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Opt Express ; 20(3): 2806-13, 2012 Jan 30.
Article in English | MEDLINE | ID: mdl-22330516

ABSTRACT

We present an experimental method to characterize multi-photon detectors with a small overall detection efficiency. We do this by separating the nonlinear action of the multiphoton detection event from linear losses in the detector. Such a characterization is a necessary step for quantum information protocols with single and multiphoton detectors and can provide quantitative information to understand the underlying physics of a given detector. This characterization is applied to a superconducting multiphoton nanodetector, consisting of an NbN nanowire with a bowtie-shaped subwavelength constriction. Depending on the bias current, this detector has regimes with single and multiphoton sensitivity. We present the first full experimental characterization of such a detector.


Subject(s)
Conductometry/instrumentation , Nanotechnology/instrumentation , Niobium/chemistry , Photometry/instrumentation , Tomography/instrumentation , Transducers , Electric Conductivity , Equipment Design , Equipment Failure Analysis , Light , Niobium/radiation effects , Photons
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