14 pages, 12 figures, 4 tablesInternational audienceCollective quadrupole and octupole states are described in a series of Sm and Gd isotopes within the framework of the interacting boson model (IBM), whose Hamiltonian parameters are deduced from mean field calculations with the Gogny energy density functional. The link between both frameworks is the ($\beta_2\beta_3$) potential energy surface computed within the Hartree-Fock-Bogoliubov framework in the case of the Gogny force. The diagonalization of the IBM Hamiltonian provides excitation energies and transition strengths of an assorted set of states including both positive and negative parity states. The resultant spectroscopic properties are compared with the available experimental data ...
We investigate the emergence and evolution of shape coexistence in the neutron-deficient lead isotop...
Microscopic energy density functionals have become a standard tool for nuclear structure calculation...
Quadrupole and octupole deformation energy surfaces, low-energy excitation spectra, and transition r...
14 pages, 12 figures, 4 tablesInternational audienceCollective quadrupole and octupole states are de...
The interplay between the collective dynamics of the quadrupole and octupole deformation degree of f...
In this contribution, further evidence of the importance of multiphonon-octupole excitations to desc...
A systematic analysis of low-lying quadrupole and octupole collective states is presented based on t...
18 pages, 18 figures, 1 tableA systematic analysis of low-lying quadrupole and octupole collective s...
The Interacting Boson Model (IBM) has been very successful in describing the collective properties o...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
We analyze the quadrupole-octupole collective states based on the microscopic energy density functio...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
International audienceWe analyze the quadrupole-octupole collective states based on the microscopic ...
A systematic study of low energy nuclear structure at normal deformation is carried out using the Ha...
We investigate the emergence and evolution of shape coexistence in the neutron-deficient lead isotop...
Microscopic energy density functionals have become a standard tool for nuclear structure calculation...
Quadrupole and octupole deformation energy surfaces, low-energy excitation spectra, and transition r...
14 pages, 12 figures, 4 tablesInternational audienceCollective quadrupole and octupole states are de...
The interplay between the collective dynamics of the quadrupole and octupole deformation degree of f...
In this contribution, further evidence of the importance of multiphonon-octupole excitations to desc...
A systematic analysis of low-lying quadrupole and octupole collective states is presented based on t...
18 pages, 18 figures, 1 tableA systematic analysis of low-lying quadrupole and octupole collective s...
The Interacting Boson Model (IBM) has been very successful in describing the collective properties o...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
We analyze the quadrupole-octupole collective states based on the microscopic energy density functio...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
International audienceWe analyze the quadrupole-octupole collective states based on the microscopic ...
A systematic study of low energy nuclear structure at normal deformation is carried out using the Ha...
We investigate the emergence and evolution of shape coexistence in the neutron-deficient lead isotop...
Microscopic energy density functionals have become a standard tool for nuclear structure calculation...
Quadrupole and octupole deformation energy surfaces, low-energy excitation spectra, and transition r...