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Photonic crystals for nano-light in moir\'e graphene superlattices

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arxiv 1901.08378 v1 pith:4Z5QTDUP submitted 2019-01-24 cond-mat.mes-hall

Photonic crystals for nano-light in moir\'e graphene superlattices

classification cond-mat.mes-hall
keywords graphenenano-lightplasmonatomicallymoirphotonicpolaritonsproperties
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Graphene is an atomically thin plasmonic medium that supports highly confined plasmon polaritons, or nano-light, with very low loss. Electronic properties of graphene can be drastically altered when it is laid upon another graphene layer, resulting in a moir\'e superlattice. The relative twist angle between the two layers is a key tuning parameter of the interlayer coupling in thus obtained twisted bilayer graphene (TBG). We studied propagation of plasmon polaritons in TBG by infrared nano-imaging. We discovered that the atomic reconstruction occurring at small twist angles transforms the TBG into a natural plasmon photonic crystal for propagating nano-light. This discovery points to a pathway towards controlling nano-light by exploiting quantum properties of graphene and other atomically layered van der Waals materials eliminating need for arduous top-down nanofabrication.

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