论文标题

使用经典的仿真框架对弱晶的CV-QKD系统进行建模

Modelling Weak-Coherent CV-QKD Systems Using a Classical Simulation Framework

论文作者

Kreinberg, Sören, Koltchanov, Igor, Novik, Piotr, Alreesh, Saleem, Laudenbach, Fabian, Pacher, Christoph, Hübel, Hannes, Richter, André

论文摘要

由于它们与现有电信技术的兼容性,连续变量(CV)弱连贯的状态协议是有希望的候选者,可以广泛部署量子密钥分布(QKD)技术。我们演示了如何将用于建模经典光学系统建模的现有仿真框架用于模拟CV-QKD链接的模拟。相干信号的测量特性的量子不确定性是通过射击噪声在电域中建模的,而光学域中的相干信号则由其正交组件描述。我们模拟了各种降解效应,例如衰减,激光RIN,拉曼噪声(来自同一光纤中的经典通道)和设备缺陷,并将结果与​​分析理论进行比较。通过后处理层(核对和隐私放大)补充了物理模拟层,我们能够从模拟中估算安全的关键速率,从而大大提高了实际CV-QKD方案和实现的开发速度。

Due to their compatibility to existing telecom technology, continuous variable (CV) weak coherent state protocols are promising candidates for a broad deployment of quantum key distribution (QKD) technology. We demonstrate how an existing simulation framework for modelling classical optical systems can be utilized for simulations of weak-coherent CV-QKD links. The quantum uncertainties for the measured characteristics of coherent signals are modelled in the electrical domain by shot noise, while a coherent signal in the optical domain is described by its quadrature components. We simulate various degradation effects such as attenuation, laser RIN, Raman noise (from classical channels in the same fibre), and device imperfections and compare the outcome with analytical theory. Having complemented the physical simulation layer by the post-processing layer (reconciliation and privacy amplification), we are able to estimate secure key rates from simulations, greatly boosting the development speed of practical CV-QKD schemes and implementations.

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