The theory of QED corrections to hyperfine structure in light hydrogenic atoms and ions has recently advanced to the point that the uncertainty of these corrections is much smaller than 1 part per million (ppm), while the experiments are even more accurate. The difference of the experimental results and the corresponding QED theory is due to nuclear effects, which are primarily the result of the finite nuclear charge and magnetization distributions. This difference varies from tens to hundreds of ppm. We have calculated the dominant nuclear component of the 1s hyperfine interval for deuterium, tritium and singly ionized helium, using a unified approach with modern second-generation potentials. The calculated nuclear corrections are within 3...
Theoretical investigations of the hyperfine structure of the hydrogen molecular ion (one electron an...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
AbstractWe have investigated the correction to the hyperfine structure of heavy multicharged ions, w...
AbstractQED theory of the hyperfine splitting of the 1s and 2s state in hydrogen isotopes and helium...
QED theory of the hyperfine splitting of the 1s and 2s state in hydrogen isotopes and helium-3 ion i...
We consider hyperfine splitting of is and, in part, of 2s levels in light hydrogen-like atoms: hydro...
In previous papers, corrections to the hyperfine structure (hfs) in hydrogen of relative order αm / ...
We revisit the mα6(m/M) order corrections to the hyperfine splitting in the H2+ ion and find a hithe...
This thesis is a calculation of the energy shift in the hyperfine structure of atomic H due to the f...
The hyperfine shifts of 2S and 2P states of heliumlike atoms from helium to neon (both stable and un...
Studies of the hyperfine splitting in hydrogen are strongly motivated by the level of accuracy achie...
Calculations of the magnetic hyperfine structure rely on the input of nuclear properties - nuclear m...
Quantum electrodynamics is the first successful and still the most successful quantum field theory. ...
We report an ab initio calculation of the shielding of the nuclear magnetic moment by the bound elec...
High-precision measurements and calculations of energy spectra of hydrogen-like atoms provide tests ...
Theoretical investigations of the hyperfine structure of the hydrogen molecular ion (one electron an...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
AbstractWe have investigated the correction to the hyperfine structure of heavy multicharged ions, w...
AbstractQED theory of the hyperfine splitting of the 1s and 2s state in hydrogen isotopes and helium...
QED theory of the hyperfine splitting of the 1s and 2s state in hydrogen isotopes and helium-3 ion i...
We consider hyperfine splitting of is and, in part, of 2s levels in light hydrogen-like atoms: hydro...
In previous papers, corrections to the hyperfine structure (hfs) in hydrogen of relative order αm / ...
We revisit the mα6(m/M) order corrections to the hyperfine splitting in the H2+ ion and find a hithe...
This thesis is a calculation of the energy shift in the hyperfine structure of atomic H due to the f...
The hyperfine shifts of 2S and 2P states of heliumlike atoms from helium to neon (both stable and un...
Studies of the hyperfine splitting in hydrogen are strongly motivated by the level of accuracy achie...
Calculations of the magnetic hyperfine structure rely on the input of nuclear properties - nuclear m...
Quantum electrodynamics is the first successful and still the most successful quantum field theory. ...
We report an ab initio calculation of the shielding of the nuclear magnetic moment by the bound elec...
High-precision measurements and calculations of energy spectra of hydrogen-like atoms provide tests ...
Theoretical investigations of the hyperfine structure of the hydrogen molecular ion (one electron an...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
AbstractWe have investigated the correction to the hyperfine structure of heavy multicharged ions, w...