论文标题
使用光谱分辨的贝叶斯量子过程扫描仪共存的量子通道表征
Coexistent quantum channel characterization using spectrally resolved Bayesian quantum process tomography
论文作者
论文摘要
量子和经典信号在相同的光纤上的共存,而传输量子信息的最小降解对于在现有通信基础架构上运行大规模量子网络至关重要。在这里,我们系统地表征了量子通道,该量子通道同时通过通过高达15 km的光纤通道分发了近似的单光子极化量子和不同强度的经典光。使用我们开发的贝叶斯重建方法的光谱分辨量子层析成像,我们从具有和没有经典背景的实验光子计数数据中估算了完整的量子通道。此外,尽管我们发现确切的通道描述是泵极化的弱功能,但我们表明,当噪声以拉曼散射为主时,基于纤维的量子通道具有高过程保真度,理想的去极化通道。这些结果为量子中继器设计的未来开发和量子错误纠正了现实世界渠道以及用于量子网络分析和模拟的信息模型提供了基础。
The coexistence of quantum and classical signals over the same optical fiber with minimal degradation of the transmitted quantum information is critical for operating large-scale quantum networks over the existing communications infrastructure. Here, we systematically characterize the quantum channel that results from simultaneously distributing approximate single-photon polarization-encoded qubits and classical light of varying intensities through fiber-optic channels of up to 15~km. Using spectrally resolved quantum process tomography with a Bayesian reconstruction method we developed, we estimate the full quantum channel from experimental photon counting data, both with and without classical background. Furthermore, although we find the exact channel description to be a weak function of the pump polarization, we nevertheless show that the coexistent fiber-based quantum channel has high process fidelity with an ideal depolarizing channel when the noise is dominated by Raman scattering. These results provide a basis for the future development of quantum repeater designs and quantum error correcting codes for real-world channels and inform models used in the analysis and simulation of quantum networks.