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May 6, 20260 citations

Towards twisted, topological, and quantum graphene plasmonics

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ASA. Octávio SoaresNPNuno M. R. Peres

Key Points

  • This research investigates the quantum and topological properties of graphene-based plasmonic systems.
  • Analyzed single-layer graphene and twisted bilayer graphene
  • Examined various graphene architectures including gratings and chains
  • Explored kagomé lattice structures for plasmonic effects.
  • Identified unique quantum properties in graphene systems
  • Demonstrated potential applications of twisted bilayer graphene in plasmonics
  • Highlighted the role of topological effects in enhancing plasmonic behavior.

Abstract

In this article, we analyze the quantum and topological properties of graphene-based plasmonic systems. We consider the following plasmonic materials: single-layer graphene, twisted bilayer graphene, and other graphene stackings, as well as the following architectures: graphene-based gratings, grids, chains of graphene disks, and the kagomé lattice.

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Cite This Study

Soares et al. (2026) studied this question.

synapsesocial.com/papers/69fa8ef304f884e66b53155dhttps://doi.org/10.1209/0295-5075/ae5d69/pdf
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