The structural evolution in transitional nuclei of mass 80 A 132
arXiv:1501.03911 · doi:10.1103/PhysRevC.92.034323
Abstract
In this theoretical study, we report an investigation on the behavior of two neutron separation energy, differential variation of the separation energy and the abnormality in nuclear charge radius along the isotopic and isotonic chains of transition nuclei. We have used relativistic mean field formalism with NL3 and NL3 forces for this present analysis. The study refers to {\it even-even} nuclei such as Zr, Mo, Ru and Pd with = 40 86, where a rich collective phenomena such as proton radioactivity, cluster or nucleus radioactivity, exotic shapes, {\it Island of Inversion} and etc. are observed. These non-monotonic aspects over the isotopic chain are mainly correlated with the structural properties like shell/sub-shell closures, shape transition, clustering and magicity etc. In addition to these, we have shown the internal configuration of these nuclei to get a further insight into the reason for these discrepancies.
8 pages, 6 figures and 2 tables
References in corpus (10)
- Relativistic Continuum Hartree Bogoliubov Theory for Ground State Properties of Exotic Nuclei
- Exotic modes of excitation in atomic nuclei far from stability
- Relativistic Nuclear Energy Density Functionals: adjusting parameters to binding energies
- Collapse of the N=28 shell closure in Si
- Identification of 45 New Neutron-Rich Isotopes Produced by In-Flight Fission of a 238U Beam at 345 MeV/nucleon
- Structure properties of Th and Fm fission fragments: mean field analysis with the Gogny force
- Evidence for a change in the nuclear mass surface with the discovery of the most neutron-rich nuclei with 17<Z <25
- Collectivity-induced quenching of signatures for shell closures
- Relativistic mean field study of the properties of Z=117 nucleus and the decay chains of 117 isotopes
- Superdeformed and Hyperdeformed States in Z=122 Isotopes
Cited by in corpus (18)
- The surface properties of neutron-rich exotic nuclei within relativistic mean field formalisms
- Fusion cross-section for Ni-based reactions within the relativistic mean field formalism
- Nuclear shape evolution and shape coexistence in Zr and Mo isotopes
- Density-dependent van der Waals model under the GW170817 constraint
- Probable Decay Modes at Limits of Nuclear Stability of the Superheavy Nuclei
- Systematic study of fusion barrier characteristics within the relativistic mean-field formalism
- Theoretical study of fusion reactions S + Zr and Ca + Zr and quadrupole deformation of Zr
- The kinks in charge radii across = 82 and 126 revisited
- Microscopic study of the Shell Structure evolution in isotopes of light to middle mass range Nuclides
- Isospin dependent properties of the isotopic chain of Scandium and Titanium nuclei within the relativistic mean-field formalism
- Preformation Probability and Kinematics of Clusters Emission yielding Pb-daughters
- Above-barrier heavy-ion fusion cross-sections using the relativistic mean-field approach: case of spherical colliding nuclei
- The attribute of rotational profile to the hyperon puzzle in the prediction of heaviest compact star
- Exploring the ground state bulk and decay properties of the nuclei in superheavy island
- Persistence of the N = 50 shell closure over the isotopic chains of Sc, Ti, V and Cr nuclei using relativistic energy density functional
- Structural and decay properties of nuclei appearing in the -decay chains of 120 within the relativistic mean-field formalism
- Correlation between the nuclear structure and reaction dynamics of Ar-isotopes as projectile using the relativistic mean-field approach
- Quantum corrections to the Relativistic mean-field theory