Extending work by Gies and Karbstein on the Euler-Heisenberg Lagrangian, it has recently been shown that the one-loop propagator of a charged scalar particle in a constant electromagnetic field has a one-particle reducible contribution in addition to the well-studied irreducible one. Here we further generalize this result to the spinor case, and find the same relation between the reducible term, the tree-level propagator and the one-loop Euler-Heisenberg Lagrangian as in the scalar case. Our demonstration uses a novel worldline path integral representation of the photon-dressed spinor propagator in a constant electromagnetic field background
In part 1 of this series compact integral representations had been obtained for the one-loop photon-...
A previous evaluation of one-photon loop corrections to the energy-momentum tensor has been extended...
We study the Dirac propagator dressed by an arbitrary number N of photons by means of a worldline ap...
Extending work by Gies and Karbstein on the Euler-Heisenberg Lagrangian, it has recently been shown ...
36 pages, 9 figuresWe consider one-particle reducible (1PR) contributions to QED and scalar QED proc...
The worldline formalism has previously been used for deriving compact master formulas for the one-lo...
We show that in arbitrary even dimension, the two-loop scalar QED Heisenberg-Euler effective action ...
We provide an explicit expression for the strong magnetic field limit of the Heisenberg-Euler effect...
Two-point one-loop fermionic amplitudes modifiled by a constant homogeneous magnetic fileld are stud...
Abstract We show how all possible one-particle reducible tadpole diagrams in constant electromagneti...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
Photon-graviton mixing in an electromagnetic field is a process of potential interest for cosmology ...
In this work we use momentum-space techniques to evaluate the propagator G(xx') for a spin 1/2 mass ...
From the Euler-Heisenberg formula we calculate the exact real part of the one-loop effective Lagrang...
We illustrate a duality relation between one-loop integrals and single-cut phase-space integrals. Th...
In part 1 of this series compact integral representations had been obtained for the one-loop photon-...
A previous evaluation of one-photon loop corrections to the energy-momentum tensor has been extended...
We study the Dirac propagator dressed by an arbitrary number N of photons by means of a worldline ap...
Extending work by Gies and Karbstein on the Euler-Heisenberg Lagrangian, it has recently been shown ...
36 pages, 9 figuresWe consider one-particle reducible (1PR) contributions to QED and scalar QED proc...
The worldline formalism has previously been used for deriving compact master formulas for the one-lo...
We show that in arbitrary even dimension, the two-loop scalar QED Heisenberg-Euler effective action ...
We provide an explicit expression for the strong magnetic field limit of the Heisenberg-Euler effect...
Two-point one-loop fermionic amplitudes modifiled by a constant homogeneous magnetic fileld are stud...
Abstract We show how all possible one-particle reducible tadpole diagrams in constant electromagneti...
In the first part of this series, we employed the second-order formalism and the “symbol” map to con...
Photon-graviton mixing in an electromagnetic field is a process of potential interest for cosmology ...
In this work we use momentum-space techniques to evaluate the propagator G(xx') for a spin 1/2 mass ...
From the Euler-Heisenberg formula we calculate the exact real part of the one-loop effective Lagrang...
We illustrate a duality relation between one-loop integrals and single-cut phase-space integrals. Th...
In part 1 of this series compact integral representations had been obtained for the one-loop photon-...
A previous evaluation of one-photon loop corrections to the energy-momentum tensor has been extended...
We study the Dirac propagator dressed by an arbitrary number N of photons by means of a worldline ap...