Zero modes, beta functions and IR/UV interplay in higher-loop QED
arXiv:hep-th/0210240 · doi:10.1088/1126-6708/2002/11/032
Abstract
We analyze the relation between the short-distance behavior of quantum field theory and the strong-field limit of the background field formalism, for QED effective Lagrangians in self-dual backgrounds, at both one and two loop. The self-duality of the background leads to zero modes in the case of spinor QED, and these zero modes must be taken into account before comparing the perturbative beta function coefficients and the coefficients of the strong-field limit of the effective Lagrangian. At one-loop this is familiar from instanton physics, but we find that at two-loop the role of the zero modes, and the interplay between IR and UV effects in the renormalization, is quite different. Our analysis is motivated in part by the remarkable simplicity of the two-loop QED effective Lagrangians for a self-dual constant background, and we also present here a new independent derivation of these two-loop results.
15 pages, revtex4
Cited by in corpus (21)
- An Addendum to the Heisenberg-Euler effective action beyond one loop
- Paramagnetic squeezing of QCD matter
- An all-loop result for the strong magnetic field limit of the Heisenberg-Euler effective Lagrangian
- Running in the Dark Sector
- Dark Energy Content of Nonlinear Electromagnetism
- One loop photon-graviton mixing in an electromagnetic field: Part 2
- Reducible contributions to quantum electrodynamics in external fields
- Indirect searches for dark matter bound state formation and level transitions
- Relaxed super self-duality and effective action
- Attempts at a determination of the fine-structure constant from first principles: A brief historical overview
- Renormalization Scheme Dependence with Renormalization Group Summation
- Two-Loop Diagrammatics in a Self-Dual Background
- High-intensity scaling in UV-modified QED
- Nonperturbative results for the mass dependence of the QED fermion determinant
- On the Yang-Mills two-loop effective action with wordline methods
- "Background Field Integration-by-Parts" and the Connection Between One-Loop and Two-Loop Heisenberg-Euler Effective Actions
- The Renormalization Group with Exact beta-Functions
- Background Effective Action with Nonlinear Massive Gauge Fixing
- Chiral symmetry breaking in confining theories and asymptotic limits of operator product expansion
- Renormalization Flow of Nonlinear Electrodynamics
- Fermions in worldline holography