Publication | Open Access
Hubbard model for spin-1 Haldane chains
16
Citations
48
References
2022
Year
Quantum Lattice SystemEngineeringMany-body Quantum PhysicSpin SystemsTopological Quantum StateHalf FillingQuantum ComputingQuantum MaterialsMagnetic Topological InsulatorQuantum MatterQuantum SciencePhysicsTopological PhaseSpintronicsNatural SciencesTopological InsulatorApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemHubbard ModelHaldane Phase
The Haldane phase for antiferromagnetic spin-1 chains is a celebrated topological state of matter, featuring gapped excitations and fractional spin-1/2 edge states. Here, we provide numerical evidence that this phase can be realized with a Hubbard model at half filling, where each $s=1$ spin is stored in a four-site fermionic structure. We find that the noninteracting limit of our proposed model describes a one-dimensional topological insulator, and we conjecture it to be adiabatically connected to the Haldane phase. Our work suggests a route to build spin-1 networks using Hubbard model quantum simulators.
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