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用量子单光子敏感器时间戳相机定量高维空间纠缠。

Quantifying high-dimensional spatial entanglement with a single-photon-sensitive time-stamping camera.

出版信息

Opt Lett. 2023 Jul 1;48(13):3439-3442. doi: 10.1364/OL.487182.

Abstract

High-dimensional entanglement is a promising resource for quantum technologies. Being able to certify it for any quantum state is essential. However, to date, experimental entanglement certification methods are imperfect and leave some loopholes open. Using a single-photon-sensitive time-stamping camera, we quantify high-dimensional spatial entanglement by collecting all output modes and without background subtraction, two critical steps on the route toward assumptions-free entanglement certification. We show position-momentum Einstein-Podolsky-Rosen (EPR) correlations and quantify the entanglement of formation of our source to be larger than 2.8 along both transverse spatial axes, indicating a dimension higher than 14. Our work overcomes important challenges in photonic entanglement quantification and paves the way toward the development of practical quantum information processing protocols based on high-dimensional entanglement.

摘要

高维纠缠是量子技术有前途的资源。能够对任何量子态进行认证都是至关重要的。然而,迄今为止,实验性的纠缠认证方法并不完美,仍然存在一些漏洞。我们使用单光子敏感的时间戳相机,通过收集所有输出模式并无需背景减除,实现了对高维空间纠缠的量化,这是实现无假设纠缠认证的两个关键步骤。我们展示了位置-动量爱因斯坦-波多尔斯基-罗森(EPR)关联,并对我们光源的形成纠缠进行了量化,结果表明在两个横向空间轴上都大于 2.8,表明其维度高于 14。我们的工作克服了光子纠缠量化中的重要挑战,为基于高维纠缠的实用量子信息处理协议的发展铺平了道路。

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