A general computational scheme for the (nonrelativistic) Bethe logarithm is developed, opening the route to “routine” evaluation of the leading-order quantum electrodynamics correction (QED) relevant for spectroscopic applications for small polyatomic and polyelectronic molecular systems. The implementation relies on the Schwartz method and minimization of a Hylleraas functional. In relation with electronically excited states, a projection technique is considered, which ensures positive definiteness of the functional over the entire parameter (photon momentum) range. Using this implementation, the Bethe logarithm is converged to a relative precision better than 1:103 for selected electronic states of the two-electron H2 and H3+, and the thr...
Bethe logarithms accurate to 14 or 15 places to the right of the decimal are tabulated for all state...
The performance of the Bethe–Salpeter equation (BSE) approach for the first-principles computation o...
Even when using parametrized semiempirical methods, quantum chemical calculations on molecules conta...
We describe the calculation of hydrogenic (one-loop) Bethe logarithms for all states with principal ...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
We describe the calculation of hydrogenic (one-loop) Bethe logarithms for all states with principal ...
We have computed the Bethe logarithms for the 1 singlet S, 2 singlet S and 2triplet S states of the ...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
The calculation of Bethe logarithm for the ground state of the lithium atom is presented. The Bethe ...
We calculate the two-loop Bethe logarithm correction to atomic energy levels in hydrogenlike systems...
Main aim of this work is calculation of contribution of the selfenergy of electron to atomic spectra...
The Bethe logarithm for a large set of states of the helium atom is calculated with a precision of 1...
Due to the fast increasing capabilities of modern computers it is now feasible to calculate spectra ...
ABSTRACT: We perform benchmark calculations of the Bethe−Salpeter vertical excitation energies for t...
Bethe logarithms accurate to 14 or 15 places to the right of the decimal are tabulated for all state...
The performance of the Bethe–Salpeter equation (BSE) approach for the first-principles computation o...
Even when using parametrized semiempirical methods, quantum chemical calculations on molecules conta...
We describe the calculation of hydrogenic (one-loop) Bethe logarithms for all states with principal ...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
We describe the calculation of hydrogenic (one-loop) Bethe logarithms for all states with principal ...
We have computed the Bethe logarithms for the 1 singlet S, 2 singlet S and 2triplet S states of the ...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
Two-loop Bethe logarithms are calculated for excited P and D states in hydrogenlike systems, and est...
The calculation of Bethe logarithm for the ground state of the lithium atom is presented. The Bethe ...
We calculate the two-loop Bethe logarithm correction to atomic energy levels in hydrogenlike systems...
Main aim of this work is calculation of contribution of the selfenergy of electron to atomic spectra...
The Bethe logarithm for a large set of states of the helium atom is calculated with a precision of 1...
Due to the fast increasing capabilities of modern computers it is now feasible to calculate spectra ...
ABSTRACT: We perform benchmark calculations of the Bethe−Salpeter vertical excitation energies for t...
Bethe logarithms accurate to 14 or 15 places to the right of the decimal are tabulated for all state...
The performance of the Bethe–Salpeter equation (BSE) approach for the first-principles computation o...
Even when using parametrized semiempirical methods, quantum chemical calculations on molecules conta...