International audienceWe 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
Graduation date: 1988The static and dynamic electric quadrupole moments of even-even\ud and odd-A nu...
Recent progresses on microscopic and self-consistent description of the nuclear moments in covariant...
Abstract In spite of the high-density and strongly correlated nature of the atomic nucleus, experime...
International audienceWe use the nuclear density functional theory to determine nuclear electric qua...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Ground state quadrupole moments of odd-odd near-double-magic nuclei are calculated in the approximat...
The quadrupole moments of odd neighbors of semi-magic lead and tin isotopes and $N=50,N=82$ isotones...
International audienceMagnetic properties of deformed odd-mass nuclei are studied within a nonrelati...
Recent achievements on the description of the magnetic moments in the framework of the covariant den...
Commonly used exchange-correlations functionals are known to produce inaccurate electric field gradi...
The self-consistent Theory of Finite Fermi Systems based on the Energy Density Functional byFayans e...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
Graduation date: 1988The static and dynamic electric quadrupole moments of even-even\ud and odd-A nu...
Recent progresses on microscopic and self-consistent description of the nuclear moments in covariant...
Abstract In spite of the high-density and strongly correlated nature of the atomic nucleus, experime...
International audienceWe use the nuclear density functional theory to determine nuclear electric qua...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Within the nuclear DFT approach, we determined the magnetic dipole and electric quadrupole moments f...
Ground state quadrupole moments of odd-odd near-double-magic nuclei are calculated in the approximat...
The quadrupole moments of odd neighbors of semi-magic lead and tin isotopes and $N=50,N=82$ isotones...
International audienceMagnetic properties of deformed odd-mass nuclei are studied within a nonrelati...
Recent achievements on the description of the magnetic moments in the framework of the covariant den...
Commonly used exchange-correlations functionals are known to produce inaccurate electric field gradi...
The self-consistent Theory of Finite Fermi Systems based on the Energy Density Functional byFayans e...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
Graduation date: 1988The static and dynamic electric quadrupole moments of even-even\ud and odd-A nu...
Recent progresses on microscopic and self-consistent description of the nuclear moments in covariant...
Abstract In spite of the high-density and strongly correlated nature of the atomic nucleus, experime...