Abstract
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially useful quantum electronic phases. So far, p orbital bands were only realized for cold atoms in optical lattices and for light and excitonpolaritons in photonic crystals. For electrons, in-plane p orbital physics is difficult to access since natural electronic honeycomb lattices, such as graphene and silicene, show strong s-p hybridization. Here, we report on electronic honeycomb lattices prepared on a Cu(111) surface in a scanning tunneling microscope that, by design, show (nearly) pure orbital bands, including the p orbital flat band and Dirac cone.
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Vanmaekelbergh, D., Gardenier, T. S., Van Den Broeke, J. J., Moes, J. R., Swart, I., Delerue, C., … Smith, C. M. (2020). P orbital flat band and dirac cone in the electronic honeycomb lattice. ACS Nano, 14(10), 13638–13644. https://doi.org/10.1021/acsnano.0c05747
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