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Continuous-variable quantum cryptography using two-way quantum communication

机译:使用双向量子通信的连续变量量子密码学

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摘要

Quantum cryptography has recently been extended to continuous-variable systems, such as the bosonic modes of the electromagnetic field possessing continuous degrees of freedom. In particular, several cryptographic protocols have been proposed and experimentally implemented using bosonic modes with Gaussian statistics. These protocols have shown the possibility of reaching very high secret key rates, even in the presence of strong losses in the quantum communication channel. Despite this robustness to loss, their security can be affected by more general attacks where extra Gaussian noise is introduced by the eavesdropper. Here, we show a 'hardware solution' for enhancing the security thresholds of these protocols. This is possible by extending themto two-way quantum communication where subsequent uses of the quantum channel are suitably combined. In the resulting two-way schemes, one of the honest parties assists the secret encoding of the other, with the chance of a non-trivial superadditive enhancement of the security thresholds. These results should enable the extension of quantum cryptography to more complex quantum communications.
机译:量子密码术最近已扩展到连续可变系统,例如具有连续自由度的电磁场的玻色模式。特别地,已经提出了几种密码协议,并使用具有高斯统计的玻色模式来实验性地实现。这些协议已经显示出即使在量子通信信道中存在很大损失的情况下也可以达到很高的秘密密钥率的可能性。尽管具有强大的丢失保护能力,但其安全性仍可能受到窃听者引入额外的高斯噪声的更一般的攻击的影响。在这里,我们展示了一种“硬件解决方案”,用于增强这些协议的安全阈值。通过将它们扩展为双向量子通信是可行的,在这种通信中,量子信道的后续用途已得到适当组合。在由此产生的双向方案中,诚实方之一协助另一方的秘密编码,并有可能对安全性阈值进行非平凡的超加性增强。这些结果应该能够将量子密码学扩展到更复杂的量子通信。

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