International audienceRecent experimental observation of the direct links between superdeformed and normal-deformed structures in the A∼190 mass region offers a unique information on the absolute nuclear binding energy in the 2:1 minima, and hence on the magnitude of shell effects in the superdeformed well. In the present paper, the self-consistent mean-field theory with density-dependent pairing interaction is used to explain at the same time the two-particle separation energies in the first and second wells, and the excitation energies of superdeformed states in the A∼190 and A∼240 mass regions
We investigate the coexistence of spherical, deformed, and superdeformed states at low spin in [Form...
We study the superdeformed (SD) states and corresponding SD hypernuclei of Ar isotopes with the mult...
The properties of loosely bound proton-rich nuclei around A = 20 are investigated within the framewo...
The location of nuclear closed shells, as evidenced through discontinuities in binding energy and on...
The location of nuclear closed shells, as evidenced through discontinuities in binding energy and on...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
The microscopically constrained relativistic mean field theory is used to investigate the superdefor...
A measurement of the energy and spin of superdeformed states in 190Hg, obtained through the observat...
A measurement of the energy and spin of superdeformed states in 190Hg, obtained through the observat...
12 pages, 9 figuresLarge scale shell model calculations, with dimensions reaching 10^{9}, are carrie...
We derived the semiclassical trace formulas for the level density as sums over periodic-orbit famili...
The variations of the average pairing strength in the (N, Z) plane are studied with a δ-interaction ...
The properties of loosely bound proton-rich nuclei around A=20 are investigated within the framework...
The structure of superheavy nuclei has been studied using the macroscopic-microscopic model. The mac...
We investigate the coexistence of spherical, deformed, and superdeformed states at low spin in [Form...
We study the superdeformed (SD) states and corresponding SD hypernuclei of Ar isotopes with the mult...
The properties of loosely bound proton-rich nuclei around A = 20 are investigated within the framewo...
The location of nuclear closed shells, as evidenced through discontinuities in binding energy and on...
The location of nuclear closed shells, as evidenced through discontinuities in binding energy and on...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
The microscopically constrained relativistic mean field theory is used to investigate the superdefor...
A measurement of the energy and spin of superdeformed states in 190Hg, obtained through the observat...
A measurement of the energy and spin of superdeformed states in 190Hg, obtained through the observat...
12 pages, 9 figuresLarge scale shell model calculations, with dimensions reaching 10^{9}, are carrie...
We derived the semiclassical trace formulas for the level density as sums over periodic-orbit famili...
The variations of the average pairing strength in the (N, Z) plane are studied with a δ-interaction ...
The properties of loosely bound proton-rich nuclei around A=20 are investigated within the framework...
The structure of superheavy nuclei has been studied using the macroscopic-microscopic model. The mac...
We investigate the coexistence of spherical, deformed, and superdeformed states at low spin in [Form...
We study the superdeformed (SD) states and corresponding SD hypernuclei of Ar isotopes with the mult...
The properties of loosely bound proton-rich nuclei around A = 20 are investigated within the framewo...