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Nuclear binding energies: Global collective structure and local shell-model correlations

Nuclear binding energies and two-neutron separation energies are analyzed starting from the liquid-drop model and the nuclear shell model in order to describe the global trends of the above observables. We subsequently concentrate on the Interacting Boson Model (IBM) and discuss a new method in orde...

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Detalles Bibliográficos
Autores principales: Fossion, R., De Coster, C., Garcia-Ramos, J.E., Werner, T., Heyde, K.
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0375-9474(01)01270-2
http://cds.cern.ch/record/492924
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author Fossion, R.
De Coster, C.
Garcia-Ramos, J.E.
Werner, T.
Heyde, K.
author_facet Fossion, R.
De Coster, C.
Garcia-Ramos, J.E.
Werner, T.
Heyde, K.
author_sort Fossion, R.
collection CERN
description Nuclear binding energies and two-neutron separation energies are analyzed starting from the liquid-drop model and the nuclear shell model in order to describe the global trends of the above observables. We subsequently concentrate on the Interacting Boson Model (IBM) and discuss a new method in order to provide a consistent description of both, ground-state and excited-state properties. We address the artefacts that appear when crossing mid-shell using the IBM formulation and perform detailed numerical calculations for nuclei situated in the 50-82 shell. We also concentrate on local deviations from the above global trends in binding energy and two-neutron separation energies that appear in the neutron-deficient Pb region. We address possible effects on the binding energy, caused by mixing of low-lying $0^{+}$ intruder states into the ground state, using configuration mixing in the IBM framework. We also study ground-state properties using a deformed mean-field approach. Detailed comparisons with recent experimental data in the Pb region are amply discussed.
id cern-492924
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
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spelling cern-4929242019-09-30T06:29:59Zdoi:10.1016/S0375-9474(01)01270-2http://cds.cern.ch/record/492924engFossion, R.De Coster, C.Garcia-Ramos, J.E.Werner, T.Heyde, K.Nuclear binding energies: Global collective structure and local shell-model correlationsNuclear PhysicsNuclear binding energies and two-neutron separation energies are analyzed starting from the liquid-drop model and the nuclear shell model in order to describe the global trends of the above observables. We subsequently concentrate on the Interacting Boson Model (IBM) and discuss a new method in order to provide a consistent description of both, ground-state and excited-state properties. We address the artefacts that appear when crossing mid-shell using the IBM formulation and perform detailed numerical calculations for nuclei situated in the 50-82 shell. We also concentrate on local deviations from the above global trends in binding energy and two-neutron separation energies that appear in the neutron-deficient Pb region. We address possible effects on the binding energy, caused by mixing of low-lying $0^{+}$ intruder states into the ground state, using configuration mixing in the IBM framework. We also study ground-state properties using a deformed mean-field approach. Detailed comparisons with recent experimental data in the Pb region are amply discussed.nucl-th/0103070THEOG-01-20THEOG-2001-20oai:cds.cern.ch:4929242001-03-27
spellingShingle Nuclear Physics
Fossion, R.
De Coster, C.
Garcia-Ramos, J.E.
Werner, T.
Heyde, K.
Nuclear binding energies: Global collective structure and local shell-model correlations
title Nuclear binding energies: Global collective structure and local shell-model correlations
title_full Nuclear binding energies: Global collective structure and local shell-model correlations
title_fullStr Nuclear binding energies: Global collective structure and local shell-model correlations
title_full_unstemmed Nuclear binding energies: Global collective structure and local shell-model correlations
title_short Nuclear binding energies: Global collective structure and local shell-model correlations
title_sort nuclear binding energies: global collective structure and local shell-model correlations
topic Nuclear Physics
url https://dx.doi.org/10.1016/S0375-9474(01)01270-2
http://cds.cern.ch/record/492924
work_keys_str_mv AT fossionr nuclearbindingenergiesglobalcollectivestructureandlocalshellmodelcorrelations
AT decosterc nuclearbindingenergiesglobalcollectivestructureandlocalshellmodelcorrelations
AT garciaramosje nuclearbindingenergiesglobalcollectivestructureandlocalshellmodelcorrelations
AT wernert nuclearbindingenergiesglobalcollectivestructureandlocalshellmodelcorrelations
AT heydek nuclearbindingenergiesglobalcollectivestructureandlocalshellmodelcorrelations