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洪-欧-曼德尔干涉中时空相关性的高速成像

High-speed imaging of spatiotemporal correlations in Hong-Ou-Mandel interference.

作者信息

Gao Xiaoqin, Zhang Yingwen, D'Errico Alessio, Heshami Khabat, Karimi Ebrahim

出版信息

Opt Express. 2022 May 23;30(11):19456-19464. doi: 10.1364/OE.456433.

Abstract

The Hong-Ou-Mandel interference effect lies at the heart of many emerging quantum technologies whose performance can be significantly enhanced with increasing numbers of entangled modes one could measure and thus utilize. Photon pairs generated through the process of spontaneous parametric down conversion are known to be entangled in a vast number of modes in the various degrees of freedom (DOF) the photons possess such as time, energy, and momentum, etc. Due to limitations in detection technology and techniques, often only one such DOFs can be effectively measured at a time, resulting in much lost potential. Here, we experimentally demonstrate, with the aid of a time tagging camera, high speed measurement and characterization of two-photon interference. With a data acquisition time of only a few seconds, we observe a bi-photon interference and coalescence visibility of ∼64% with potentially up to ∼2 × 10 spatial modes. These results open up a route for practical applications of using the high dimensionality of spatiotemporal DOF in two-photon interference, and in particular, for quantum sensing and communication.

摘要

洪-欧-曼德尔干涉效应是许多新兴量子技术的核心,随着可测量并因此可利用的纠缠模式数量的增加,这些技术的性能可得到显著提升。通过自发参量下转换过程产生的光子对在光子所具有的各种自由度(DOF)(如时间、能量和动量等)中的大量模式中是纠缠的。由于检测技术和方法的限制,通常一次只能有效地测量一个这样的自由度,从而导致大量潜在价值的损失。在此,我们借助时间标记相机,通过实验证明了对双光子干涉的高速测量和表征。在仅几秒的数据采集时间内,我们观察到双光子干涉和合并可见度约为64%,潜在空间模式多达约2×10个。这些结果为在双光子干涉中利用时空自由度的高维特性开辟了实际应用途径,特别是在量子传感和通信方面。

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