Useful multiparticle entanglement and sub-shot-noise sensitivity in experimental phase estimation

We experimentally demonstrate a general criterion to identify entangled states useful for the estimation of an unknown phase shift with a sensitivity higher than the shot-noise limit. We show how to exploit this entanglement on the examples of a maximum likelihood as well as of a Bayesian phase esti...

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Veröffentlicht in:Physical review letters 2011-08, Vol.107 (8), p.080504-080504
Hauptverfasser: Krischek, Roland, Schwemmer, Christian, Wieczorek, Witlef, Weinfurter, Harald, Hyllus, Philipp, Pezzé, Luca, Smerzi, Augusto
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Sprache:eng
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Zusammenfassung:We experimentally demonstrate a general criterion to identify entangled states useful for the estimation of an unknown phase shift with a sensitivity higher than the shot-noise limit. We show how to exploit this entanglement on the examples of a maximum likelihood as well as of a Bayesian phase estimation protocol. Using an entangled four-photon state we achieve a phase sensitivity clearly beyond the shot-noise limit. Our detailed comparison of methods and quantum states for entanglement enhanced metrology reveals the connection between multiparticle entanglement and sub-shot-noise uncertainty, both in a frequentist and in a Bayesian phase estimation setting.
ISSN:1079-7114
DOI:10.1103/PhysRevLett.107.080504