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      Noisy quantum teleportation: An experimental study on the influence of local environments

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          Abstract

          We report experimental results on the action of selected local environments on the fidelity of the quantum teleportation protocol, taking into account non-ideal, realistic entangled resources. Different working conditions are theoretically identified, where a noisy protocol can be made almost insensitive to further addition of noise. We put to test these conditions on a photonic implementation of the quantum teleportation algorithm, where two polarization entangled qubits act as the entangled resource and a path qubit on Alice encodes the state to be teleported. Bob's path qubit is used to implement a local environment, while the environment on Alice's qubit is simulated as a weighed average of different pure states. We obtain a good agreement with the theoretical predictions, we experimentally recreate the conditions to obtain a noise-induced enhancement of the protocol fidelity, and we identify parameter regions of increased insensibility to interactions with specific noisy environments.

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          Author and article information

          Journal
          21 October 2014
          Article
          10.1103/PhysRevA.90.042332
          1410.5771
          5512dfb5-8266-4427-8812-1efce68ca5dd

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

          History
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          Phys. Rev. A 90, 042332 (2014)
          9 pages, 7 figures, accepted for publication in Phys. Rev. A
          quant-ph

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