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Security of Binary Modulated Continuous Variable Quantum Key Distribution Using Optimally Displaced Threshold Detection

机译:使用最佳位移阈值检测的二进制调制的连续变量量子密钥分布的安全性

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摘要

Continuous variable quantum key distribution attracts increasing attention in recent years due to its potential high secret key rates and the compatibility with existing communication infrastructure. This letter derives the secret key rate for a binary modulated continuous variable quantum key distribution using an optimally displaced threshold detection and post-selection. To improve the secret key rate, we optimize the post selected area and the coherent amplitude for different transmission efficiency of the channel under different thermal noises. Both the individual and collective beamsplitter attacks are considered. Numerical results show that the secret key rate using the optimally displaced threshold detection can surpass that using the classical detection scheme under different transmission efficiencies and different thermal noises. Besides, more improvement on the secret key rate can be obtained when the transmission efficiency is low.
机译:由于其潜在的高秘密密钥率和与现有通信基础设施的兼容性,连续变量量子密钥分布近年来引起了越来越多的关注。使用最佳位移的阈值检测和选择后,这封信源于二进制调制的连续变量量子密钥分布的秘密密钥率。为了提高秘密密钥率,我们在不同的热噪声下优化所选择的区域和相干幅度,以在不同的热噪声下的不同传输效率。考虑个人和集体束撞击器攻击。数值结果表明,使用最佳移位阈值检测的秘密密钥率可以超越使用不同传输效率和不同热噪声的经典检测方案。此外,当传输效率低时,可以获得更好的秘密密钥率的改进。

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