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      Entanglement Swapping of Two Arbitrarily Degraded Entangled States

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          Abstract

          We consider entanglement swapping, a key component of quantum network operations and entanglement distribution. Pure entangled states, which are the desired input to the swapping protocol, are typically mixed by environmental interactions causing a reduction in their degree of entanglement. Thus an understanding of entanglement swapping with partially mixed states is of importance. Here we present a general analytical solution for entanglement swapping of arbitrary two-qubit states. Our result provides a comprehensive method for analyzing entanglement swapping in quantum networks. First, we show that the concurrence of a partially mixed state is conserved when this state is swapped with a Bell state. Then, we find upper and lower bounds on the concurrence of the state resulting from entanglement swapping for various classes of input states. Finally, we determine a general relationship between the ranks of the initial states and the rank of the final state after swapping.

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          Author and article information

          Journal
          2015-12-18
          2016-07-25
          Article
          10.1103/PhysRevA.94.012336
          1512.06093
          6e194fde-e6d6-4dfe-a7c0-a4f996eb0683

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          Phys. Rev. A 94, 012336 (2016)
          quant-ph

          Quantum physics & Field theory
          Quantum physics & Field theory

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