English

Structure of radiative corrections in a strong constant crossed field in the bubble-chain approximation

High Energy Physics - Theory 2021-09-03 v1

Abstract

We present a calculation of the electron mass operator combining the bubble-chain photon and the leading order electron propagators in a strong constant crossed electromagnetic field. The photon propagator is obtained by a summation of the Dyson series over 1PI polarization loop insertions and is accounted for in general form. By applying the derived mass operator, we find the bubble-chain electron propagator and the elastic scattering amplitude. The results are expressed in the general form of expansion over γ\gamma-matrix structures, each multiplied by a scalar invariant function of the electron virtuality and the quantum dynamical parameter χ\chi. We perform their asymptotic analysis and identify the dominant contribution at χ1\chi\gg 1. The presented calculations can be generalized by replacing the leading order electron propagator with the bubble-chain one. This will allow a consistent study the Dyson-Schwinger equations in the fully nonperturbative regime αχ2/31\alpha\chi^{2/3}\gtrsim1 within the bubble-chain approximation. In addition, we accompany our paper with the open-access computer-algebraic scripts containing all the presented computations [https://github.com/ArsenyMironov/SFQED-Loops].

Keywords

Cite

@article{arxiv.2109.00634,
  title  = {Structure of radiative corrections in a strong constant crossed field in the bubble-chain approximation},
  author = {A. A. Mironov and A. M. Fedotov},
  journal= {arXiv preprint arXiv:2109.00634},
  year   = {2021}
}

Comments

27 pages, 4 figures