arXiv · nucl-th/0504074
Self-Consistent Nuclear Shell-Model Calculation Starting from a Realistic NN Potential
Abstract
First self-consistent realistic shell-model calculation for the light p-shell nuclei is performed, starting from the high-precision nucleon-nucleon (NN) CD-Bonn potential. This realistic potential is renormalized deriving a low-momentum NN potential V-low-k that preserves exactly the two-nucleon low-energy physics. This V-low-k is suitable to derive a self-consistent Hartree-Fock basis that is employed to derive both effective single-particle energies and residual two-body matrix elements for the shell-model hamiltonian. Results obtained show the reliability of such a fundamental microscopic approach.
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L. Coraggio, N. Itaco. 2005-04-26. Self-Consistent Nuclear Shell-Model Calculation Starting from a Realistic NN Potential. https://doi.org/10.1016/j.physletb.2005.04.060
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