Publication | Open Access
Approaching Unit Visibility for Control of a Superconducting Qubit with Dispersive Readout
573
Citations
23
References
2005
Year
EngineeringCavity QedQuantum MeasurementQuantum SensingSuperconducting QubitQuantum ComputingSuperconductivityQuantum EntanglementQubit Coherence TimeQuantum SciencePhotonicsRabi Oscillation ExperimentPhysicsQuantum InformationDispersive ReadoutQuantum DecoherenceQuantum TechnologyTransmission Line ResonatorNatural SciencesApplied PhysicsQuantum DevicesUnit VisibilityQuantum Hardware
In a Rabi oscillation experiment with a superconducting qubit we show that a visibility in the qubit excited state population of more than 95% can be attained. We perform a dispersive measurement of the qubit state by coupling the qubit non-resonantly to a transmission line resonator and probing the resonator transmission spectrum. The measurement process is well characterized and quantitatively understood. In a measurement of Ramsey fringes, the qubit coherence time is larger than 500 ns.
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