基于真空涨落的无偏量子随机数发生器的实验实现

Ziyong Zheng, Yichen Zhang, Song Yu, Hong Guo
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引用次数: 3

摘要

实验证明了一种无偏置光学量子随机数发生器,通过测量量子态的真空涨落直接输出均匀分布随机数。该方案采用了相位调制器,有效降低了由于实际设备不完善而导致的发生器两臂间偏差的影响,是量子随机数发生器领域的创新解决方案。在反馈调制频率比相位抖动快得多的情况下,通过对补偿信号与其平均值进行额外的相减来消除剩余偏差,可以得到无偏的结果。为了消除实际系统中器件不完善所带来的残余侧信息的影响,采用了后续的随机提取器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Implementation of Bias-free Quantum Random Number Generator based on Vacuum Fluctuation
We experimentally demonstrate a bias-free optical quantum random number generator with real-time randomness extraction to directly output uniform distributed random numbers by measuring the vacuum fluctuation of quantum state. A phase modulator is utilized in the scheme to effectively reduce the influence of deviations between two arms of the generator caused by the imperfect practical devices, which is an innovative solution in the field of quantum random number generator. In the case where the feedback modulation frequency is much faster than the phase jitter, an unbiased result can be obtained by an additional subtraction between the compensation signal and its average value to eliminate residual deviation. A following randomness extractor is applied to eliminate the influence of residual side information introduced by the imperfect devices in practical system.
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