Non-trivial Infrared Structure in (2+1)-dimensional Quantum Electrodynamics
Abstract
We show that the gauge-fermion interaction in multiflavour -dimensional quantum electrodynamics with a finite infrared cut-off is responsible for non-fermi liquid behaviour in the infrared, in the sense of leading to the existence of a non-trivial fixed point at zero momentum, as well as to a significant slowing down of the running of the coupling at intermediate scales as compared with previous analyses on the subject. Both these features constitute deviations from fermi-liquid theory. Our discussion is based on the leading- resummed solution for the wave-function renormalization of the Schwinger-Dyson equations . The present work completes and confirms the expectations of an earlier work by two of the authors (I.J.R.A. and N.E.M.) on the non-trivial infrared structure of the theory.
Keywords
Cite
@article{arxiv.hep-th/9607192,
title = {Non-trivial Infrared Structure in (2+1)-dimensional Quantum Electrodynamics},
author = {I. J. R. Aitchison and G. Amelino-Camelia and M. Klein-Kreisler and N. E. Mavromatos and D. Mc Neill},
journal= {arXiv preprint arXiv:hep-th/9607192},
year = {2008}
}
Comments
10 pages (LaTex), 5 figures (Postscript)