We present a method based on mean-field states generated by triaxial quadrupole constraints that are projected on particle number and angular momentum and mixed by the generator coordinate method on the quadrupole moment. This method is equivalent to a seven-dimensional GCM calculation, mixing all five degrees of freedom of the quadrupole operator and the gauge angles for protons and neutrons. A first application to 24Mg permits a detailed analysis of the effects of triaxial deformations and of K mixing
We present the first calculations of a symmetry conserving configuration mixing method (SCCM) using ...
We have performed calculations based on the Skyrme energy density functional (EDF) that includes ar...
In the light of recent experimental developments, increasing attention is devoted to nuclear phenome...
We present a method based on mean-field states generated by triaxial quadrupole constraints that are...
The framework of relativistic energy-density functionals is extended to include correlations related...
The framework of relativistic energy-density functionals is extended to include correlations related...
We report the first study of restoration of rotational symmetry and fluctuations of the quadrupole d...
The recently developed structure model that uses the generator coordinate method to perform configur...
We present the generator-coordinate method with particle number projection for a collective basis of...
Based on a relativistic mean-field theory with an effective point coupling between the nucleons, thr...
We present a novel nuclear energy density functional method to calculate spectroscopic properties of...
We investigate truncation schemes to reduce the computational cost of calculating correlations by th...
The framework of relativistic self-consistent mean-field models is extended to include correlations ...
We report on a seven-dimensional generator coordinate calculation in the two deformation parameters ...
Beyond mean-field methods are very successful tools for the description of large-amplitude collectiv...
We present the first calculations of a symmetry conserving configuration mixing method (SCCM) using ...
We have performed calculations based on the Skyrme energy density functional (EDF) that includes ar...
In the light of recent experimental developments, increasing attention is devoted to nuclear phenome...
We present a method based on mean-field states generated by triaxial quadrupole constraints that are...
The framework of relativistic energy-density functionals is extended to include correlations related...
The framework of relativistic energy-density functionals is extended to include correlations related...
We report the first study of restoration of rotational symmetry and fluctuations of the quadrupole d...
The recently developed structure model that uses the generator coordinate method to perform configur...
We present the generator-coordinate method with particle number projection for a collective basis of...
Based on a relativistic mean-field theory with an effective point coupling between the nucleons, thr...
We present a novel nuclear energy density functional method to calculate spectroscopic properties of...
We investigate truncation schemes to reduce the computational cost of calculating correlations by th...
The framework of relativistic self-consistent mean-field models is extended to include correlations ...
We report on a seven-dimensional generator coordinate calculation in the two deformation parameters ...
Beyond mean-field methods are very successful tools for the description of large-amplitude collectiv...
We present the first calculations of a symmetry conserving configuration mixing method (SCCM) using ...
We have performed calculations based on the Skyrme energy density functional (EDF) that includes ar...
In the light of recent experimental developments, increasing attention is devoted to nuclear phenome...