Ancilla-assisted calibration of a measuring apparatus

A quantum measurement can be described by a set of matrices, one for each possible outcome, which represents the positive operator-valued measure (POVM) of the sensor. Efficient protocols of POVM extraction for arbitrary sensors are required. We present the first experimental POVM reconstruction tha...

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Veröffentlicht in:Physical review letters 2012-06, Vol.108 (25), p.253601-253601, Article 253601
Hauptverfasser: Brida, G, Ciavarella, L, Degiovanni, I P, Genovese, M, Migdall, A, Mingolla, M G, Paris, M G A, Piacentini, F, Polyakov, S V
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Sprache:eng
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Zusammenfassung:A quantum measurement can be described by a set of matrices, one for each possible outcome, which represents the positive operator-valued measure (POVM) of the sensor. Efficient protocols of POVM extraction for arbitrary sensors are required. We present the first experimental POVM reconstruction that takes explicit advantage of a quantum resource, i.e., nonclassical correlations with an ancillary state. A POVM of a photon-number-resolving detector is reconstructed by using strong quantum correlations of twin beams generated by parametric down-conversion. Our reconstruction method is more statistically robust than POVM reconstruction methods that use classical input states.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.108.253601