The Euclidean dynamical symmetry hidden in the critical region of nuclear shape phase transitions is revealed by a novel algebraic F(5) description. With a nonlinear projection, it is shown that the dynamics in the critical region of the spherical-axial deformed and the spherical-gamma-soft shape phase transitions can indeed be manifested by this description, which thus provides a unified symmetry-based interpretation of the critical phenomena in the region. (C) 2014 The Authors. Published by Elsevier B.V.Physics, MultidisciplinarySCI(E)1ARTICLE55-5873
A review of the shape phase transitions within the IBA, is presented. This nuclear model depends on ...
By comparing the values of some quantities obtained in the SD pair truncated shell model and the dyn...
The gamma- rigid solution of the Bohr Hamiltonian with the beta-soft potential and 0 degrees <= g...
AbstractThe Euclidean dynamical symmetry hidden in the critical region of nuclear shape phase transi...
The Euclidean dynamical symmetry hidden in the critical region of nuclear shape phase transitions is...
AbstractA hybrid model which combines γ-stable and γ-rigid collective conditions through a rigidity ...
Based on the boson realization of the Euclidean algebras, it is shown that the five-dimensional Eucl...
AbstractThe critical point T(5) symmetry for the spherical to triaxially deformed shape phase transi...
The critical point T(5) symmetry for the spherical to triaxially deformed shape phase transition is ...
The rapid transition between spherical and gamma-soft shapes in Ba and Xe nuclei in the mass region ...
Quantum Phase Transitions arising in algebraic and collective models of nuclear structure are review...
The analysis of shape transitions in Nd isotopes, based on the framework of relativistic energy-dens...
The relativistic mean-field framework, extended to include correlations related to restoration of br...
Implementing a shell model Hamiltonian with monopole-pair, quadrupole-pair and quadrupole-quadrupole...
The analysis of shape transitions in Nd isotopes, based on the framework of relativistic energy-dens...
A review of the shape phase transitions within the IBA, is presented. This nuclear model depends on ...
By comparing the values of some quantities obtained in the SD pair truncated shell model and the dyn...
The gamma- rigid solution of the Bohr Hamiltonian with the beta-soft potential and 0 degrees <= g...
AbstractThe Euclidean dynamical symmetry hidden in the critical region of nuclear shape phase transi...
The Euclidean dynamical symmetry hidden in the critical region of nuclear shape phase transitions is...
AbstractA hybrid model which combines γ-stable and γ-rigid collective conditions through a rigidity ...
Based on the boson realization of the Euclidean algebras, it is shown that the five-dimensional Eucl...
AbstractThe critical point T(5) symmetry for the spherical to triaxially deformed shape phase transi...
The critical point T(5) symmetry for the spherical to triaxially deformed shape phase transition is ...
The rapid transition between spherical and gamma-soft shapes in Ba and Xe nuclei in the mass region ...
Quantum Phase Transitions arising in algebraic and collective models of nuclear structure are review...
The analysis of shape transitions in Nd isotopes, based on the framework of relativistic energy-dens...
The relativistic mean-field framework, extended to include correlations related to restoration of br...
Implementing a shell model Hamiltonian with monopole-pair, quadrupole-pair and quadrupole-quadrupole...
The analysis of shape transitions in Nd isotopes, based on the framework of relativistic energy-dens...
A review of the shape phase transitions within the IBA, is presented. This nuclear model depends on ...
By comparing the values of some quantities obtained in the SD pair truncated shell model and the dyn...
The gamma- rigid solution of the Bohr Hamiltonian with the beta-soft potential and 0 degrees <= g...