Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great interest for different nuclear applications, including, in particular, nuclear astrophysics. Here on the basis of experimental and theoretical information on the E1 and M1 strength functions, inspired both from axially deformed quasiparticle random-phase approximation and shell-model calculations, we derive simple expressions to determine systematically the dipole strength in order to update former prescriptions with a special emphasis on new expressions for the M1 spin-flip and scissors modes. We compare our final prediction of the E1 and M1 strengths with available experimental data at low energies and show that a relatively good agreement is ob...
Large-scale calculations of the E1 strength are performed within the random phase approximation (RPA...
The isovector spin-flip M1 strength function in the deformed heavy nuclei 156Gd and 238U is calculat...
Inelastic proton scattering under extreme forward angles including $0^{\circ}$ and at energies of a ...
Valuable theoretical predictions of nuclear dipole excitations in the whole nuclear chart are of gre...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
International audienceA low-energy enhancement of radiative strength functions was observed in exper...
We have computed magnetic dipole strength distributions for iron isotopes within shell-model calcula...
The average resonance capture (ARC) data measured at different filter beam facilities are re-analyze...
Low energy enhancement of radiative strength functions has been deduced from experiments in several ...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole nu...
Magnetic dipole strength functions have been deduced from averages of a large number of M1 transitio...
We report photon-scattering experiments using bremsstrahlung at the γELBE facility of Helmholtz-Zent...
Large-scale calculations of the E1 strength are performed within the random phase approximation (RPA...
The isovector spin-flip M1 strength function in the deformed heavy nuclei 156Gd and 238U is calculat...
Inelastic proton scattering under extreme forward angles including $0^{\circ}$ and at energies of a ...
Valuable theoretical predictions of nuclear dipole excitations in the whole nuclear chart are of gre...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great inter...
International audienceA low-energy enhancement of radiative strength functions was observed in exper...
We have computed magnetic dipole strength distributions for iron isotopes within shell-model calcula...
The average resonance capture (ARC) data measured at different filter beam facilities are re-analyze...
Low energy enhancement of radiative strength functions has been deduced from experiments in several ...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole nu...
Magnetic dipole strength functions have been deduced from averages of a large number of M1 transitio...
We report photon-scattering experiments using bremsstrahlung at the γELBE facility of Helmholtz-Zent...
Large-scale calculations of the E1 strength are performed within the random phase approximation (RPA...
The isovector spin-flip M1 strength function in the deformed heavy nuclei 156Gd and 238U is calculat...
Inelastic proton scattering under extreme forward angles including $0^{\circ}$ and at energies of a ...