Nuclear DFT analysis of electromagnetic moments in odd near doubly magic nuclei
arXiv:2111.04675 · doi:10.1088/1361-6471/ac900a
Abstract
We use the nuclear density functional theory to determine nuclear electric quadrupole and magnetic dipole moments in all one-particle and one-hole neighbours of eight doubly magic nuclei. We align angular momenta along the intrinsic axial-symmetry axis with broken time-reversal symmetry, which allows us to explore fully the self-consistent charge, spin, and current polarisation. Spectroscopic moments are determined for symmetry-restored wave functions and compared with available experimental data. We find that the obtained polarisations do not call for using quadrupole- or dipole-moment operators with effective charges or effective g-factors.
16 LaTeX pages, 6 figures, extended version, accepted as a Letter in Journal of Physics G
References in corpus (10)
- Ground-State Electromagnetic Moments of Calcium Isotopes
- Dipole and quadrupole moments of Cu as a test of the robustness of the shell closure near Ni
- Global study of the spectroscopic properties of the first 2+ state in even-even nuclei
- Properties of odd nuclei and the impact of time-odd mean fields: A systematic Skyrme-Hartree-Fock analysis
- Solution of universal nonrelativistic nuclear DFT equations in the Cartesian deformed harmonic-oscillator basis. (IX) HFODD (v3.06h): a new version of the program
- Ground-state properties of even and odd Magnesium isotopes in a symmetry-conserving approach
- Relativistic Fock space coupled cluster study of bismuth electronic structure to extract the Bi nuclear quadrupole moment
- Ground State Electromagnetic Moments of Ca
- Doubly-magic nature of 56Ni: measurement of the ground state nuclear magnetic dipole moment of 55Ni
- First-excited state factors in the stable, even Ge and Se isotopes
Cited by in corpus (13)
- Laser Spectroscopy for the Study of Exotic Nuclei
- Opportunities for Fundamental Physics Research with Radioactive Molecules
- Impact of two-body currents on magnetic dipole moments of nuclei
- Electromagnetic Properties of Indium Isotopes Elucidate the Doubly Magic Character of Sn
- Revisited nuclear magnetic dipole and electric quadrupole moments of polonium isotopes
- Discovering Nuclear Models from Symbolic Machine Learning
- Electromagnetic moments in the Sn-Gd region determined within nuclear DFT
- Shape polarization in the tin isotopes near from precision -factor measurements on short-lived isomers
- Electromagnetic moments of ground and excited states calculated in heavy odd-N open-shell nuclei
- Reduction in nuclear size and quadrupole deformation of high-spin isomers of 127,129In
- Moments of inertia of rare-earth nuclei and the nuclear time-odd mean fields within exact solutions of the adiabatic theory
- Description of the odd No nuclei using Skyrme functionals with modified spin-spin interaction
- Impact of octupole deformation on the nuclear electromagnetic response