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      Layered materials as a platform for quantum technologies

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          Unconventional superconductivity in magic-angle graphene superlattices

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            Indistinguishable photons from a single-photon device

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              Quantum emission from hexagonal boron nitride monolayers

              Artificial atomic systems in solids are widely considered the leading physical system for a variety of quantum technologies, including quantum communications, computing and metrology. To date, however, room-temperature quantum emitters have only been observed in wide-bandgap semiconductors such as diamond and silicon carbide, nanocrystal quantum dots, and most recently in carbon nanotubes. Single-photon emission from two-dimensional materials has been reported, but only at cryogenic temperatures. Here, we demonstrate room-temperature, polarized and ultrabright single-photon emission from a colour centre in two-dimensional hexagonal boron nitride. Density functional theory calculations indicate that vacancy-related defects are a probable source of the emission. Our results demonstrate the unprecedented potential of van der Waals crystals for large-scale nanophotonics and quantum information processing.
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                Contributors
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                Journal
                Nature Nanotechnology
                Nat. Nanotechnol.
                Springer Science and Business Media LLC
                1748-3387
                1748-3395
                June 2023
                June 15 2023
                June 2023
                : 18
                : 6
                : 555-571
                Article
                10.1038/s41565-023-01354-x
                37322143
                679798c3-a335-4625-bd84-f946587193b2
                © 2023

                https://www.springernature.com/gp/researchers/text-and-data-mining

                https://www.springernature.com/gp/researchers/text-and-data-mining

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