English

The electron self-energy in QED at two loops revisited

High Energy Physics - Phenomenology 2024-08-22 v3

Abstract

We reconsider the two-loop electron self-energy in quantum electrodynamics. We present a modern calculation, where all relevant two-loop integrals are expressed in terms of iterated integrals of modular forms. As boundary points of the iterated integrals we consider the four cases p2=0p^2=0, p2=m2p^2=m^2, p2=9m2p^2=9m^2 and p2=p^2=\infty. The iterated integrals have qq-expansions, which can be used for the numerical evaluation. We show that a truncation of the qq-series to order O(q30){\mathcal O}(q^{30}) gives numerically for the finite part of the self-energy a relative precision better than 102010^{-20} for all real values p2/m2p^2/m^2.

Keywords

Cite

@article{arxiv.1811.09308,
  title  = {The electron self-energy in QED at two loops revisited},
  author = {Ina Hönemann and Kirsten Tempest and Stefan Weinzierl},
  journal= {arXiv preprint arXiv:1811.09308},
  year   = {2024}
}

Comments

45 pages, v2: version to be published, v3: eq.(40) and (41) corrected