The so-called Higher Tamm–Dancoff Approximation (HTDA) has been designed to describe microscopically correlations within a particle number conserving approach. It relies upon a truncated n particle–n hole expansion of the nuclear wavefunction, where the single particle basis is optimized self-consistently by using the Skyrme mean field associated with the single-particle density matrix of the correlated wavefunction. It is applied here for the first time in a rotating frame, i.e. within a self-consistent cranking approach (cranked HTDA or CHTDA) aimed at describing the collective rotational motion in well-deformed nuclei. Moments of inertia predicted by cranked HTDA in the Yrast superdeformed (SD) bands of some Anot, vert, similar190 nuclei...
Most current implementations of the quadrupole collective Hamiltonian model do not include the contr...
The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-n...
We report the first global study of dynamic correlation energies (DCEs) associated with rotational m...
The so-called Higher Tamm–Dancoff Approximation (HTDA) has been designed to describe microscopically...
Abstract. An approximation dubbed as the Higher TammDankoff Approximation (HTDA) has been designed t...
International audienceWithin the Higher Tamm Danco® Approximation (HTDA), single particle states ass...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
Spontaneous breaking of continuous symmetries of a nuclear many-body system results in the appearanc...
The collective rotation in deformed nuclei is described in the random phase approximation (RPA). The...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
The contribution of quantum shape fluctuations to inertial properties of rotating nuclei has been an...
International audienceAn overview of a microscopic framework based on the Hartree-Fock description o...
A simple model to study the collective coupling between pairing and rotational degrees of freedom in...
La méthode HTDA (Higher-Tamm-Dancoff Approximation) a été proposée récemment par le groupe de Bordea...
Background: Nuclear collective rotations have been successfully described by the cranking Hartree-Fo...
Most current implementations of the quadrupole collective Hamiltonian model do not include the contr...
The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-n...
We report the first global study of dynamic correlation energies (DCEs) associated with rotational m...
The so-called Higher Tamm–Dancoff Approximation (HTDA) has been designed to describe microscopically...
Abstract. An approximation dubbed as the Higher TammDankoff Approximation (HTDA) has been designed t...
International audienceWithin the Higher Tamm Danco® Approximation (HTDA), single particle states ass...
The rotational bands in nuclei with Z approximate to 100 are investigated systematically by using a ...
Spontaneous breaking of continuous symmetries of a nuclear many-body system results in the appearanc...
The collective rotation in deformed nuclei is described in the random phase approximation (RPA). The...
The deviation of nuclear rotational spectra from simple rotational pattern of a symmetric top is exp...
The contribution of quantum shape fluctuations to inertial properties of rotating nuclei has been an...
International audienceAn overview of a microscopic framework based on the Hartree-Fock description o...
A simple model to study the collective coupling between pairing and rotational degrees of freedom in...
La méthode HTDA (Higher-Tamm-Dancoff Approximation) a été proposée récemment par le groupe de Bordea...
Background: Nuclear collective rotations have been successfully described by the cranking Hartree-Fo...
Most current implementations of the quadrupole collective Hamiltonian model do not include the contr...
The experimental one-, three-, and five-quasiparticle bands in Ta-179 are analyzed by the particle-n...
We report the first global study of dynamic correlation energies (DCEs) associated with rotational m...