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纳米光子芯片上的超宽带纠缠光子

Ultrabroadband Entangled Photons on a Nanophotonic Chip.

作者信息

Javid Usman A, Ling Jingwei, Staffa Jeremy, Li Mingxiao, He Yang, Lin Qiang

机构信息

Institute of Optics, University of Rochester, Rochester, New York 14627, USA.

Department of Electrical and Computer Engineering, University of Rochester, Rochester, New York 14627, USA.

出版信息

Phys Rev Lett. 2021 Oct 29;127(18):183601. doi: 10.1103/PhysRevLett.127.183601.

Abstract

The development of quantum technologies on nanophotonic platforms has seen momentous progress in the past decade. Despite that, a demonstration of time-frequency entanglement over a broad spectral width is still lacking. Here we present an efficient source of ultrabroadband entangled photon pairs on a periodically poled lithium niobate nanophotonic waveguide. Employing dispersion engineering, we demonstrate a record-high 100 THz (1.2  μm-2  μm) generation bandwidth with a high efficiency of 13  GHz/mW and excellent noise performance with the coincidence-to-accidental ratio exceeding 10^{5}. We also measure strong time-frequency entanglement with over 98% two-photon interference visibility.

摘要

在过去十年中,纳米光子平台上量子技术的发展取得了重大进展。尽管如此,仍缺乏在宽光谱宽度上的时频纠缠演示。在此,我们展示了一种基于周期性极化铌酸锂纳米光子波导的高效超宽带纠缠光子对源。通过色散工程,我们展示了创纪录的100太赫兹(1.2微米至2微米)产生带宽,效率高达13吉赫兹/毫瓦,具有出色的噪声性能,符合率与偶然率之比超过10^5。我们还测量到了具有超过98%双光子干涉可见度的强时频纠缠。

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