activity
20062009
most citedSkyrme-Rpa Description of Dipole Giant Resonance in Heavy and Superheavy Nuclei

66 citations · 255 across the 6 of their papers we have counts for

collaborators

6 papers

nucl-th200953 cited

Skyrme-Rpa Description of Spin-Flip M1 Giant Resonance

P. Vesely, J. Kvasil, V. O. Nesterenko +3

The spin-flip M1 giant resonance is explored in the framework of Random Phase Approximation on the basis of the Skyrme energy functional. A representative set of eight Skyrme param…

nucl-th200816 cited

Skyrme-Random-Phase-Approximation description of E1 strength in 92-100Mo

J. Kvasil, P. Vesely, V. O. Nesterenko +3

The isovector dipole E1 strength in Mo isotopes with A=92,94,96,98,100 is analyzed within the self-consistent separable random-phase approximation (SRPA) model with Skyrme forces S…

nucl-th200866 cited

Skyrme-Rpa Description of Dipole Giant Resonance in Heavy and Superheavy Nuclei

W. Kleinig, V. O. Nesterenko, J. Kvasil +2

The E1(T=1) isovector dipole giant resonance (GDR) in heavy and super-heavy deformed nuclei is analyzed over a sample of 18 rare-earth nuclei, 4 actinides and three chains of super…

nucl-th200745 cited

TDDFT with Skyrme Forces: Effect of Time-Odd Densities on Electric Giant Resonances

V. O. Nesterenko, W. Kleinig, J. Kvasil +2

Time-odd densities and their effect on electric giant resonances are investigated within the self-consistent separable random-phase-approximation (SRPA) model for various Skyrme fo…

nucl-th200623 cited

Giant dipole resonance in deformed nuclei: dependence on Skyrme forces

V. O. Nesterenko, W. Kleinig, J. Kvasil +2

The giant dipole resonance (GDR) in deformed nuclei is analyzed using the self-consistent separable random-phase-approximation (SRPA) with Skyrme forces SkT6, SkM, SLy6 and SkI…

nucl-th200652 cited

Self-Consistent Separable Rpa for Skyrme Forces: Giant Resonances in Axial Nuclei

V. O. Nesterenko, W. Kleinig, J. Kvasil +3

We formulate the self-consistent separable random-phase-approximation (SRPA) method and specify it for Skyrme forces with pairing for the case of axially symmetric deformed nuclei.…