Engineering Nanophotonic Modes via the Radiation Continuum
arXiv:2607.13288
The paper presents a universal method for coupling nanophotonic modes through radiative losses, demonstrating a high‑quality factor subradiant mode (a BIC‑like phenomenon) in mid‑infrared double‑metal patch antenna arrays.
Abstract
We demonstrate, experimentally and theoretically, a universal mechanism for combining nanophotonic modes relying on radiative-loss-mediated couplings. For the case of two modes this mechanism leads to a BIC-type phenomenon characterized by the emergence of a high-quality factor subradiant mode. This mode is experimentally observed in the mid-infrared range, in arrays of double-metal patch antennas where the radiation loss rates are controlled by the geometry of the system. As the mechanism described here is independent of the specific nature or number of the interacting modes, it can be used to combine physically different resonating structures, without requiring fine symmetry tuning or specific modal configurations, opening new opportunities for resonance-based nanophotonic devices.