Publication | Closed Access
One-step generation of continuous-variable quadripartite cluster states in a circuit QED system
12
Citations
69
References
2017
Year
EngineeringOne-step GenerationQuantum EngineeringQuantum ComputingQuantum Optimization AlgorithmSuperconductivityQuantum SimulationCircuit Qed SetupQuantum EntanglementSuperconducting DevicesQuantum ScienceElectrical EngineeringPhysicsQuantum DeviceQuantum AlgorithmDesired Qubit-resonatorResonator-resonator InteractionsNatural SciencesApplied PhysicsCircuit Qed System
We propose a dissipative scheme for one-step generation of continuous-variable quadripartite cluster states in a circuit QED setup consisting of four superconducting coplanar waveguide resonators and a gap-tunable superconducting flux qubit. With external driving fields to adjust the desired qubit-resonator and resonator-resonator interactions, we show that continuous-variable quadripartite cluster states of the four resonators can be generated with the assistance of energy relaxation of the qubit. By comparison with the previous proposals, the distinct advantage of our scheme is that only one step of quantum operation is needed to realize the quantum state engineering. This makes our scheme simpler and more feasible in experiment. Our result may have useful application for implementing quantum computation in solid-state circuit QED systems.
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