Electromagnetic Helicity in Twisted Cavity Resonators
Abstract
Through left- or right-handed twisting, we investigate the impact of mirror-asymmetry (chirality) of the conducting boundary conditions of an equilaterial triangular cross-section electromagnetic resonator. We observe the generation of eigenmodes with non-zero electromagnetic helicity as a result of the coupling of near degenerate TE and TM modes. This can be interpreted as an emergence of magneto-electric coupling, which in turn produces a measurable shift in resonant mode frequency as a function of twist angle. We show that this coupling mechanism is equivalent to introducing a non-zero chirality material parameter or axion field to the medium. Our findings demonstrate the potential for real-time, macroscopic manipulation of electromagnetic helicity.
Cite
@article{arxiv.2504.03795,
title = {Electromagnetic Helicity in Twisted Cavity Resonators},
author = {E. C. I. Paterson and J. Bourhill and M. E. Tobar and M. Goryachev},
journal= {arXiv preprint arXiv:2504.03795},
year = {2026}
}
Comments
13 pages, 10 figures