One-sided device-independent random number generation through fiber channels

IF 20.6 Q1 OPTICS
Jinfang Zhang, Yi Li, Mengyu Zhao, Dongmei Han, Jun Liu, Meihong Wang, Qihuang Gong, Yu Xiang, Qiongyi He, Xiaolong Su
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引用次数: 0

Abstract

Randomness is an essential resource and plays important roles in various applications ranging from cryptography to simulation of complex systems. Certified randomness from quantum process is ensured to have the element of privacy but usually relies on the device’s behavior. To certify randomness without the characterization for device, it is crucial to realize the one-sided device-independent random number generation based on quantum steering, which guarantees security of randomness and relaxes the demands of one party’s device. Here, we distribute quantum steering between two distant users through a 2 km fiber channel and generate quantum random numbers at the remote station with untrustworthy device. We certify the steering-based randomness by reconstructing covariance matrix of the Gaussian entangled state shared between distant parties. Then, the quantum random numbers with a generation rate of 7.06 Mbits/s are extracted from the measured amplitude quadrature fluctuation of the state owned by the remote party. Our results demonstrate the first realization of steering-based random numbers extraction in a practical fiber channel, which paves the way to the quantum random numbers generation in asymmetric networks.

Abstract Image

单侧设备无关随机数通过光纤通道生成
随机性是一种重要的资源,在从密码学到复杂系统仿真的各种应用中发挥着重要作用。来自量子过程的认证随机性确保具有隐私元素,但通常依赖于设备的行为。为了在不对设备进行表征的情况下证明随机性,关键是实现基于量子导向的与设备无关的单侧随机数生成,既保证了随机性的安全性,又放松了对一方设备的要求。在这里,我们通过2km光纤通道在两个远程用户之间分配量子转向,并在具有不可信设备的远程站生成量子随机数。我们通过重构远端共享的高斯纠缠态的协方差矩阵来证明基于导向的随机性。然后,从远端国有的测量振幅正交涨落中提取产生速率为7.06 Mbits/s的量子随机数。我们的研究结果首次在实际光纤信道中实现了基于转向的随机数提取,为非对称网络中量子随机数的生成铺平了道路。
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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
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2.1 months
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