论文标题

调制无泄漏的连续可变量子密钥分布

Modulation leakage-free continuous-variable quantum key distribution

论文作者

Hajomer, Adnan A. E., Jain, Nitin, Mani, Hossein, Chin, Hou-Man, Andersen, Ulirk L., Gehrin, Tobias

论文摘要

以提供信息理论安全性的方式在公共渠道上分发加密密钥是安全通信的圣杯。这可以通过在所谓的量子键分布(QKD)中利用量子机械原理来实现。尤其是基于连贯状态的连续变量(CV)QKD,是一个有吸引力的安全通信方案,因为它仅需要可以在室温下运行的标准电信技术。但是,在状态准备过程中创建的最近发现的侧道通道导致有关传输量子状态的信息泄漏,为窃听者打开了安全漏洞,以损害CVQKD系统的安全性。在这里,我们提出一个CVQKD系统,而没有此调制泄漏漏洞。我们的实现是基于基带调制方法,并使用同相和正交(IQ)调制器进行状态准备和射频频率杂差检测以及精心设计的数字信号处理以进行状态测量。我们考虑实施方面的实际方面,并证明了可抵御集体攻击的可组合秘密密钥安全。这项工作是保护CVQKD系统免受物理设备的实际缺陷和操作局限性而不会降解的一步。

Distributing cryptographic keys over public channels in a way that can provide information-theoretic security is the holy grail for secure communication. This can be achieved by exploiting quantum mechanical principles in so-called quantum key distribution (QKD). Continuous-variable (CV) QKD based on coherent states, in particular, is an attractive scheme for secure communication since it requires only standard telecommunication technology that can operate at room temperature. However, a recently discovered side-channel created in the process of state preparation leads to a leakage of information about the transmitted quantum state, opening a security loophole for eavesdroppers to compromise the security of the CVQKD system. Here, we present a CVQKD system without this modulation leakage vulnerability. Our implementation is based on a baseband modulation approach, and uses an in-phase and quadrature (IQ) modulator for state preparation and radio frequency heterodyne detection together with carefully designed digital signal processing for state measurement. We consider practical aspects in the implementation and demonstrate the generation of a composable secret key secure against collective attacks. This work is a step towards protecting CVQKD systems against practical imperfections of physical devices and operational limitations without performance degradation.

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