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通过矢量时间反转实现高保真空间模式在1公里长多模光纤中的传输。

High-fidelity spatial mode transmission through a 1-km-long multimode fiber via vectorial time reversal.

作者信息

Zhou Yiyu, Braverman Boris, Fyffe Alexander, Zhang Runzhou, Zhao Jiapeng, Willner Alan E, Shi Zhimin, Boyd Robert W

机构信息

The Institute of Optics, University of Rochester, Rochester, NY, USA.

Department of Physics, University of Ottawa, Ottawa, ON, Canada.

出版信息

Nat Commun. 2021 Mar 25;12(1):1866. doi: 10.1038/s41467-021-22071-w.

Abstract

The large number of spatial modes supported by standard multimode fibers is a promising platform for boosting the channel capacity of quantum and classical communications by orders of magnitude. However, the practical use of long multimode fibers is severely hampered by modal crosstalk and polarization mixing. To overcome these challenges, we develop and experimentally demonstrate a vectorial time reversal technique, which is accomplished by digitally pre-shaping the wavefront and polarization of the forward-propagating signal beam to be the phase conjugate of an auxiliary, backward-propagating probe beam. Here, we report an average modal fidelity above 80% for 210 Laguerre-Gauss and Hermite-Gauss modes by using vectorial time reversal over an unstabilized 1-km-long fiber. We also propose a practical and scalable spatial-mode-multiplexed quantum communication protocol over long multimode fibers to illustrate potential applications that can be enabled by our technique.

摘要

标准多模光纤所支持的大量空间模式是一个很有前景的平台,有望将量子和经典通信的信道容量提高几个数量级。然而,长多模光纤的实际应用受到模式串扰和偏振混合的严重阻碍。为了克服这些挑战,我们开发并通过实验证明了一种矢量时间反转技术,该技术通过对正向传播信号光束的波前和偏振进行数字预整形,使其成为辅助反向传播探测光束的相位共轭来实现。在此,我们报告了通过在未稳定的1公里长光纤上使用矢量时间反转,210个拉盖尔 - 高斯模式和厄米 - 高斯模式的平均模式保真度超过80%。我们还提出了一种实用且可扩展的长多模光纤空间模式复用量子通信协议,以说明我们的技术能够实现的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db49/7994418/582edeb79a0a/41467_2021_22071_Fig1_HTML.jpg

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