English

Fermionic Fixed-Point Structure of Asymptotically Safe QED with a Pauli Term

High Energy Physics - Theory 2024-03-06 v1 Strongly Correlated Electrons High Energy Physics - Phenomenology

Abstract

We test the physical viability of a recent proposal for an asymptotically safe modification of quantum electrodynamics (QED), whose ultraviolet physics is dominated by a non-perturbative Pauli spin-field coupling. We focus in particular on its compatibility with the absence of dynamical generation of fermion mass in QED. Studying the renormalization group flow of chiral four-fermion operators and their fixed points, we discover a distinct class of behavior compared to the standard picture of fixed-point annihilation at large gauge couplings and the ensuing formation of chiral condensates. Instead, transcritical bifurcations, where the fixed points merely exchange infrared stability, are observed. Provided that non-chiral operators remain irrelevant, our theory accommodates a universality class of light fermions for Nf>1N_{\text{f}} > 1 irreducible Dirac flavors. On the contrary, in the special case of Nf=1N_{\text{f}} = 1 flavor, this comes only at the expense of introducing one additional relevant parameter.

Keywords

Cite

@article{arxiv.2403.02980,
  title  = {Fermionic Fixed-Point Structure of Asymptotically Safe QED with a Pauli Term},
  author = {Holger Gies and Kevin K. K. Tam},
  journal= {arXiv preprint arXiv:2403.02980},
  year   = {2024}
}