Publication | Open Access
Variable length universal entanglement concentration by local operations and its application to teleportation and dense coding
16
Citations
5
References
2001
Year
EngineeringLocal OperationsQuantum ComputingDense CodingQuantum NetworkQuantum EntanglementUniversal Dense CodingQuantum ScienceQuantum CryptographyQuantum SecurityPhysicsQuantum Field TheoryBell StatesQuantum TeleportationNatural SciencesUniversal Entanglement ConcentrationQuantum CommunicationQuantum NetworkingQuantum Error Correction
Using invariance of the $n$-th tensored state w.r.t. the $n$-th symmetric group, we propose a 'variable length' universal entanglement concentration without classical communication. Like variable length data compression, arbitrary unknown states are concentrated into perfect Bell states and not approximate Bell states and the number of Bell states obtained is equal to the optimal rate asymptotically with the probability 1. One of the point of our scheme is that we need no classical communication at all. Using this method, we can construct a universal teleportation and a universal dense coding.
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