Publication | Open Access
Entanglement Cost of Implementing Controlled-Unitary Operations
31
Citations
11
References
2011
Year
Classical CommunicationQuantum ScienceLocal OperationsQuantum SecurityMinimum Entanglement CostQuantum ComputingEngineeringQuantum ProtocolsQuantum SwitchesQuantum NetworkQuantum CommunicationComputer ScienceQuantum EntanglementQuantum NetworkingEntanglement CostQuantum Error Correction
We investigate the minimum entanglement cost of the deterministic implementation of two-qubit controlled-unitary operations using local operations and classical communication (LOCC). We show that any such operation can be implemented by a three-turn LOCC protocol, which requires at least 1 ebit of entanglement when the resource is given by a bipartite entangled state with Schmidt number 2. Our result implies that there is a gap between the minimum entanglement cost and the entangling power of controlled-unitary operations. This gap arises due to the requirement of implementing the operations while oblivious to the identity of the inputs.
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