SELF-CONSISTENT MEAN-FIELD MODELS FOR NUCLEAR STRUCTURE AND DYNAMICS
P. Klüpfel, P.‐G. Reinhard
Abstract
P. Klüpfel, P.‐G. Reinhard
Abstract
We discuss the performance and applicability of self-consistent mean-field models for nuclear structure and dynamics taking reference to the relativistic mean-field model (RMF) and mainly to the Skyrme-Hartree-Fock method (SHF). After a very brief summary of the basics, we exemplify the status and future perspective in terms of a few selected key applications, neutron radii, level schemes, fission, resonance excitations, and soft modes.
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We discuss the performance and applicability of self-consistent mean-field models for nuclear structure and dynamics taking reference to the relativistic mean-field model (RMF) and mainly to the Skyrme-Hartree-Fock method (SHF). After a very brief summary of the basics, we exemplify the status and future perspective in terms of a few selected key applications, neutron radii, level schemes, fission, resonance excitations, and soft modes.
Key concepts: Mean field theory, Nuclear structure, Physics, Statistical physics, Field (mathematics), Perspective (graphical), Nuclear physics, Fission