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- W3202616811 abstract "We consider a metasurface consisting of a square lattice of cylindrical antidots in a two-dimensional topological insulator (2DTI). Each antidot supports a degenerate Kramer's pair of eigenstates formed by the helical topological edge states. We show that the on-site Coulomb repulsion leads to the onset of the Mott insulator phase in the system in a certain range of experimentally relevant parameters. Intrinsic strong spin-orbit coupling characteristic for the 2DTI supports a rich class of the emerging low-energy spin Hamiltonians that can be emulated in the considered system, which makes it an appealing solid-state platform for quantum simulations of strongly correlated electron systems." @default.
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- W3202616811 date "2021-10-07" @default.
- W3202616811 modified "2023-09-24" @default.
- W3202616811 title "Quantum spin compass models in two-dimensional electronic topological metasurfaces" @default.
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- W3202616811 doi "https://doi.org/10.1103/physrevresearch.3.043016" @default.
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