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AbstractAbstract
[en] During the past ten years, a large amount of experimental data has been accumulated which gives information with regard to the sizes of the nucleus and the distribution of nuclear matter. Some particularly relevant results are presented. From a theoretical point of view, the contribution of the microscopic models is shown and particularly the results obtained by Hartree-Fock (HF) and Hartree-Fock-Bogoliubov (HFB) methods using D1 effective interaction. The limitations of static calculations are also shown making necessary to take into account the dynamical effects, especially in shape transition regions. The densities obtained by the HF + RPA and HFB + Bohr hamiltonian theories are presented and compared to the experimental results
[fr]
Depuis une dizaine d'annees, un grand nombre de donnees experimentales a ete accumule donnant des informations sur la taille des noyaux et la distribution de matiere nucleaire. Quelques resultats particulierement significatifs sont presentes. Au point de vue theorique, l'apport des modeles microscopiques est expose et en particulier les resultats obtenus par les methodes Hartree-Fock (HF) et Hartree-Fock-Bogoliubov (HFB) avec l'interaction effective D1. Les limitations des calculs statiques sont aussi montrees rendant necessaire l'introduction des effets dynamiques, en particulier dans les regions de transitions de forme. Des densites obtenues par les theories HF + RPA et HFB + hamiltonien de Bohr sont presentees et comparees a l'experienceOriginal Title
Aspects statiques et dynamiques des distributions de matieres nucleaires: calculs microscopiques et donnees experimentales
Primary Subject
Source
Nov 1985; 14 p; Specialists meeting on the use of the optical model for the calculation of neutron cross sections below 20 MeV; Paris (France); 13-15 Nov 1985
Record Type
Report
Literature Type
Conference
Report Number
Country of publication
CALCIUM 40, CALCIUM 48, CHARGE DISTRIBUTION, EFFECTIVE RANGE THEORY, ELECTRON REACTIONS, GERMANIUM 72, GERMANIUM 74, HARTREE-FOCK METHOD, HARTREE-FOCK-BOGOLYUBOV THEORY, LEAD 208, MILLISEC LIVING RADIOISOTOPES, NICKEL 58, NICKEL 62, NICKEL 64, NICKEL 68, NUCLEAR MATTER, REVIEWS, SAMARIUM 152, SCATTERING, SPATIAL DISTRIBUTION, ZIRCONIUM 90
CALCIUM ISOTOPES, DISTRIBUTION, DOCUMENT TYPES, EVEN-EVEN NUCLEI, GERMANIUM ISOTOPES, HEAVY NUCLEI, INTERMEDIATE MASS NUCLEI, ISOMERIC TRANSITION ISOTOPES, ISOTOPES, LEAD ISOTOPES, LEPTON REACTIONS, LIGHT NUCLEI, MATTER, NICKEL ISOTOPES, NUCLEAR REACTIONS, NUCLEI, RADIOISOTOPES, RARE EARTH NUCLEI, SAMARIUM ISOTOPES, STABLE ISOTOPES, ZIRCONIUM ISOTOPES
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