A completely microscopic formalism has been developed to treat the observable properties of single-particle states (e.g. energies and spectroscopic factors), as well as of collective states (e.g., their energy centroid, their damping width and their gamma decay to the ground state or to low lying states) beyond mean-field. The phonons are calculated within the fully self–consistent random phase approximation (RPA). The particle-vibration coupling (PVC) is accounted for within the framework of the nuclear field theory (NFT) at the lowest contributing order. All the calculations have been performed using the whole effective Skyrme interaction
During the last years a considerable progress has been made concerning the description of nuclear pr...
Self-consistent mean-field models are able to reproduce well the overall properties of nuclei for a ...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...
A completely microscopic formalism has been developed to treat the observable properties of single-p...
Proceedings - International Nuclear Physics Conference (INPC), Firenze 2 - 7 June 2013International ...
The energy density functional theory is one of the most used methods developed in nuclear structure....
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
Some recent microscopic implementations of the particle-vibration coupling (PVC) theory for atomic n...
The self-consistent mean-field (SCMF) theory describes many properties of the ground state and excit...
In this contribution we introduce, for the first time, a fully microscopic approach to particle-vibr...
We discuss calculations of single-particle states in magic nuclei, performed withis the particle-vib...
Mean-field approaches successfully reproduce nuclear bulk properties like masses and radii within th...
The atomic nucleus can be described, to a first approximation, as composed by independent particles,...
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
In this contribution, we shall describe a formalism that goes beyond the simple time-dependent mean ...
During the last years a considerable progress has been made concerning the description of nuclear pr...
Self-consistent mean-field models are able to reproduce well the overall properties of nuclei for a ...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...
A completely microscopic formalism has been developed to treat the observable properties of single-p...
Proceedings - International Nuclear Physics Conference (INPC), Firenze 2 - 7 June 2013International ...
The energy density functional theory is one of the most used methods developed in nuclear structure....
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
Some recent microscopic implementations of the particle-vibration coupling (PVC) theory for atomic n...
The self-consistent mean-field (SCMF) theory describes many properties of the ground state and excit...
In this contribution we introduce, for the first time, a fully microscopic approach to particle-vibr...
We discuss calculations of single-particle states in magic nuclei, performed withis the particle-vib...
Mean-field approaches successfully reproduce nuclear bulk properties like masses and radii within th...
The atomic nucleus can be described, to a first approximation, as composed by independent particles,...
A completely microscopic beyond mean-field approach has been elaborated to overcome some intrinsic l...
In this contribution, we shall describe a formalism that goes beyond the simple time-dependent mean ...
During the last years a considerable progress has been made concerning the description of nuclear pr...
Self-consistent mean-field models are able to reproduce well the overall properties of nuclei for a ...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...