Publication | Open Access
Proposal for Quantum Gates in Permanently Coupled Antiferromagnetic Spin Rings without Need of Local Fields
122
Citations
17
References
2005
Year
Selective ExcitationEngineeringMagnetic ResonanceLocal FieldsTopological Quantum StateSpin DynamicSpin PhenomenonQuantum ComputingQuantum SimulationQuantum EntanglementTwo-qubit GatesQuantum SciencePhysicsQuantum GatesQuantum AlgorithmQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsQuantum DevicesQuantum Hardware
We propose a scheme for the implementation of quantum gates which is based on the qubit encoding in antiferromagnetic molecular rings. We show that a proper engineering of the intercluster link would result in an effective coupling that vanishes as far as the system is kept in the computational space, while it is turned on by a selective excitation of specific auxiliary states. These are also shown to allow the performing of single-qubit and two-qubit gates without an individual addressing of the rings by means of local magnetic fields.
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