Two-loop mass anomalous dimension in reduced quantum electrodynamics and application to dynamical fermion mass generation
Abstract
We consider reduced quantum electrodynamics (RQED) a model describing fermions in a -dimensional space-time and interacting via the exchange of massless bosons in -dimensions (). We compute the two-loop mass anomalous dimension, , in general RQED with applications to RQED and QED. We then proceed on studying dynamical (parity-even) fermion mass generation in RQED by constructing a fully gauge-invariant gap equation for RQED with as the only input. This equation allows for a straightforward analytic computation of the gauge-invariant critical coupling constant, , which is such that a dynamical mass is generated for , where is the renormalized coupling constant, as well as the gauge-invariant critical number of fermion flavours, , which is such that and a dynamical mass is generated for . For RQED, our results are in perfect agreement with the more elaborate analysis based on the resolution of truncated Schwinger-Dyson equations at two-loop order. In the case of QED, our analytical results (that use state of the art five-loop expression for ) are in good quantitative agreement with those obtained from numerical approaches.
Keywords
Cite
@article{arxiv.2107.07807,
title = {Two-loop mass anomalous dimension in reduced quantum electrodynamics and application to dynamical fermion mass generation},
author = {S. Metayer and S. Teber},
journal= {arXiv preprint arXiv:2107.07807},
year = {2021}
}
Comments
(v2) Published in JHEP, very minor typos corrected, no change in results. (v1) LaTeX file with feynMF package. 36 pages, 2 figures