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Observation of Rydberg moir\'e excitons

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arxiv 2303.09844 v1 pith:NCF6LGXO submitted 2023-03-17 cond-mat.mes-hall cond-mat.str-el

Observation of Rydberg moir\'e excitons

classification cond-mat.mes-hall cond-mat.str-el
keywords rydbergexcitonsmoirobservationpotentialsquantumadjacentapplication
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Rydberg excitons, the solid-state counterparts of Rydberg atoms, have sparked considerable interest in harnessing their quantum application potentials, whereas a major challenge is realizing their spatial confinement and manipulation. Lately, the rise of two-dimensional moir\'e superlattices with highly tunable periodic potentials provides a possible pathway. Here, we experimentally demonstrate this capability through the observation of Rydberg moir\'e excitons (XRM), which are moir\'e trapped Rydberg excitons in monolayer semiconductor WSe2 adjacent to twisted bilayer graphene. In the strong coupling regime, the XRM manifest as multiple energy splittings, pronounced redshift, and narrowed linewidth in the reflectance spectra, highlighting their charge-transfer character where electron-hole separation is enforced by the strongly asymmetric interlayer Coulomb interactions. Our findings pave the way for pursuing novel physics and quantum technology exploitation based on the excitonic Rydberg states.

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