Six-nucleon spectroscopy from a realistic nonlocal Hamiltonian

We apply the ab initio no-core nuclear shell model to solve the six-nucleon systems, (6)Li and (6)He, interacting by realistic nucleon-nucleon ( NN) potentials. In particular, we present the first results for A = 6 with the nonlocal CD-Bonn NN potential. The resulting (6)Li binding energy -29.3(6) M...

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Veröffentlicht in:Physical review letters 2001-10, Vol.87 (17), p.172502-172502, Article 172502
Hauptverfasser: Navrátil, P, Vary, J P, Ormand, W E, Barrett, B R
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Sprache:eng
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Zusammenfassung:We apply the ab initio no-core nuclear shell model to solve the six-nucleon systems, (6)Li and (6)He, interacting by realistic nucleon-nucleon ( NN) potentials. In particular, we present the first results for A = 6 with the nonlocal CD-Bonn NN potential. The resulting (6)Li binding energy -29.3(6) MeV and the excitation spectra improve the agreement between the theory and experiment compared to results with local NN potentials, but the need for the inclusion of a real three-body interaction and/or further improvement of the NN forces remains. We predict properties of the (6)He dipole modes, a subject of current controversy.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.87.172502