Some Recent Advances in Bound-State Quantum Electrodynamics
arXiv:hep-ph/0501220 · doi:10.1139/p05-018
Abstract
We discuss recent progress in various problems related to bound-state quantum electrodynamics: the bound-electron g factor, two-loop self-energy corrections and the laser-dressed Lamb shift. The progress relies on various advances in the bound-state formalism, including ideas inspired by effective field theories such as Nonrelativistic Quantum Electrodynamics. Radiative corrections in dynamical processes represent a promising field for further investigations.
12 pages, nrc1 LaTeX style
References in corpus (12)
- Evaluation of the self-energy correction to the g-factor of S states in H-like ions
- Two-Loop Bethe Logarithms
- Nonrelativistic QED approach to the bound-electron g factor
- QED vertex form factors at two loops
- Two-Loop Form Factors in QED
- Radiative energy shifts induced by local potentials
- Lamb Shift of Laser-Dressed Atomic States
- Two-Loop Bethe Logarithms for Higher Excited S Levels
- Three-Loop Reducible Radiative Photon Contributions to Lamb Shift and Hyperfine Splitting
- Relativistic and Radiative Corrections to the Mollow Spectrum
- Extrapolation of the Zalpha-Expansion and Two--Loop Bound--State Energy Shifts
- Two-loop self-energy correction to the ground-state Lamb shift in H-like ions