Publication | Open Access
Entanglement criteria based on local uncertainty relations are strictly stronger than the computable cross norm criterion
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Citations
37
References
2006
Year
Quantum ScienceQuantum SecurityEngineeringQuantum ComputingNonlinear Entanglement WitnessesLocal Uncertainty RelationsUncertainty QuantificationUncertainty PrincipleCross Norm CriterionSeparability CriterionComputer ScienceQuantum CommunicationQuantum EntanglementEntanglement CriteriaQuantum DecoherenceQuantum Error CorrectionMeasurement Problem
We show that any state that violates the computable cross norm (or realignment) criterion for separability also violates the separability criterion of the local uncertainty relations. The converse is not true. The local uncertainty relations provide a straightforward construction of nonlinear entanglement witnesses for the cross norm criterion.
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