Publication | Open Access
Continuous-variable quantum computing in the quantum optical frequency comb
118
Citations
118
References
2019
Year
EngineeringCv Cluster StatesContinuous-variable QuantumError MitigationQuantum ComputingQuantum SimulationQuantum MaterialsQuantum ControlQuantum EntanglementQuantum MatterQuantum SciencePhotonicsPhysicsQuantum AlgorithmQuantum InformationQuantum SwitchesQuantum RoutersFrequency CombsQuantum TransducersQuantum CharacterizationTopical ReviewQuantum OpticQuantum TechnologyNatural SciencesApplied PhysicsQuantum DevicesFault-tolerant Quantum ComputingQuantum Hardware
Abstract This topical review introduces the theoretical and experimental advances in continuous-variable (CV)—i.e. qumode-based in lieu of qubit-based—large-scale, fault-tolerant quantum computing and quantum simulation. An introduction to the physics and mathematics of multipartite entangled CV cluster states is given, and their connection to experimental concepts is delineated. Paths toward fault tolerance are also presented. It is the hope of the author that this review attract more contributors to the field and promote its extension to the promising technology of integrated quantum photonics.
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