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Titlebook: Extended Density Functionals in Nuclear Structure Physics; Georgios A. Lalazissis,Peter Ring,Dario Vretenar Book 2004 Springer-Verlag Berl

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Margitta Retz,Jürgen E. Gschwendopposite sign, induced by changes of the QCD vacuum in the presence of baryonic matter, generate the large effective spin-orbit potential in finite nuclei. Promising results are found for the nuclear matter equation of state and for the bulk and single-nucleon properties of finite nuclei.
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W H Blackmore,R E Cotter,M J Elliotth is that it allows to extend the calculations at safe grounds into the regions far off stability. The agreement with experimental data is very satisfactory. The DDRH approach is easily extended to the full SU(3) flavor multiplet, including also the Λ, Σ and Ξ baryons. Results for .-stable neutron m
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Kalyan Kumar Singh,Mahesh ShindeNext, we discuss how to perform consistent quasiparticle random phase approximation (QRPA) calculations on top of the previously determined mean field. In a first step, QRPA predictions in configuration space are compared to the most recent data on sulfur isotopes. To treat exactly continuum states,
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2 Covariant Effective Field Theory for Nuclear Structure and Nuclear Currents,derivatives) and to truncate the expansion reliably after the first few orders. Using a mean-field version of the energy functional, accurate quantitative results are obtained for the bulk and single-particle properties of medium- and heavy-mass nuclei. The importance of modern perspectives in effec
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3 Exploring the Nucleus in the Context of Low-Energy QCD,opposite sign, induced by changes of the QCD vacuum in the presence of baryonic matter, generate the large effective spin-orbit potential in finite nuclei. Promising results are found for the nuclear matter equation of state and for the bulk and single-nucleon properties of finite nuclei.
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