The first-order QED corrections for valence electron are investigated for the neutral Ag, Rg and their neighbours of the Mendeleev Periodic Table within the framework of the Dirac-Hartree-Fock method. The including of SE effects in such procedure was done first for superheavy atoms. The obtained results provide the limit of the accuracy for the modern relativistic theoretical calculations for the superheavy elements and open the discussion about the accuracy of the QED corrections in the superheavy elements themselves
Atomic binding energies are calculated at utmost precision. A report on the current status of Lamb-s...
We present fully relativistic coupled cluster calculations of ionization potentials, electron affini...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...
The influence of quantum electrodynamic (QED) corrections on the valence electrons in superheavy ato...
In this paper we review the different relativistic and QED contributions to energies, ionic radii, t...
High-precision calculations of the energy levels of the superheavy elements Z=119 and Z= 120+ are pr...
There is strong interest in atomic and nuclear physics to the study of superheavy elements by the se...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
Recent atomic computations on the (super–) heavy elements have raised the expectation that their lo...
Abstract We present calculations on the quantum electrodynamics (QED) effects in 1s and 2s single a...
A fully covariant scheme of renormalization is developed for the evaluation of radiative corrections...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multiconfigurat...
The effects of the 4f shell of electrons and the relativity of valence electrons are compared. The e...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multicon- figu...
Atomic binding energies are calculated at utmost precision. A report on the current status of Lamb-s...
We present fully relativistic coupled cluster calculations of ionization potentials, electron affini...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...
The influence of quantum electrodynamic (QED) corrections on the valence electrons in superheavy ato...
In this paper we review the different relativistic and QED contributions to energies, ionic radii, t...
High-precision calculations of the energy levels of the superheavy elements Z=119 and Z= 120+ are pr...
There is strong interest in atomic and nuclear physics to the study of superheavy elements by the se...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
Recent atomic computations on the (super–) heavy elements have raised the expectation that their lo...
Abstract We present calculations on the quantum electrodynamics (QED) effects in 1s and 2s single a...
A fully covariant scheme of renormalization is developed for the evaluation of radiative corrections...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multiconfigurat...
The effects of the 4f shell of electrons and the relativity of valence electrons are compared. The e...
We derive an approximate expression for a "radiative potential" which can be used to calculate QED s...
We explore QED and many-body effects in super-heavy elements up to Z = 173 using the multicon- figu...
Atomic binding energies are calculated at utmost precision. A report on the current status of Lamb-s...
We present fully relativistic coupled cluster calculations of ionization potentials, electron affini...
Abstract: This chapter reviews possible experimental aspects of relativistic effects in heavier Main...