Rci-Q extends GRASP2018 with new fitting prefactors for the Flambaum-Ginges radiative potential, plus finite-nucleus self-energy corrections and the Wichmann-Kroll vacuum polarization term.
QED radiative corrections and many-body effects in atoms: vacuum polarization and binding energy shifts in alkali metals
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abstract
We calculate vacuum polarization corrections to the binding energies in neutral alkali atoms Na through to the superheavy element E119. We employ the relativistic Hartree-Fock method to demonstrate the importance of relaxation of the electronic core and the correlation potential method to study the effects of second and higher orders of perturbation theory. These many-body effects are sizeable for all orbitals, though particularly important for orbitals with angular momentum quantum number l>0. The orders of magnitude enhancement for d waves produces shifts that, for Rb and the heavier elements, are larger than those for p waves and only an order of magnitude smaller than the s-wave shifts. The many-body enhancement mechanisms that operate for vacuum polarization apply also to the larger self-energy corrections.
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physics.atom-ph 1years
2025 1verdicts
UNVERDICTED 1representative citing papers
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Rci-Q: an improved QED correction model for the GRASP2018 package
Rci-Q extends GRASP2018 with new fitting prefactors for the Flambaum-Ginges radiative potential, plus finite-nucleus self-energy corrections and the Wichmann-Kroll vacuum polarization term.