We propose a new table-top experimental configuration for the direct detection of dark matter axions with mass in the (10−6eV−10−2eV) range using non-perturbative effects in a system with non-trivial spatial topology. Different from most experimental setups found in literature on direct dark matter axion detection, which relies on θ˙ or ∇θ, we found that our system is in principle sensitive to a static θ≥10−14 and can also be used to set limit on the fundamental constant θQED which becomes the fundamental observable parameter of the Maxwell system if some conditions are met. Connection with Witten effect when the induced electric charge e′ is proportional to θ and the magnetic monopole becomes the dyon with non-vanishing e′=−e2πθ is also discussed.
@article{arxiv.1702.00012,
title = {Axion detection via Topological Casimir Effect},
author = {ChunJun Cao and Ariel Zhitnitsky},
journal= {arXiv preprint arXiv:1702.00012},
year = {2017}
}