Generator coordinate method with proton--neutron pairing fluctuations and magnetic properties of odd--odd nuclei
arXiv:2402.18680 · doi:10.1093/ptep/ptae072
Abstract
Pairing correlations play an important role in a variety of nuclear phenomena. However, a quantitative understanding of proton--neutron pairing, especially isoscalar pairing remains elusive. To clarify the property of pairing, we investigate the roles of pairing in the transition of odd--odd nuclei. We develop a theoretical model based on the generator coordinate method (GCM) in which the isoscalar and isovector -pair amplitudes are used as the generator coordinates. Using the particle and the angular-momentum projections, the -pair GCM well reproduces the transition of odd--odd nuclei for the exactly solvable SO(8) model. We apply the method to odd--odd nuclei and find that the experimental values of are well reproduced. We also study the sensitivity of to the strength of the isoscalar pairing interaction.
20 pages, 11 figures
References in corpus (7)
- Overview of Neutron-Proton Pairing
- Proton-Neutron Pairing Amplitude as a Generator Coordinate for Double-Beta Decay
- Proton-neutron pairing vibrations in N=Z nuclei: Precursory soft mode of isoscalar pairing condensation
- Correlations Between Neutrinoless Double-Beta, Double Gamow-Teller and Double-Magnetic Decays in the pnQRPA Framework
- Effect of isoscalar spin-triplet pairings on spin-isospin responses in shell nuclei
- Proton induced deuteron knockout reaction as a probe of an isoscalar proton-neutron pair in nuclei
- Isovector spin susceptibility: Isotopic evolution of collectivity in spin response