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 based on Quantum Key Distribution (QKD) technology. The test bed for this research study was carefully designed to mimic such environments. 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 secure-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. In a real-world operational environment, deployment of such high-capacity quantum-secured optical channels multiplexed with the quantum channel will inevitably introduce challenges due to their strict requirements, such as high launch powers and polarization fluctuations. Therefore, in the course of this research, experimental studies were conducted on the impact on the system performance--and specifically on the quantum channel--of several degradation factors present in real-world operational environments, including inter-channel interference (due to Raman scattering and nonlinear effects), attenuation, polarization fluctuations and distance dependency. 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.
翻译:本文介绍了根据量子键分布技术(QKD),为了解高容量量子安全光学频道在特派团关键地段作业环境中基于量子键分布(QKD)技术建立的高容量量安全光学频道的执行情况而进行的实验性研究。该研究的试验床是精心设计的,以模拟这种环境。据我们所知,这是首次在C波段和多路路与QKD频道连接的高容量量安全光学频道上安装800Gbps量安全光学频道(DWDM)的实验性研究。在现实世界的环境下,与量子频道连接的高容量量安全光学频道(DWDM)的部署将不可避免地带来挑战,因为O波段位于距离100公里的O波段和与实际工业使用案件相关的安全基率。此外,在这些试验过程中,将一个块链应用到这个固定通道,作为保证通过量子安全光谱光电频道过境进行金融交易的证明。 在一个现实世界的操作环境中,将这种高容量量级量级的量安全光学频道与量频道的部署不可避免地带来挑战,例如高发射能力强力和极分极分化的轨道的轨道,在实际的轨道的轨道上,在正常的轨道上,在实际的轨道上, 的轨道上进行着的轨道上,在这种实验环境上对实际的轨道上进行着级变变变,这种实验性变,在实际的轨道上对实际的轨道上进行着变,对实际的实验性环境的影响,包括: