Starting from self-consistent mean-field models, we discuss how to include correlations from fluctuations in collective degrees of freedom through symmetry restoration and configuration mixing, which give access to ground-state correlations and collective excitations. As an example for the method, we discuss the spectroscopy of neutron-deficient Pb isotopes. © 2005 IOP Publishing Ltd.SCOPUS: cp.jinfo:eu-repo/semantics/publishedNUSTAR 2005 - International Conference on the interface between NUclear STructure, Astrophysics and Reactions, University of Surrey, Guildford,United Kingdom, 5-8 January 2005, edited by P. Regan and P. Stevenso
The framework of relativistic energy-density functionals is extended to include correlations related...
We formulate the principles of the mean-field theory of nuclear stability employing the point-group ...
The framework of relativistic energy-density functionals is extended to include correlations related...
Starting from successful self-consistent mean-field models, this paper discusses why and how to go b...
Starting from successful self-consistent mean-field models, this paper discusses why and how to go b...
In this talk, we present a method which allows the introduction of correlations beyond a Skyrme Hart...
The framework of relativistic self-consistent mean-field models is extended to include correlations ...
International audienceWe study the low-lying collective excitation spectra of the neutron-deficient ...
The mean-field approximation based on effective interactions or density functionals plays a pivotal ...
The collective ground-state correlations stemming from low-lying quadrupole excitations are computed...
This contribution sketches recent efforts to explicitly include fluctuations in collective degrees o...
The phase diagram of models with configuration mixing is investigated in mean-field approximation. T...
We propose a new theoretical approach to ground and low-energy excited states of nuclei extending th...
Background: Although self-consistent multiconfiguration methods have been used for decades to addres...
Beyond mean-field methods based on restoration of symmetries and configuration mixing by the generat...
The framework of relativistic energy-density functionals is extended to include correlations related...
We formulate the principles of the mean-field theory of nuclear stability employing the point-group ...
The framework of relativistic energy-density functionals is extended to include correlations related...
Starting from successful self-consistent mean-field models, this paper discusses why and how to go b...
Starting from successful self-consistent mean-field models, this paper discusses why and how to go b...
In this talk, we present a method which allows the introduction of correlations beyond a Skyrme Hart...
The framework of relativistic self-consistent mean-field models is extended to include correlations ...
International audienceWe study the low-lying collective excitation spectra of the neutron-deficient ...
The mean-field approximation based on effective interactions or density functionals plays a pivotal ...
The collective ground-state correlations stemming from low-lying quadrupole excitations are computed...
This contribution sketches recent efforts to explicitly include fluctuations in collective degrees o...
The phase diagram of models with configuration mixing is investigated in mean-field approximation. T...
We propose a new theoretical approach to ground and low-energy excited states of nuclei extending th...
Background: Although self-consistent multiconfiguration methods have been used for decades to addres...
Beyond mean-field methods based on restoration of symmetries and configuration mixing by the generat...
The framework of relativistic energy-density functionals is extended to include correlations related...
We formulate the principles of the mean-field theory of nuclear stability employing the point-group ...
The framework of relativistic energy-density functionals is extended to include correlations related...