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应用于超导多光子纳米探测器的改进型探测器断层扫描技术。

Modified detector tomography technique applied to a superconducting multiphoton nanodetector.

作者信息

Renema J J, Frucci G, Zhou Z, Mattioli F, Gaggero A, Leoni R, de Dood M J A, Fiore A, van Exter M P

机构信息

Leiden University, Niels Bohrweg 2, 2333 CA Leiden, The Netherlands.

出版信息

Opt Express. 2012 Jan 30;20(3):2806-13. doi: 10.1364/OE.20.002806.

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.

摘要

我们提出了一种实验方法,用于表征具有低整体探测效率的多光子探测器。我们通过将多光子探测事件的非线性作用与探测器中的线性损耗分离来实现这一点。这种表征对于使用单光子和多光子探测器的量子信息协议来说是必要步骤,并且可以提供定量信息以理解给定探测器的基础物理原理。这种表征方法应用于一种超导多光子纳米探测器,该探测器由具有蝴蝶结形亚波长收缩结构的氮化铌纳米线组成。根据偏置电流的不同,该探测器具有单光子和多光子灵敏度的工作模式。我们展示了这种探测器的首次完整实验表征。

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