A microscopic model, entirely based on Skyrme energy density lunctionals, has been developed to study the \u3b3 -decay ol giant resonances. In particular, it treats the ground-state decay within the fully self-consistent Random Phase Approximation (RPA) and the decay to low-lying states at the lowest order beyond RPA. This model is applied to 208 Pb and the results are compared with experimental data and with previous theoretical results obtained, in the past decades, using phenomenological models
The nuclear dipole polarizability is mainly governed by the dynamics of the giant dipole resonance a...
We present fully self-consistent calculations of isoscalar giant monopole and quadrupole as well as ...
International audienceA new measurement of γ decay from the states above the neutron threshold in Pb...
Coincidence experiments were done to investigate the photon and neutron emission from the giant reso...
We calculate the longitudinal response of 208Pb using a relativistic random-phase approximation to t...
Self-consistent mean-field models are able to reproduce well the overall properties of nuclei for a ...
Giant resonances--highly collective, high-frequency oscillations of the atomic nucleus--are the focu...
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
The excitation and subsequent proton decay of the isoscalar giant dipole resonance (ISGDR) in Pb-208...
Nuclear beta decay in magic nuclei is investigated, taking into account the coupling between particl...
The direct proton decay of the isoscalar giant dipole resonance (ISGDR) has been studied in Pb-208 u...
The isovector dipole response in 208Pb is described in the framework of a fully self-consistent rela...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
The direct and statistical neutron decay of the isoscalar giant dipole resonance and a continuum reg...
Became of the collective 1p-1h nature of the charge-exchange giant resonances (CEGR), the study of t...
The nuclear dipole polarizability is mainly governed by the dynamics of the giant dipole resonance a...
We present fully self-consistent calculations of isoscalar giant monopole and quadrupole as well as ...
International audienceA new measurement of γ decay from the states above the neutron threshold in Pb...
Coincidence experiments were done to investigate the photon and neutron emission from the giant reso...
We calculate the longitudinal response of 208Pb using a relativistic random-phase approximation to t...
Self-consistent mean-field models are able to reproduce well the overall properties of nuclei for a ...
Giant resonances--highly collective, high-frequency oscillations of the atomic nucleus--are the focu...
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
The excitation and subsequent proton decay of the isoscalar giant dipole resonance (ISGDR) in Pb-208...
Nuclear beta decay in magic nuclei is investigated, taking into account the coupling between particl...
The direct proton decay of the isoscalar giant dipole resonance (ISGDR) has been studied in Pb-208 u...
The isovector dipole response in 208Pb is described in the framework of a fully self-consistent rela...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
The direct and statistical neutron decay of the isoscalar giant dipole resonance and a continuum reg...
Became of the collective 1p-1h nature of the charge-exchange giant resonances (CEGR), the study of t...
The nuclear dipole polarizability is mainly governed by the dynamics of the giant dipole resonance a...
We present fully self-consistent calculations of isoscalar giant monopole and quadrupole as well as ...
International audienceA new measurement of γ decay from the states above the neutron threshold in Pb...