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Quantum hacking of free-space continuous-variable quantum key distribution by using a machine-learning technique

机译:通过使用机器学习技术,量子黑客自由空间连续变量量子密钥分布

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摘要

The transmission coefficient of the free-space channel is fluctuating due to the occurrence of random fluctuations of the refractive index and noise. The Gaussian-modulated quantum states of light may degrade into a non-Gaussian mixture at a certain probability after being transmitted through the free-space channel. In such a situation, Eve can apply an entanglement-distillation attack to steal secret information without it being revealed if Alice and Bob regard the practical fluctuation losses as constant. However, the entanglement-distillation attack is available only when the transmitting states are a non-Gaussian mixture; otherwise, Eve will expose herself. Exploiting this loophole and considering the limitations of the attack, we enhance Eve's eavesdropping ability by integrating a machine-learning technique with the entanglement-distillation attack. With the help of convolutional neural network (CNN, one of the most popular machine leaning tools), Eve can choose the best opportunity to launch the entanglement-distillation attack. Therefore, Eve has a chance to bias the estimation of the parameters by improving the entanglement resource of the mixed states, which allows Eve to render the final keys shared between the legitimate parties insecure. Our proposed CNN-based entanglement-distillation attack does not require additional resources and can be implemented using simple means based on the present technologies.
机译:自由空间通道的透射系数由于折射率和噪声的随机波动的发生而波动。在通过自由空间通道透过之后,高斯调制的光的光可能降低到非高斯混合物中。在这种情况下,夏娃可以应用纠缠蒸馏攻击,以窃取秘密信息,如果Alice和Bob将实际波动损失视为恒定,则透露。然而,仅当透射状态是非高斯混合物时,才能使用缠结蒸馏攻击;否则,夏娃将暴露自己。利用这种漏洞并考虑到攻击的局限性,我们通过将机器学习技术与纠缠蒸馏攻击集成来提高夏娃的窃听能力。借助卷积神经网络(CNN,最受欢迎的机器倾斜工具之一),EVE可以选择推出纠缠蒸馏攻击的最佳机会。因此,eve通过改进混合状态的缠结资源,eve有机会偏向参数的估计,这允许夏日夜前夕呈现合法方面不安全的最终密钥。我们提出的基于CNN的纠缠蒸馏攻击不需要额外的资源,并且可以根据本技术使用简单的手段来实现。

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