English

Non-standard axion electrodynamics and the dual Witten effect

High Energy Physics - Phenomenology 2023-12-27 v2 High Energy Physics - Theory

Abstract

Standard axion electrodynamics has two closely related features. First, the coupling of a massless axion field to photons is quantized, in units proportional to the electric gauge coupling squared. Second, the equations of motion tell us that a time-dependent axion field in a background magnetic field sources an effective electric current, but a time-dependent axion field in a background electric field has no effect. These properties, which manifestly violate electric-magnetic duality, play a crucial role in experimental searches for axions. Recently, electric-magnetic duality has been used to motivate the possible existence of non-standard axion couplings, which can both violate the usual quantization rule and exchange the roles of electric and magnetic fields in axion electrodynamics. We show that these non-standard couplings can be derived from SL(2,Z) duality, but that they come at a substantial cost: in non-standard axion electrodynamics, all electrically charged particles become dyons when the axion traverses its field range, in a dual form of the standard Witten effect monodromy. This implies that there are dyons near the weak scale, leads to a large axion mass induced by Standard Model fermion loops, and dramatically alters Higgs physics. We conclude that non-standard axion electrodynamics, although interesting to consider in abstract quantum field theory, is not phenomenologically viable.

Keywords

Cite

@article{arxiv.2309.07951,
  title  = {Non-standard axion electrodynamics and the dual Witten effect},
  author = {Ben Heidenreich and Jacob McNamara and Matthew Reece},
  journal= {arXiv preprint arXiv:2309.07951},
  year   = {2023}
}

Comments

33 pages, 5 figures; v2: small clarifications, accepted for publication in JHEP