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并行实时量子随机数生成器。

Parallel real-time quantum random number generator.

出版信息

Opt Lett. 2019 Nov 15;44(22):5566-5569. doi: 10.1364/OL.44.005566.

Abstract

The quantum random number generation exploits inherent randomness of quantum mechanical processes and measurements. The real-time generation rate of quantum random numbers is usually limited by electronic bandwidth and data processing rates. Here we use a multiplexing scheme to create a fast real-time quantum random number generator based on continuous variable vacuum fluctuations. Multiple sideband frequency modes of a quantum vacuum state within a homodyne detection bandwidth are concurrently extracted as the randomness source. Parallel postprocessing of raw data from three subentropy sources is realized in one field-programmable gate array (FPGA) based on Toeplitz-hashing extractors. A cumulative generation rate of 8.25 Gbps in real time is achieved. The system relies on optoelectronic components and circuits that could be integrated in a compact, economical package.

摘要

量子随机数生成利用了量子力学过程和测量固有的随机性。量子随机数的实时生成速率通常受到电子带宽和数据处理速率的限制。在这里,我们使用复用方案基于连续变量真空涨落创建了一个快速实时量子随机数生成器。在同相检测带宽内的量子真空态的多个边带频率模式被同时提取作为随机性源。来自三个子熵源的原始数据的并行后处理在基于 Toeplitz 哈希提取器的一个现场可编程门阵列 (FPGA) 中实现。实时实现的累积生成速率为 8.25 Gbps。该系统依赖于光电组件和电路,这些组件和电路可以集成在一个紧凑、经济的封装中。

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