Publication | Open Access
Practical Scheme for Quantum Computation with Any Two-Qubit Entangling Gate
282
Citations
15
References
2002
Year
Quantum ScienceQuantum LogicEngineeringQuantum ComputingPhysicsPractical SchemeTwo-qubit GatesNatural SciencesQuantum Optimization AlgorithmQuantum AlgorithmQuantum InformationComputer ScienceQuantum EntanglementWhich GatesQuantum Error CorrectionQuantum AlgorithmsArbitrary One-qubit Gates
Which gates are universal for quantum computation? Although it is well known that certain gates on two-level quantum systems (qubits), such as the controlled-not, are universal when assisted by arbitrary one-qubit gates, it has only recently become clear precisely what class of two-qubit gates is universal in this sense. We present an elementary proof that any entangling two-qubit gate is universal for quantum computation, when assisted by one-qubit gates. A proof of this result for systems of arbitrary finite dimension has been provided by Brylinski and Brylinski; however, their proof relies on a long argument using advanced mathematics. In contrast, our proof provides a simple constructive procedure which is close to optimal and experimentally practical.
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