Observation of Invisibility Angle and Flat Band Physics in Dipolar Photonic Lattices
Eris Román-Cortés, Maxim Mazanov, Rodrigo A. Vicencio, Maxim A. Gorlach
Source record
Source: Crossref
Published: Mar 6, 2025
DOI: 10.1021/acs.nanolett.4c05951
Open original source ↗Source abstract
Abstract Evanescently coupled waveguide arrays provide a tabletop platform to realize a variety of Hamiltonians, where physical waveguides correspond to the individual sites of a tight-binding lattice. Nontrivial spatial structure of the waveguide modes enriches this picture and uncovers further possibilities. Here, we demonstrate that the effective coupling between p-like modes of adjacent photonic waveguides changes its sign depending on their relative orientation vanishing for proper alignment at a so-called invisibility angle. Using femtosecond laser-written waveguides, we demonstrate this experimentally for p-mode dimers and graphene-like photonic lattices exhibiting quasi-flat bands at this angle. We observe diffraction-free propagation of corner and bulk states, providing robust experimental evidence of a two-dimensional Aharonov–Bohm-like caging in an optically switchable system.
Evidence graph
No public relationships recorded yet.
Integrity note: This page is a factual metadata record created by deterministic ingestion. It is not a claim that the work moves a mathematical frontier or has been independently verified.