Expected number of quantum channels in quantum networks

Quantum communication between nodes in quantum networks plays an important role in quantum information processing. Here, we proposed the use of the expected number of quantum channels as a measure of the efficiency of quantum communication for quantum networks. This measure quantified the amount of...

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Bibliographic Details
Published inScientific reports Vol. 5; no. 1; p. 12128
Main Authors Chen, Xi, Wang, He-Ming, Ji, Dan-Tong, Mu, Liang-Zhu, Fan, Heng
Format Journal Article
LanguageEnglish
Published England Nature Publishing Group 15.07.2015
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Summary:Quantum communication between nodes in quantum networks plays an important role in quantum information processing. Here, we proposed the use of the expected number of quantum channels as a measure of the efficiency of quantum communication for quantum networks. This measure quantified the amount of quantum information that can be teleported between nodes in a quantum network, which differs from classical case in that the quantum channels will be consumed if teleportation is performed. We further demonstrated that the expected number of quantum channels represents local correlations depicted by effective circles. Significantly, capacity of quantum communication of quantum networks quantified by ENQC is independent of distance for the communicating nodes, if the effective circles of communication nodes are not overlapped. The expected number of quantum channels can be enhanced through transformations of the lattice configurations of quantum networks via entanglement swapping. Our results can shed lights on the study of quantum communication in quantum networks.
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ISSN:2045-2322
2045-2322
DOI:10.1038/srep12128