Emergent Collectivity in Nuclei and Enhanced Proton-Neutron Interactions
arXiv:1310.7599 · doi:10.1103/PhysRevC.88.054309
Abstract
Enhanced proton-neutron interactions occur in heavy nuclei along a trajectory of approximately equal numbers of valence protons and neutrons. This is also closely aligned with the trajectory of the saturation of quadrupole deformation. The origin of these enhanced p-n interactions is discussed in terms of spatial overlaps of proton and neutron wave functions that are orbit-dependent. It is suggested for the first time that nuclear collectivity is driven by synchronized filling of protons and neutrons with orbitals having parallel spins, identical orbital and total angular momenta projections, belonging to adjacent major shells and differing by one quantum of excitation along the z-axis. These results may lead to a new approach to symmetry-based theoretical calculations for heavy nuclei.
6 pages, 4 figures
References in corpus (2)
Cited by in corpus (20)
- Analytic predictions for nuclear shapes, the prolate dominance and the prolate-oblate shape transition in the proxy-SU(3) model
- Proxy-SU(3) symmetry in heavy deformed nuclei
- Precision mass measurements on neutron-rich rare-earth isotopes at JYFLTRAP - reduced neutron pairing and implications for the -process calculations
- The islands of shape coexistence within the Elliott and the proxy-SU(3) Models
- Shape coexistence in even-even nuclei: A theoretical overview
- Mass measurements of As, Se and Br nuclei and their implication on the proton-neutron interaction strength towards the N=Z line
- The proxy-SU(3) symmetry in atomic nuclei
- Proxy-SU(3) symmetry in the shell model basis
- Pairing Nambu-Goldstone Modes within Nuclear Density Functional Theory
- Exploring the mass surface near the rare-earth abundance peak via precision mass measurements at JYFLTRAP
- Islands of shape coexistence from single-particle spectra in covariant density functional theory
- Parameter-free predictions for the collective deformation variables beta and gamma within the pseudo-SU(3) scheme
- Empirical residual neutron-proton interaction in odd-odd nuclei
- Islands of shape coexistence: theoretical predictions and experimental evidence
- Abnormal Bifurcation of the Double Binding Energy Differences and Proton-Neutron Pairing: Nuclei Close to Line from Ni to Rb
- Description and prediction of even-A nuclear masses based on residual proton-neutron interactions
- Foundations of the proxy-SU(3) symmetry in heavy nuclei
- Quadrupole-Octupole Residual Interaction in the Proxy- Scheme
- A symmetry for heavy nuclei: Proxy-SU(3)
- Inter-band B(E1) Strengths in Heavy Nuclei based on the Proxy-SU(3) Scheme