Systematics of collective correlation energies from self-consistent mean-field calculations

被引:0
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作者
P. Klüpfel
J. Erler
P. -G. Reinhard
J. A. Maruhn
机构
[1] Universität Erlangen,Institut für Theoretische Physik
[2] Universität Frankfurt,Institut für Theoretische Physik
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关键词
21.10.Dr Binding energies and masses; 21.10.Re Collective levels; 21.60.Ev Collective models; 21.60.Jz Nuclear Density Functional Theory and extensions (includes Hartree-Fock and random-phase approximations);
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摘要
The collective ground-state correlations stemming from low-lying quadrupole excitations are computed microscopically. To that end, the self-consistent mean-field model is employed on the basis of the Skyrme-Hartre-Fock (SHF) functional augmented by BCS pairing. The microscopic-macroscopic mapping is achieved by quadrupole-constrained mean-field calculations which are processed further in the generator-coordinate method (GCM) at the level of the Gaussian overlap approximation (GOA). We study the correlation effects on energy, charge radii, and surface thickness for a great variety of semi-magic nuclei. A key issue is to work out the influence of variations of the SHF functional. We find that collective ground-state correlations (GSC) are robust under change of nuclear bulk properties (e.g., effective mass, symmetry energy) or of spin-orbit coupling. Some dependence on the pairing strength is observed. This, however, does not change the general conclusion that collective GSC obey a general pattern and that their magnitudes are rather independent of the actual SHF parameters.
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页码:343 / 355
页数:12
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