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Long-Distance Continuous-Variable Quantum Key Distribution with Advanced Reconciliation of a Gaussian Modulation

机译:具有高斯调制的高级和解的远距离连续变量量子密钥分配

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The two-way continuous-variable quantum key distribution (CVQKD) systems allow higher key rates and improved transmission distances over standard telecommunication networks in comparison to the one-way CVQKD protocols. To exploit the real potential of two-way CVQKD systems a robust reconciliation technique is needed. It is currently unavailable, which makes it impossible to reach the real performance of a two-way CVQKD system. The reconciliation process of correlated Gaussian variables is a complex problem that requires either tomography in the physical layer that is intractable in a practical scenario, or high-cost calculations in the multidimensional spherical space with strict dimensional limitations. To avoid these issues, we propose an efficient logical layer-based reconciliation method for two-way CVQKD to extract binary information from correlated Gaussian variables. We demonstrate that by operating on the raw-data level, the noise of the quantum channel can be corrected in the scalar space and the reconciliation can be extended to arbitrary high dimensions. We prove that the error probability of scalar reconciliation is zero in any practical CVQKD scenario, and provides unconditional security. The results allow to significantly improve the currently available key rates and transmission distances of two-way CVQKD. The proposed scalar reconciliation can also be applied in oneway systems as well, to replace the existing reconciliation schemes.
机译:与单向CVQKD协议相比,双向连续可变量子密钥分发(CVQKD)系统在标准电信网络上允许更高的密钥速率和改进的传输距离。为了开发双向CVQKD系统的真正潜力,需要一种强大的对帐技术。它当前不可用,这使得无法实现双向CVQKD系统的实际性能。相关高斯变量的对帐过程是一个复杂的问题,需要在实际情况下难以在物理层中进行层析成像,或者在具有严格尺寸限制的多维球形空间中进行高成本的计算。为了避免这些问题,我们提出了一种有效的基于逻辑层的双向CVQKD协调方法,以从相关的高斯变量中提取二进制信息。我们证明,通过在原始数据级别上进行操作,可以在标量空间中校正量子通道的噪声,并且可以将对帐扩展到任意高维度。我们证明,在任何实际的CVQKD方案中,标量对帐的错误概率均为零,并提供了无条件的安全性。结果允许显着改善当前可用的双向CVQKD的密钥率和传输距离。提议的标量对帐也可以应用在单向系统中,以代替现有的对帐方案。

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