Publication | Open Access
Localized States Emerging from Singular and Nonsingular Flat Bands in a Frustrated Fractal‐Like Photonic Lattice
22
Citations
47
References
2022
Year
Quantum PhotonicsEngineeringQuantum Lattice SystemSpin SystemsQuantum Spin IceTopological Quantum StateQuantum MaterialsQuantum MatterNanophotonicsQuantum SciencePhotonicsPhysicsPhotonic MaterialsTopological PhaseCondensed Matter TheoryNonsingular Flat BandsNatural SciencesAbstract SingularApplied PhysicsCondensed Matter PhysicsPhotonic StructuresSingle Photonic LatticeFlat Bands
Abstract Singular and nonsingular flat bands in a Sierpinski fractal‐like photonic lattice are reported. It is demonstrated that the lowest two bands, being isolated and degenerate due to geometrical frustration, are nonsingular and thus can be spanned by a complete set of compact localized states. These states are experimentally proven to propagate diffractionless in the photonic lattice. The results reveal the interplay between geometrical frustration, degenerate flat bands, and compact localized states in a single photonic lattice, and pave the way to photonic spin liquid ground states.
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