Publication | Open Access
Realization of Universal Ion-Trap Quantum Computation with Decoherence-Free Qubits
99
Citations
28
References
2009
Year
Quantum ScienceUniversal SetEngineeringQuantum ComputingPhysicsQuantum GatesNatural SciencesResidual CouplingQuantum InformationComputer EngineeringQuantum AlgorithmQuantum EntanglementQuantum Error CorrectionDecoherence-free QubitsQuantum AlgorithmsQuantum Decoherence
Any residual coupling of a quantum computer to the environment results in computational errors. Encoding quantum information in a so-called decoherence-free subspace provides means to avoid these errors. Despite tremendous progress in employing this technique to extend memory storage times by orders of magnitude, computation within such subspaces has been scarce. Here, we demonstrate the realization of a universal set of quantum gates acting on decoherence-free ion qubits. We combine these gates to realize the first controlled-NOT gate towards a decoherence-free, scalable quantum computer.
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