Publication | Open Access
Floquet engineering in superconducting circuits: From arbitrary spin-spin interactions to the Kitaev honeycomb model
45
Citations
38
References
2019
Year
Quantum LiquidSuperconducting MaterialEngineeringHoneycomb ModelTopological Quantum StateSpin PhenomenonMagnetismQuantum ComputingSuperconductivitySuperconducting DevicesQuantum ScienceKitaev Honeycomb ModelPhysicsSpin LatticesQuantum MagnetismSpintronicsFloquet EngineeringNatural SciencesCondensed Matter PhysicsApplied PhysicsArbitrary Spin-spin InteractionsQuantum SuperconductivityPeriodic Time Modulation
We derive a theory for the generation of arbitrary spin-spin interactions in superconducting circuits via periodic time modulation of the individual qubits or the qubit-qubit interactions. The modulation frequencies in our approach are in the microwave or radio-frequency regime, so the required fields can be generated with standard generators. Among others, our approach is suitable for generating spin lattices that exhibit quantum spin liquid behavior such as Kitaev's honeycomb model.
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