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      Enhanced interactions of interlayer excitons in free-standing heterobilayers

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          Evidence for moiré excitons in van der Waals heterostructures

          Recent advances in the isolation and stacking of monolayers of van der Waals materials have provided approaches for the preparation of quantum materials in the ultimate two-dimensional limit1,2. In van der Waals heterostructures formed by stacking two monolayer semiconductors, lattice mismatch or rotational misalignment introduces an in-plane moiré superlattice3. It is widely recognized that the moiré superlattice can modulate the electronic band structure of the material and lead to transport properties such as unconventional superconductivity4 and insulating behaviour driven by correlations5-7; however, the influence of the moiré superlattice on optical properties has not been investigated experimentally. Here we report the observation of multiple interlayer exciton resonances with either positive or negative circularly polarized emission in a molybdenum diselenide/tungsten diselenide (MoSe2/WSe2) heterobilayer with a small twist angle. We attribute these resonances to excitonic ground and excited states confined within the moiré potential. This interpretation is supported by recombination dynamics and by the dependence of these interlayer exciton resonances on twist angle and temperature. These results suggest the feasibility of engineering artificial excitonic crystals using van der Waals heterostructures for nanophotonics and quantum information applications.
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            Signatures of moiré-trapped valley excitons in MoSe2/WSe2 heterobilayers

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              Observation of moiré excitons in WSe2/WS2 heterostructure superlattices

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                Author and article information

                Contributors
                Journal
                Nature
                Nature
                Springer Science and Business Media LLC
                0028-0836
                1476-4687
                October 12 2022
                Article
                10.1038/s41586-022-05193-z
                36224395
                a409521a-95b1-4dfe-b136-ce249bc856e2
                © 2022

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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