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Excited Rydberg States in TMD Heterostructures

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arxiv 2103.09004 v1 pith:I6VC2H6Z submitted 2021-03-16 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords statescoulombexcitedheterostructuresmeasurementsmetalmodelraman
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The functional form of Coulomb interactions in the transition metal dichalcogenides and other van der Waals solids is critical to many of their unique properties, e.g. strongly-correlated electron states, superconductivity and emergent ferromagnetism. This paper presents measurements of key excitonic energy levels in MoSe2/WSe2 heterostructures. These measurements are obtained from resonance Raman experiments on specific Raman peaks only observed at excited states of the excitons. This data is used to validate a model of the Coulomb potential in these structures which predicts the exciton energies to within ~5 meV / 2.5%. This model is used to determine the effect of heterostructure formation on the single-particle band gaps of the layers and will have a wide applicability in designing the next generation of more complex transition metal dichalcogenide structures.

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