Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure of S-states in muonic ions of lithium, beryllium and boron are calculated on the basis of quasipotential method in quantum electrodynamics. We consider contributions in first and second orders of perturbation theory which have the order α5 and α6 in the energy spectrum. Total values of hyperfine splittings are obtained which can be used for a comparison with future experimental data
State-dependent quantum electrodynamic corrections are evaluated for the hyperfine splitting of nS s...
On the basis of quasipotential method in quantum electrodynamics we calculate nuclear finite size ra...
Our previous calculations for the energy splittings of the states 2s1/2-2p1/2 and 2s1/2-2p3/2 for th...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
On the basis of quasipotential method in quantum electrodynamics we carry out a precise calculation ...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
The ground state hyperfine splitting of light muon-electron ions of lithium, beryllium, boron and he...
Precision calculations of the fine and hyperfine structure of muonic atoms are performed in a relati...
Precision calculations of the fine and hyperfine structure of muonic atoms are performed in a relati...
AbstractOn the basis of quasipotential method in quantum electrodynamics we calculate nuclear finite...
A method is presented for precise calculation of the energy corrections due to second-order electric...
In order to facilitate the analysis of muonic x-ray spectra, the results of numerical computations o...
State-dependent quantum electrodynamic corrections are evaluated for the hyperfine splitting of nS s...
On the basis of quasipotential method in quantum electrodynamics we calculate nuclear finite size ra...
Our previous calculations for the energy splittings of the states 2s1/2-2p1/2 and 2s1/2-2p3/2 for th...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
On the basis of quasipotential method in quantum electrodynamics we carry out a precise calculation ...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
We calculate hyperfine structure intervals for P–states in muonic ions of lithium, beryllium and bor...
The ground state hyperfine splitting of light muon-electron ions of lithium, beryllium, boron and he...
Precision calculations of the fine and hyperfine structure of muonic atoms are performed in a relati...
Precision calculations of the fine and hyperfine structure of muonic atoms are performed in a relati...
AbstractOn the basis of quasipotential method in quantum electrodynamics we calculate nuclear finite...
A method is presented for precise calculation of the energy corrections due to second-order electric...
In order to facilitate the analysis of muonic x-ray spectra, the results of numerical computations o...
State-dependent quantum electrodynamic corrections are evaluated for the hyperfine splitting of nS s...
On the basis of quasipotential method in quantum electrodynamics we calculate nuclear finite size ra...
Our previous calculations for the energy splittings of the states 2s1/2-2p1/2 and 2s1/2-2p3/2 for th...