Publication | Open Access
Implementation of Universal Quantum Gates Based on Nonadiabatic Geometric Phases
359
Citations
13
References
2002
Year
Quantum ScienceSpintronicsEngineeringQuantum ComputingPhysicsNatural SciencesQuantum DeviceApplied PhysicsQuantum AlgorithmQuantum SwitchesQuantum DevicesQuantum EntanglementCyclic Geometric PhaseUniversal Quantum GatesFeasible Scheme
We propose an experimentally feasible scheme to achieve quantum computation based on nonadiabatic geometric phase shifts, in which a cyclic geometric phase is used to realize a set of universal quantum gates. Physical implementation of this set of gates is designed for Josephson junctions and for NMR systems. Interestingly, we find that the nonadiabatic phase shift may be independent of the operation time under appropriate controllable conditions. A remarkable feature of the present nonadiabatic geometric gates is that there is no intrinsic limitation on the operation time.
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