用参量光子探测器观察相干微波场的泊松分布

Jiaming Wang;Kirill Petrovnin;Pertti J. Hakonen;Gheorghe Sorin Paraoanu
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引用次数: 0

摘要

单光子探测器对于实现光学量子技术(如量子密钥分发)和增强光学成像系统(如激光雷达)至关重要,同时在研究光的统计特性方面也起着至关重要的作用。在这项工作中,我们展示了如何通过使用阈值检测器来揭示潜在的光子统计,该检测器实现为工作在一阶相变附近的约瑟夫森参数放大器。我们描述了检测协议,它利用一系列的泵浦脉冲,然后观察激活的开关事件。利用两次二项试验对所获得的数据进行了分析,并将结果与考虑微波场光子统计的理论模型进行了比较,并通过计算机模拟提供了额外的验证。我们表明,这些测试为相干态下的泊松统计提供了确凿的证据,与实验数据一致。此外,该方法使我们能够区分不同的传入探针场的统计。我们的方法广泛适用于标准的非光子数分辨探测器,为量子微波和光学系统中的光子统计特性提供了一条实用的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observing the Poisson Distribution of a Coherent Microwave Field With a Parametric Photon Detector
Single-photon detectors are essential for implementing optical quantum technologies, such as quantum key distribution, and for enhancing optical imaging systems such as lidar, while also playing a crucial role in studying the statistical properties of light. In this work, we show how the underlying photon statistics can be revealed by using a threshold detector, implemented as a Josephson parametric amplifier operating near a first-order phase transition. We describe the detection protocol, which utilizes a series of pumping pulses followed by the observation of activated switching events. The acquired data are analyzed using two binomial tests, and the results are compared to a theoretical model that takes into account the photon statistics of the microwave field, with additional validation provided by computer simulations. We show that these tests provide conclusive evidence for the Poissonian statistics in the case of a coherent state, in agreement with the experimental data. In addition, this method enables us to distinguish between different statistics of the incoming probe field. Our approach is broadly applicable to standard non-photon-number-resolving detectors, offering a practical pathway to characterize photon statistics in quantum microwave and optical systems.
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