A short review on the self-consistent RPA based on the energy-density functional of the Skyrme type is given. We also present an extension of the RPA where the coupling of phonons to the single-particle states is considered. Within this approach we present numerical results which are compared with data. The self-consistent approach is compared with the Landau–Migdal theory. Here we derive from the self-consistent ph interaction, the Landau–Migdal parameters as well as their density dependence. In the Appendix a new derivation of the reduced matrix elements of the ph interaction is presented
A completely microscopic formalism has been developed to treat the observable properties of single-p...
The Green function formalism with a consistent account for phonon coupling (PC), based on the self-c...
By using the self-consistent approach based on the Skyrme functional and with account of pairing cor...
PTHA finite-rank separable approximation for the quasiparticle RPA calculations with Skyrme interact...
The magnitude and density-dependence of the non-spin-dependent Landau–Migdal parameters are derived ...
We present fully self-consistent calculations of isoscalar giant monopole and quadrupole as well as ...
Random Phase Approximation (RPA) calculations are nowadays an indispensable tool in nuclear physics ...
We analyse the momentum and density dependence of the ph interaction in self-consistent RPA calculat...
The Green’s function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
We discuss major differences between electric and magnetic excitations in nuclei appearing in self-c...
The Green's function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
The self-consistent separable RPA (random phase approximation) method is formulated for Skyrme force...
Starting from an effective Skyrme interaction we study the effects of the phonon-phonon coupling on ...
In the present contribution, we discuss the behavior of Skyrme forces when they are employed to stud...
PTHStarting from an effective Skyrme interaction we present a method to take into account the coupli...
A completely microscopic formalism has been developed to treat the observable properties of single-p...
The Green function formalism with a consistent account for phonon coupling (PC), based on the self-c...
By using the self-consistent approach based on the Skyrme functional and with account of pairing cor...
PTHA finite-rank separable approximation for the quasiparticle RPA calculations with Skyrme interact...
The magnitude and density-dependence of the non-spin-dependent Landau–Migdal parameters are derived ...
We present fully self-consistent calculations of isoscalar giant monopole and quadrupole as well as ...
Random Phase Approximation (RPA) calculations are nowadays an indispensable tool in nuclear physics ...
We analyse the momentum and density dependence of the ph interaction in self-consistent RPA calculat...
The Green’s function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
We discuss major differences between electric and magnetic excitations in nuclei appearing in self-c...
The Green's function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
The self-consistent separable RPA (random phase approximation) method is formulated for Skyrme force...
Starting from an effective Skyrme interaction we study the effects of the phonon-phonon coupling on ...
In the present contribution, we discuss the behavior of Skyrme forces when they are employed to stud...
PTHStarting from an effective Skyrme interaction we present a method to take into account the coupli...
A completely microscopic formalism has been developed to treat the observable properties of single-p...
The Green function formalism with a consistent account for phonon coupling (PC), based on the self-c...
By using the self-consistent approach based on the Skyrme functional and with account of pairing cor...