Nuclear shape transitions and elastic magnetic electron scattering
arXiv:2012.04928 · doi:10.1103/PhysRevC.103.014303
Abstract
Backward elastic electron scattering from odd-A nuclear targets is characterized by magnetic form factors containing precise information on the nuclear structure. We study the sensitivity of the magnetic form factors to structural effects related to the evolution and shape transitions in both isotopic and isotonic chains. Calculations of magnetic form factors are performed in the plane-wave Born approximation. The nuclear structure is obtained from a deformed self-consistent mean-field calculation based on a Skyrme HF+BCS formalism. Collective effects are included in the cranking approximation, whereas nucleon-nucleon correlations are taken into account in the coherent density fluctuation model. The evolution of the magnetic form factors is found to exhibit signatures of shape transitions that show up in selected isotopic and isotonic chains involving both stable and unstable nuclei. Several cases are identified as suitable candidates for showing such fingerprints of shape transitions. A new generation of electron scattering experiments involving electron-radioactive beam colliders will be available in the near future, leading to a renewed interest in this field.
21 pages, 10 figures, accepted for publication in Physical Review C. arXiv admin note: text overlap with arXiv:1903.09600
References in corpus (7)
- Theoretical study of elastic electron scattering off stable and exotic nuclei
- Shape evolution in Yttrium and Niobium neutron-rich isotopes
- Superscaling analysis of inclusive electron scattering and its extension to charge-changing neutrino-nucleus cross sections beyond the relativistic Fermi gas approach
- Beyond mean-field study of elastic and inelastic electron scattering off nuclei
- Nuclear isospin mixing and elastic parity-violating electron scattering
- Electron scattering in isotonic chains as a probe of the proton shell structure of unstable nuclei
- Elastic magnetic electron scattering from deformed nuclei