Effects of vacuum polarization modify the energy levels in atoms with an orbiting particle heavier than an electron. The dominant effect is due to the Uehling potential. In this paper we consider the relativistic corrections to the energy levels caused by the Uehling potential and in particular the fine structure in muonic and antiprotonic atoms. We derive general expressions and consider in detail specific regions of parameters which allow simple asymptotic expansion. We take into account the recoil effects and anomalous magnetic moment in the case of an antiproton as the orbiting particle
AbstractWe discuss hadronic effects in the muonium hyperfine structure and derive an expression for ...
A long-standing problem of fine-structure anomalies in muonic atoms is revisited by considering the ...
We compute the vacuum polarisation correction to the binding energy of nuclear matter in the Walecka...
Effects of vacuum polarization modify the energy levels in atoms with an orbiting particle heavier t...
The shift of atomic energy levels due to hadronic vacuum polarization is evaluated in a semiempirica...
The reduced-mass dependence of relativistic and radiative effects in simple muonic bound systems is ...
In this Bachelor thesis the energy shift in atoms due to hadronic vacuum polarization is evaluated. ...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
Recent improvements in the determination of the running of the fine-structure constant also allow an...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
Radiative corrections to the decay rate in the low-Z hydrogen-like muonic atoms are considered. The ...
We discuss hadronic effects in the muonium hyperfine structure and derive an expression for the hadr...
We present an analytical evaluation of radiative corrections in exotic atoms induced by the one-loop...
The quantum electrodynamic theory of the nuclear recoil effect in atoms to all orders in \alpha Z an...
ThéorieThanks to the Dirac equation, the hydrogen-like atom at high $Z$ offers a precise model of re...
AbstractWe discuss hadronic effects in the muonium hyperfine structure and derive an expression for ...
A long-standing problem of fine-structure anomalies in muonic atoms is revisited by considering the ...
We compute the vacuum polarisation correction to the binding energy of nuclear matter in the Walecka...
Effects of vacuum polarization modify the energy levels in atoms with an orbiting particle heavier t...
The shift of atomic energy levels due to hadronic vacuum polarization is evaluated in a semiempirica...
The reduced-mass dependence of relativistic and radiative effects in simple muonic bound systems is ...
In this Bachelor thesis the energy shift in atoms due to hadronic vacuum polarization is evaluated. ...
Vacuum polarization, nuclear structure and recoil, radiative corrections to the hyperfine structure ...
Recent improvements in the determination of the running of the fine-structure constant also allow an...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
Radiative corrections to the decay rate in the low-Z hydrogen-like muonic atoms are considered. The ...
We discuss hadronic effects in the muonium hyperfine structure and derive an expression for the hadr...
We present an analytical evaluation of radiative corrections in exotic atoms induced by the one-loop...
The quantum electrodynamic theory of the nuclear recoil effect in atoms to all orders in \alpha Z an...
ThéorieThanks to the Dirac equation, the hydrogen-like atom at high $Z$ offers a precise model of re...
AbstractWe discuss hadronic effects in the muonium hyperfine structure and derive an expression for ...
A long-standing problem of fine-structure anomalies in muonic atoms is revisited by considering the ...
We compute the vacuum polarisation correction to the binding energy of nuclear matter in the Walecka...