linear response of homogeneous nuclear matter with energy density functionals
- Solution of Hartree-Fock-Bogoliubov equations and fitting procedure using N2LO Skyrme pseudo-potential in spherical symmetry
- Extended Skyrme interactions for transport model simulations of heavy-ion collisions
- Extended Skyrme pseudo-potential deduced from infinite matter properties
- Two-body contributions to the effective mass in nuclear effective interactions
- Extended Skyrme Equation of State in asymmetric nuclear matter
- Nuclear collective dynamics in the lattice Hamiltonian Vlasov method
- Tools for incorporating a D-wave contribution in Skyrme energy density functionals
- Infinite matter properties and zero-range limit of nonrelativistic finite-range interactions
- Linear Response Theory with finite-range interactions
- Approximate self-energy for Fermi systems with large s-wave scattering length: a step towards density functional theory
- Partial wave decomposition of finite-range effective tensor interaction
- Skyrme pseudopotentials at next-to-next-to-leading order Construction of local densities and first symmetry-breaking calculations