There is a close theoretical connection between topological Floquet physics and cavity QED, yet this connection has not been realized experimentally due to complicated cavity QED models that often arise. We propose a simple, experimentally viable protocol to realize non-adiabatic topological photon pumping mediated by a single qubit, which we dub the anomalous Floquet photon pump. For both quantized photons and external drive, the system exhibits a non-trivial topological phase across a broad range of parameter space. Transitions out of the topological phase result from frequency-space delocalization. Finally, we argue that the protocol can be implemented in existing experiments via driven qubit non-linearities, with topological pumping witnessed in measurements of the cavity Wigner distribution functions.
@article{arxiv.2410.10959,
title = {Topological anomalous Floquet photon pump},
author = {Manshuo Lin and Saeed Rahmanian Koshkaki and Mohsen Yarmohammadi and Michael H. Kolodrubetz},
journal= {arXiv preprint arXiv:2410.10959},
year = {2024}
}