English

Landau-Khalatnikov-Fradkin transformations in Reduced Quantum Electrodynamics

High Energy Physics - Phenomenology 2016-06-08 v2 High Energy Physics - Theory

Abstract

We derive the Landau-Khalatnikov-Frandkin transformation (LKFT) for the fermion propagator in quantum electrodynamics (QED) described within a brane-world inspired framework where photons are allowed to move in dγd_\gamma space-time (bulk) dimensions, while electrons remain confined to a ded_e-dimensional brane, with de<dγd_e < d_\gamma, referred to in the literature as reduced quantum electrodynamics, RQEDdγ,de_{d_\gamma,d_e}. Specializing to the case of graphene, namely, RQED4,3_{4,3} with massless fermions, we derive the nonperturbative form of the fermion propagator starting from its bare counterpart and then compare its weak coupling expansion to known one- and two-loop perturbative results. The agreement of the gauge-dependent terms of order α\alpha and α2\alpha^{2} is reminiscent from the structure of LKFT in ordinary QED in arbitrary space-time dimensions and provides strong constraints for the multiplicative renormalizability of RQEDdγ,de_{d_\gamma,d_e}.

Keywords

Cite

@article{arxiv.1604.03886,
  title  = {Landau-Khalatnikov-Fradkin transformations in Reduced Quantum Electrodynamics},
  author = {A. Ahmad and J. J. Cobos-Martínez and Y. Concha-Sánchez and A. Raya},
  journal= {arXiv preprint arXiv:1604.03886},
  year   = {2016}
}

Comments

To appear in Physical Review D

R2 v1 2026-06-22T13:31:40.940Z