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.

Ancilla-Assisted Calibration of a Measuring Apparatus / G., B., L., C., I. P., D., M., G., A., M., Mingolla, M.G., M. G. A., P., F., P., S. V., P.. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - ELETTRONICO. - 108:(2012), pp. 253601-1-253601-5. [10.1103/PhysRevLett.108.253601]

Ancilla-Assisted Calibration of a Measuring Apparatus

MINGOLLA, MARIA GRISELDA;
2012

Abstract

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.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2521514
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