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Provably secure and high-rate quantum key distribution with time-bin qudits

机译:带有时限qudits的安全可靠且高速率的量子密钥分发

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摘要

The security of conventional cryptography systems is threatened in the forthcoming era of quantum computers. Quantum key distribution (QKD) features fundamentally proven security and offers a promising option for quantum-proof cryptography solution. Although prototype QKD systems over optical fiber have been demonstrated over the years, the key generation rates remain several orders of magnitude lower than current classical communication systems. In an effort toward a commercially viable QKD system with improved key generation rates, we developed a discrete-variable QKD system based on time-bin quantum photonic states that can generate provably secure cryptographic keys at megabit-per-second rates over metropolitan distances. We use high-dimensional quantum states that transmit more than one secret bit per received photon, alleviating detector saturation effects in the superconducting nanowire single-photon detectors used in our system that feature very high detection efficiency (of more than 70%) and low timing jitter (of less than 40 ps). Our system is constructed using commercial off-the-shelf components, and the adopted protocol can be readily extended to free-space quantum channels. The security analysis adopted to distill the keys ensures that the demonstrated protocol is robust against coherent attacks, finite-size effects, and a broad class of experimental imperfections identified in our system.
机译:在即将到来的量子计算机时代,传统密码系统的安全受到威胁。量子密钥分发(QKD)具有经过基本验证的安全性,并为量子防伪密码解决方案提供了有希望的选择。尽管多年来已经证明了基于光纤的QKD原型系统,但是密钥生成速率仍然比当前的经典通信系统低几个数量级。为了开发一种具有提高的密钥生成率的商业上可行的QKD系统,我们开发了基于时分量子光子状态的离散变量QKD系统,该系统可以在大城市范围内以每秒兆位的速率生成可证明的安全密钥。我们使用高维量子态,每个接收的光子传输一个以上的秘密比特,从而减轻了系统中使用的超导纳米线单光子探测器的探测器饱和效应,该探测器具有很高的探测效率(超过70%)和低时序抖动(小于40 ps)。我们的系统使用现成的商用组件构建,采用的协议可以轻松扩展到自由空间量子通道。提取密钥所采用的安全性分析可确保所证明的协议具有较强的鲁棒性,可抵抗相干攻击,有限大小的影响以及在我们的系统中发现的各种实验缺陷。

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