Fully consistent axially-symmetric-deformed quasiparticle random phase approximation calculations have been performed with the D1S Gogny force. A brief review on the main results obtained in this approach is presented. After a reminder on the method and on the first results concerning giant resonances in deformed Mg and Si isotopes, the multipole responses up to octupole in the deformed and heavy nucleus 238U are discussed. In order to analyse soft dipole modes in exotic nuclei, the dipole responses have been studied in Ne isotopes and in N=16 isotopes, for which results are presented. In these nuclei, the QRPA results on the low lying 2+ states are compared to the 5-Dimensional Collective Hamiltonian ones. © Owned by the authors, published...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
Modern nuclear ground-state density-functional theory (DFT) works best in heavy strongly deformed nu...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
Fully consistent axially-symmetric-deformed quasiparticle random phase approximation calculations ha...
Fully consistent axially-symmetric-deformed quasiparticle random phase approximation calculations ha...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
We present a calculation of the properties of vibrational states in deformed, axially-symmetric even...
Dipole excitations of nuclei are crucial since they play an important role in nuclear reaction model...
We develop a new framework of the deformed quasiparticle-random-phase approximation (QRPA) where the...
In recent years fully consistent quasiparticle random-phase approximation (QRPA) calculations using ...
In recent years fully consistent quasiparticle random-phase approximation (QRPA) calculations using ...
Density functional theory is a preferred microscopic method for calculation of nuclear properties ov...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
Modern nuclear ground-state density-functional theory (DFT) works best in heavy strongly deformed nu...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
Fully consistent axially-symmetric-deformed quasiparticle random phase approximation calculations ha...
Fully consistent axially-symmetric-deformed quasiparticle random phase approximation calculations ha...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
We present a review of several works using the finite-range Gogny interaction in mean field approach...
We present a calculation of the properties of vibrational states in deformed, axially-symmetric even...
Dipole excitations of nuclei are crucial since they play an important role in nuclear reaction model...
We develop a new framework of the deformed quasiparticle-random-phase approximation (QRPA) where the...
In recent years fully consistent quasiparticle random-phase approximation (QRPA) calculations using ...
In recent years fully consistent quasiparticle random-phase approximation (QRPA) calculations using ...
Density functional theory is a preferred microscopic method for calculation of nuclear properties ov...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
Modern nuclear ground-state density-functional theory (DFT) works best in heavy strongly deformed nu...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...