Full multipartite entanglement of frequency-comb Gaussian states

An analysis is conducted of the multipartite entanglement for Gaussian states generated by the parametric down-conversion of a femtosecond frequency comb. Using a recently introduced method for constructing optimal entanglement criteria, a family of tests is formulated for mode decompositions that e...

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Veröffentlicht in:Physical review letters 2015-02, Vol.114 (5), p.050501-050501, Article 050501
Hauptverfasser: Gerke, S, Sperling, J, Vogel, W, Cai, Y, Roslund, J, Treps, N, Fabre, C
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Sprache:eng
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Zusammenfassung:An analysis is conducted of the multipartite entanglement for Gaussian states generated by the parametric down-conversion of a femtosecond frequency comb. Using a recently introduced method for constructing optimal entanglement criteria, a family of tests is formulated for mode decompositions that extends beyond the traditional bipartition analyses. A numerical optimization over this family is performed to achieve maximal significance of entanglement verification. For experimentally prepared 4-, 6-, and 10-mode states, full entanglement is certified for all of the 14, 202, and 115 974 possible nontrivial partitions, respectively.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.114.050501