论文标题

在关键任务环境中铺平朝800 Gbps量子安全的光通道部署

Paving the Way towards 800 Gbps Quantum-Secured Optical Channel Deployment in Mission-Critical Environments

论文作者

Pistoia, Marco, Amer, Omar, Behera, Monik R., Dolphin, Joseph A., Dynes, James F., John, Benny, Haigh, Paul A., Kawakura, Yasushi, Kramer, David H., Lyon, Jeffrey, Moazzami, Navid, Movva, Tulasi D., Polychroniadou, Antigoni, Shetty, Suresh, Sysak, Greg, Toudeh-Fallah, Farzam, Upadhyay, Sudhir, Woodward, Robert I., Shields, Andrew J.

论文摘要

本文介绍了用于理解使用量子密钥分布(QKD)技术在关键地铁级操作环境中高容量量子固定光通道的实施方面进行的实验研究。据我们所知,这是第一次是800 Gbps量子固定的光通道 - 以及C波段上的其他几个密集的波长多路复用(DWDM)频道,并在O带上的QKD通道上与O-Band上的QKD通道进行了多路复用 - 在距离内建立了100 km的距离,以及与实践行业相关的秘密关键率。此外,在这些试验过程中,将在该既定渠道上运输区块链应用程序被用来证明,以确保在量子固定的光通道上确保过境中的金融交易。这项研究的发现铺平了在大容量,地铁规模,任务关键操作环境中(例如Data Center Center InterConnects)中部署QKD固定的光通道的道路。

This article describes experimental research studies conducted towards understanding the implementation aspects of high-capacity quantum-secured optical channels in mission-critical metro-scale operational environments using Quantum Key Distribution (QKD) technology. To the best of our knowledge, this is the first time that an 800 Gbps quantum-secured optical channel -- along with several other Dense Wavelength Division Multiplexed (DWDM) channels on the C-band and multiplexed with the QKD channel on the O-band -- was established at distances up to 100 km, with secret key-rates relevant for practical industry use cases. In addition, during the course of these trials, transporting a blockchain application over this established channel was utilized as a demonstration of securing a financial transaction in transit over a quantum-secured optical channel. The findings of this research pave the way towards the deployment of QKD-secured optical channels in high-capacity, metro-scale, mission-critical operational environments, such as Inter-Data Center Interconnects.

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