Restoration of the Broken D2-symmetry in the Mean Field Description of Rotating Nuclei
نویسندگان
چکیده
Signature effects observed in rotational bands are a consequence of an inherent D2-symmetry. This symmetry is naturally broken by the mean field cranking approximation when a tilted (non-principal) axis orientation of the nuclear spin becomes stable. The possible tunneling forth and back between the two symmetry-related minima in the double-humped potential-energy surface appears as a typical bifurcation of the rotational band. We describe this many-body process in which all nucleons participate by diagonalizing the nuclear Hamiltonian within a selected set of tilted and non-tilted cranking quasiparticle states. This microscopic approach is able to restore the broken D2 symmetry and reproduce the quantum fluctuations between symmetry-related HFB states which emerge as splitting of the band energies and in parallel staggering in intraband M1 transitions.
منابع مشابه
نقش شکست تقارن بار در اختلاف انرژی بستگی هستههای آینهای 15O-15N و 17F-17O
Charge symmetry breaking potentials due to the exchange of pseudoscalar and vector mesons in mirror nuclei are considered. With the computation of coulmb energy along with the present charge symmetry breaking effects provide a reasonably accurate description of the binding energy differences between mirror nuclei.
متن کاملسهم برهمکنشهای CSB در اختلاف انرژی بستگی هستههای آینهای
Nolen-Schiffer Anomaly in mirror nuclei due to the NN interactions with isospin mixing between T=0 and T=1 mesons of the same spin and parity are investigated. With the computation of coulomb energy along with the charge symmetry breaking (CSB) effects provide a reasonably accurate description of binding energy differences between 39ca- 39k- , 41cs- 41ca mirror nuclei.
متن کاملMicroscopic Description of Nuclear Wobbling Motion — Rotation of Triaxially Deformed Nuclei —
The nuclear wobbling motion in the Lu region is studied by the microscopic cranked mean-field plus RPA method. The Woods-Saxon potential is used as a mean-field with a new parameterization which gives reliable description of rapidly rotating nuclei. The prescription of symmetry-preserving residual interaction makes the calculation of the RPA step parameter-free, and we find the wobbling-like RP...
متن کاملUnified description of floppy and rigid rotating Wigner molecules formed in quantum dots
Restoration of broken circular symmetry is used to explore the characteristics of the ground states and the excitation spectra of rotating Wigner molecules ~RWM’s! formed in two-dimensional parabolic N-electron quantum dots. In high magnetic fields, the RWM’s are floppy rotors with the energies of the magic angular momentum ~L! states obeying aL1b/L. Under such fields the ground-state energies ...
متن کاملWigner Molecules in Semiconductor Quantum Dots and Trapped Ultracold Bosonic Clouds
Strongly correlated phenomena associated with symmetry breaking in small finite-size systems will be reviewed [1], with a focus on the strongly correlated regime of electrons in two-dimensional semiconductor quantum dots (QDs; often referred to as artificial atoms and molecules) and trapped ultracold bosonic atoms in harmonic traps. The talk will emphasize universal aspects and similarities of ...
متن کامل