Publication | Closed Access
Accurate and Robust Unitary Transformations of a High-Dimensional Quantum System
95
Citations
30
References
2015
Year
Quantum ScienceEngineeringQuantum ComputingPhysicsQuantum Optimization AlgorithmNatural SciencesQuantum FeedbackQuantum AlgorithmQuantum InformationQuantum ProtocolsUnitary MapsOptimal Control TheoryQuantum DevicesQuantum SystemQuantum Entanglement16-Dimensional Hilbert SpaceRobust Unitary TransformationsQuantum Error Correction
Unitary transformations are the most general input-output maps available in closed quantum systems. Good control protocols have been developed for qubits, but questions remain about the use of optimal control theory to design unitary maps in high-dimensional Hilbert spaces, and about the feasibility of their robust implementation in the laboratory. Here we design and implement unitary maps in a 16-dimensional Hilbert space associated with the 6S(1/2) ground state of (133)Cs, achieving fidelities >0.98 with built-in robustness to static and dynamic perturbations. Our work has relevance for quantum information processing and provides a template for similar advances on other physical platforms.
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