Symmetry-Based Classification of Chern Phases in Honeycomb Photonic Crystals

Bibliographic Details
Title: Symmetry-Based Classification of Chern Phases in Honeycomb Photonic Crystals
Authors: Câmara, Rodrigo P., Rappoport, Tatiana G., Silveirinha, Mário G.
Publication Year: 2024
Collection: Physics (Other)
Subject Terms: Physics - Optics
More Details: In this work, we develop a symmetry-based classification of Chern phases in honeycomb photonic crystals, considering arbitrary nonreciprocal couplings compatible with energy conservation. Our analysis focuses on crystals formed through nonreciprocal perturbations of photonic graphene. These perturbations, which can have arbitrary spatial variations, are generally described by scalar and vector fields. Using a tight-binding model, we consider the most general nonreciprocal interactions, including gyromagnetic, pseudo-Tellegen, and moving medium responses, and examine how the corresponding nonreciprocal fields influence the crystal's topology. Our findings reveal that nonreciprocal interactions alone are insufficient to induce a topologically nontrivial phase. Instead, a nontrivial p6m component in the nonreciprocal fields is required to open a bandgap and achieve a non-zero Chern number. These results provide a symmetry-based roadmap for engineering photonic topological phases via nonreciprocal perturbations of photonic graphene, offering practical guidelines for designing topological phases in graphene-like photonic crystals.
Comment: 47 pages, 8 figures
Document Type: Working Paper
Access URL: http://arxiv.org/abs/2412.04182
Accession Number: edsarx.2412.04182
Database: arXiv
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