We analyze the relation between isoscalar toroidal modes and so-called pygmy dipole resonance (PDR), which both appear in the same region of low-energy dipole excitations. To this end, we use a theoretical description within the fully self-consistent Skyrme quasiparticle random-phase approximation (QRPA). Test cases are spherical nuclei 40, 48Ca, 58, 72Ni, 90, 100Zr, and 100, 120, 132Sn which cover four different elements and for each element at least two isotopes with different neutron excess, one small and another large. The structure of the modes is investigated in terms of strength functions, transition densities (TD) and transition currents (TC). For all considered nuclei, we see that, independently on whether PDR strength exists or no...
In 16O and 40Ca an isoscalar, low-energy dipole transition (IS-LED) exhausting approximately 4% of t...
A comparative analysis of toroidal, compressional and vortical dipole strengths in the spherical 144...
The self-consistent random-phase approximation, based on the framework of relativistic energy densit...
We perform time-dependent Hartree-Fock (TDHF) calculations, employing Skyrme functionals, to investi...
The self-consistent random-phase approximation, based on the framework of relativistic energy densit...
The presence of some low-lying (pygmy) strength in the dipole spectrum, at excitation energy well be...
The isoscalar toroidal dipole strength distributions in spherical nuclei are calculated in the frame...
We studied the nuclear electric isoscalar dipole response in proton–neutron random-phase approximati...
The centroid, width and percentage of energy weighted sum rule of dipole resonances can be strongly ...
A possible relation of low-lying E1 strength ("pygmy resonance") and toroidal strength is analyzed b...
Background: In atomic nuclei, a concentration of electric dipole strength around the particle thresh...
The occurrence of low-lying charge-exchange non-spin-flip dipole modes below the giant resonance in ...
The isospin character, the collective or single-particle nature, and the sensitivity to the slope of...
Abstract. A nuclear structure model based on finite rank approximation of Skyrme inter-action is app...
Low-energy dipole excitations are analyzed for the stable isotopes $^{40}$Ca and $^{48}$Ca in the fr...
In 16O and 40Ca an isoscalar, low-energy dipole transition (IS-LED) exhausting approximately 4% of t...
A comparative analysis of toroidal, compressional and vortical dipole strengths in the spherical 144...
The self-consistent random-phase approximation, based on the framework of relativistic energy densit...
We perform time-dependent Hartree-Fock (TDHF) calculations, employing Skyrme functionals, to investi...
The self-consistent random-phase approximation, based on the framework of relativistic energy densit...
The presence of some low-lying (pygmy) strength in the dipole spectrum, at excitation energy well be...
The isoscalar toroidal dipole strength distributions in spherical nuclei are calculated in the frame...
We studied the nuclear electric isoscalar dipole response in proton–neutron random-phase approximati...
The centroid, width and percentage of energy weighted sum rule of dipole resonances can be strongly ...
A possible relation of low-lying E1 strength ("pygmy resonance") and toroidal strength is analyzed b...
Background: In atomic nuclei, a concentration of electric dipole strength around the particle thresh...
The occurrence of low-lying charge-exchange non-spin-flip dipole modes below the giant resonance in ...
The isospin character, the collective or single-particle nature, and the sensitivity to the slope of...
Abstract. A nuclear structure model based on finite rank approximation of Skyrme inter-action is app...
Low-energy dipole excitations are analyzed for the stable isotopes $^{40}$Ca and $^{48}$Ca in the fr...
In 16O and 40Ca an isoscalar, low-energy dipole transition (IS-LED) exhausting approximately 4% of t...
A comparative analysis of toroidal, compressional and vortical dipole strengths in the spherical 144...
The self-consistent random-phase approximation, based on the framework of relativistic energy densit...