Resonant cavity-QED with chiral flat bands
Abstract
Flat bands exhibit high degeneracy and intrinsic localization, offering a promising platform for enhanced light-matter interactions. Here, we investigate the resonant interaction between a two-level emitter and a chiral flat band hosted by a photonic lattice. In the weak coupling regime, the emitter undergoes Rabi oscillations with a lifted photonic mode whose spatial structure reflects the nature of compact localized states and the onset of Anderson localization. We show that weak hopping disorder induces a delocalization of the lifted mode whereas the effective emitter-field coupling strength, and the associated mode volume experienced by the emitter, remains protected against structural fluctuations. We illustrate our approach using selected flat band lattices. Our findings provide a route to flat band state preparation via quench dynamics and robust cavity-QED control.
Keywords
Cite
@article{arxiv.2505.09524,
title = {Resonant cavity-QED with chiral flat bands},
author = {E. M. Broni and A. M. C. Souza and M. L. Lyra and F. A. B. F. de Moura and G. M. A. Almeida},
journal= {arXiv preprint arXiv:2505.09524},
year = {2026}
}
Comments
9 pages, 6 figures