In this paper we review the different relativistic and QED contributions to energies, ionic radii, transition probabilities and Landé g-factors in super-heavy elements, with the help of the MultiConfiguration Dirac-Fock method (MCDF). The effects of taking into account the Breit interaction to all orders by including it in the self-consistent field process are demonstrated. State of the art radiative corrections are included in the calculation and discussed. We also study the non-relativistic limit of MCDF calculation and find that the non-relativistic offset can be unexpectedly large
The influence of quantum electrodynamic (QED) corrections on the valence electrons in superheavy ato...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...
We discuss the performance of two widely used nuclear mean-field models, the relativistic mean-field...
In this paper we review the different relativistic and QED contributions to energies, ionic radii, t...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multiconfigurat...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multicon- figu...
The first-order QED corrections for valence electron are investigated for the neutral Ag, Rg and the...
High-precision calculations of the energy levels of the superheavy elements Z=119 and Z= 120+ are pr...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
In this paper we make a review of the most recent calculations of transitions energy in two and thre...
Les résultats de calculs ab initio pour les énergies de transition dans l'ion héliumoïde de l'uraniu...
The multiconfiguration Dirac-Hartree-Fock theory is used to calculate the 3d9D3/22→2D5/2 transition ...
Calculations of various corrections to the g factor of Li-like ions are presented, which result in a...
The successive ionization potentials (IPs) and electron affinities (EAs) for superheavy elements wit...
Theoretical resonance energies for KLL dielectronic recombination into He-, Li-, Be-, and B-like Hg ...
The influence of quantum electrodynamic (QED) corrections on the valence electrons in superheavy ato...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...
We discuss the performance of two widely used nuclear mean-field models, the relativistic mean-field...
In this paper we review the different relativistic and QED contributions to energies, ionic radii, t...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multiconfigurat...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multicon- figu...
The first-order QED corrections for valence electron are investigated for the neutral Ag, Rg and the...
High-precision calculations of the energy levels of the superheavy elements Z=119 and Z= 120+ are pr...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
In this paper we make a review of the most recent calculations of transitions energy in two and thre...
Les résultats de calculs ab initio pour les énergies de transition dans l'ion héliumoïde de l'uraniu...
The multiconfiguration Dirac-Hartree-Fock theory is used to calculate the 3d9D3/22→2D5/2 transition ...
Calculations of various corrections to the g factor of Li-like ions are presented, which result in a...
The successive ionization potentials (IPs) and electron affinities (EAs) for superheavy elements wit...
Theoretical resonance energies for KLL dielectronic recombination into He-, Li-, Be-, and B-like Hg ...
The influence of quantum electrodynamic (QED) corrections on the valence electrons in superheavy ato...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...
We discuss the performance of two widely used nuclear mean-field models, the relativistic mean-field...