Skyrme functional with tensor terms from ab initio calculations of neutron-proton drops
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- Type
- article
- Published
- 2018-10-23
- Cited by
- 21
- References
- 104
- Access
- Open access
- OpenAlex
- https://openalex.org/W2924278848
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:84841764
Keywords
Isovector, Physics, Dipole, Neutron, Tensor (intrinsic definition)
References
- Coupled-cluster computations of atomic nuclei
- Neutron matter at zero temperature with an auxiliary field diffusion Monte Carlo method
- NUCLEAR STRUCTURE AND NUCLEAR REACTIONS
- Evolution of nuclear shell structure due to the pion exchange potential
- Hartree-Fock-Bogolyubov description of nuclei near the neutron-drip line
- The Landau-Migdal Parameters, g'_NN and g'_NΔ and Pion Condensations
- The Tensor Part of the Skyrme Energy Density Functional
- Shape coexistence and the effective nucleon-nucleon interaction
- Measurement of the Neutron Radius of 208Pb Through Parity Violation in Electron Scattering
- Static Response of Neutron Matter.
- Toward ab initio density functional theory for nuclei
- ELEMENTS OF THE BRUECKNER--GOLDSTONE THEORY OF NUCLEAR MATTER.
- Incompressibility of Nuclear Matter from the Giant Monopole Resonance
- Spin–orbit splitting and the tensor component of the Skyrme interaction
- Tensor interaction in mean-field and density functional theory approaches to nuclear structure
- Ab initio study of neutron drops with chiral Hamiltonians
- Spin and spin-isospin instabilities and Landau parameters of Skyrme interactions with tensor correlations
- Properties of trapped neutrons interacting with realistic nuclear Hamiltonians
- Nuclear tensor interaction in a covariant energy density functional
- Neutron drops and Skyrme energy-density functionals.
Cited by
- Improvement of functionals in density functional theory by the inverse Kohn–Sham method and density functional perturbation theory
- Towards an ab initio covariant density functional theory for nuclear structure
- Skyrme Functional with Tensor Terms from ab initio Calculations: Results for the Spin--Orbit Splittings
- Quenching factor of Gamow-Teller and spin dipole giant resonances
- Effects of pairing correlation on neutron drop
- Strength of tensor forces from neutron drops in ab initio relativistic Brueckner-Hartree-Fock theory
- Contributions of optimized tensor interactions on the binding energies of nuclei
- Self-consistent random-phase approximation based on the relativistic Hartree-Fock theory: Role of ρ -tensor coupling
- A Guided Tour of ab initio Nuclear Many-Body Theory
- Are atoms spherical
- Spin-orbit term in the nuclear shell model
- Origin of the evolution of spin-orbit and pseudospin-orbit splittings in neutron drops
- Linear Response Theory with finite-range interactions
- Exploring effects of tensor force and its strength via neutron drops
- On deformability of atoms—comparative study between atoms and atomic nuclei
- Toward ab initio charge symmetry breaking in nuclear energy density functionals
- Relativistic Hartree–Fock model and its recent progress on the description of nuclear structure
- Comparative study on charge radii and their kinks at magic numbers
- Impact of finite-range spin-orbit and tensor terms in Gogny EDF on structure and fission properties
- Quantitative constraints on the tensor force via spin-flip resonances
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