An iterative method we previously proposed to compute nuclear strength functions [ Toivanen et al. Phys. Rev. C 81 034312 (2010)] is developed to allow it to accurately calculate properties of individual nuclear states. The approach is based on the quasiparticle random-phase approximation (QRPA) and uses an iterative non-Hermitian Arnoldi diagonalization method where the QRPA matrix does not have to be explicitly calculated and stored. The method gives substantial advantages over conventional QRPA calculations with regards to the computational cost. The method is used to calculate excitation energies and decay rates of the lowest-lying 2+ and 3− states in Pb, Sn, Ni, and Ca isotopes using three different Skyrme interactions and a separable ...
Density functional theory is a preferred microscopic method for calculation of nuclear properties ov...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
International audienceFor the first time, using a unique finite range interaction (D1M Gogny force),...
An iterative method we previously proposed to compute nuclear strength functions [Toivanen et al., P...
The iterative quasiparticle random-phase approximation (QRPA) method we previously developed [Phys. ...
During the last years a considerable progress has been made concerning the description of nuclear pr...
International audienceFor the first time, using a unique finite-range interaction (D1M Gogny force),...
We present a calculation of the properties of vibrational states in deformed, axially-symmetric even...
We develop a new framework of the deformed quasiparticle-random-phase approximation (QRPA) where the...
Cette thèse présente trois aspects centrés autour de la QRPA (Quasiparticle Random Phase Approximati...
The nuclear β-decay half-lives of Ni and Sn isotopes, around the closed shell nuclei 78Ni and 132Sn,...
8 pages REVTEX, 4 eps figures, submitted to Phys. Rev. CMaking use of the finite rank separable appr...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
Although nuclear energy-density functionals are determined primarily by fitting to ground-state prop...
We discuss properties of the quadrupole collective excitation of the deformed neutron-rich nucleus $...
Density functional theory is a preferred microscopic method for calculation of nuclear properties ov...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
International audienceFor the first time, using a unique finite range interaction (D1M Gogny force),...
An iterative method we previously proposed to compute nuclear strength functions [Toivanen et al., P...
The iterative quasiparticle random-phase approximation (QRPA) method we previously developed [Phys. ...
During the last years a considerable progress has been made concerning the description of nuclear pr...
International audienceFor the first time, using a unique finite-range interaction (D1M Gogny force),...
We present a calculation of the properties of vibrational states in deformed, axially-symmetric even...
We develop a new framework of the deformed quasiparticle-random-phase approximation (QRPA) where the...
Cette thèse présente trois aspects centrés autour de la QRPA (Quasiparticle Random Phase Approximati...
The nuclear β-decay half-lives of Ni and Sn isotopes, around the closed shell nuclei 78Ni and 132Sn,...
8 pages REVTEX, 4 eps figures, submitted to Phys. Rev. CMaking use of the finite rank separable appr...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
Although nuclear energy-density functionals are determined primarily by fitting to ground-state prop...
We discuss properties of the quadrupole collective excitation of the deformed neutron-rich nucleus $...
Density functional theory is a preferred microscopic method for calculation of nuclear properties ov...
International audienceValuable theoretical predictions of nuclear dipole excitations in the whole ch...
International audienceFor the first time, using a unique finite range interaction (D1M Gogny force),...