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精确检测任意光子统计。

Accurate Detection of Arbitrary Photon Statistics.

机构信息

Department of Optics, Palacký University, 17. listopadu 12, 77146 Olomouc, Czechia.

出版信息

Phys Rev Lett. 2019 Oct 11;123(15):153604. doi: 10.1103/PhysRevLett.123.153604.

Abstract

We report a measurement workflow free of systematic errors consisting of a reconfigurable photon-number-resolving detector, custom electronic circuitry, and faithful data-processing algorithm. We achieve an unprecedented accurate measurement of various photon-number distributions going beyond the number of detection channels with an average fidelity of 0.998, where the error is primarily caused by the sources themselves. Mean numbers of photons cover values up to 20 and faithful autocorrelation measurements range from g^{(2)}=6×10^{-3} to 2. We successfully detect chaotic, classical, nonclassical, non-Gaussian, and negative-Wigner-function light. Our results open new paths for optical technologies by providing full access to the photon-number information without the necessity of detector tomography.

摘要

我们报告了一种无系统误差的测量工作流程,该流程由可重构的光子数分辨探测器、定制的电子电路和精确的数据处理算法组成。我们实现了各种光子数分布的空前精确测量,超越了检测通道的数量,平均保真度为 0.998,其中误差主要是由光源本身引起的。平均光子数覆盖值高达 20,精确的自相关测量范围从 g^{(2)}=6×10^{-3}到 2。我们成功地探测到了混沌、经典、非经典、非高斯和负维格纳函数的光。我们的结果通过提供对光子数信息的全面访问,而无需探测器层析成像,为光学技术开辟了新的道路。

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