量子电子学报 ›› 2024, Vol. 41 ›› Issue (6): 924-932.doi: 10.3969/j.issn.1007-5461.2024.06.009

• 量子光学 • 上一篇    下一篇

一种基于 CMOS 的小型化量子随机数 产生装置

王其兵 1, 王林松 1*, 王雅琦 1, 李 力 2, 许华醒 3,4, 王少华 3,4   

  1. 1 国开启科量子技术 (北京) 有限公司, 北京 100089; 2 中南大学自动化学院, 湖南 长沙 410000; 3 中国电子科技集团有限公司电子科学研究院, 社会安全风险感知与防控大数据应用国家工程研究中心, 北京 100041; 4 中电科电科院科技集团有限公司, 北京 100041
  • 收稿日期:2023-01-13 修回日期:2023-02-15 出版日期:2024-11-28 发布日期:2024-11-28
  • 通讯作者: E-mail: wangls062679@163.com E-mail: E-mail: wangls062679@163.com
  • 作者简介:王其兵 ( 1985 - ), 安徽合肥人, 硕士, 工程师, 主要从事量子随机数发生器、量子密钥分发技术及应用系统、离子阱量子计算机测控系 统相关方面的研究。E-mail: qbwang@qudoor.cn
  • 基金资助:
    国家自然科学基金 (62001440)

A miniaturized quantum random number generator device based on CMOS

WANG Qibing 1 , WANG Linsong1*, WANG Yaqi 1 , LI Li 2 , XU Huaxing3,4 , WANG Shaohua 3,4   

  1. 1 QUDOOR Technologies Inc., Beijing 100089, China; 2 School of Automation, Central South University, Changsha 410000, China; 3 National Engineering Research Center for Risk Perception and Prevention, China Academy of Electronics and Information Technology, Beijing 100041, China; 4 CETC Academy of Electronics and Information Technology Group Co., Ltd., Beijing 100041, China
  • Received:2023-01-13 Revised:2023-02-15 Published:2024-11-28 Online:2024-11-28

摘要: 为满足量子随机数发生器 (QRNG) 的小型化、集成化应用, 设计了一种基于发光二极管 (LED) 光源并结合 互补金属氧化物半导体 (CMOS) 探测的量子随机数发生器。量子随机数是以光量子固有特性确保随机数的高安全 性, 同时其低成本、高速率的处理方式也具有较高的应用价值。但是传统的基于高速模拟数字转换器 (ADC) 采样的 信号处理方法存在成本高、系统复杂、后处理要求高等问题, 并且ADC采样的不完美性还会引入伪随机的特性, 降低 系统的随机数特性, 从而限制了其进一步的商业应用与推广。本文提出的量子随机数发生器基于电压比较二值法, 利用像素间探测电压的随机性, 以CMOS像素点探测输出的电压序列前后脉冲间的电压差值作为随机数熵源, 从而 获得量子随机数序列。该方法具备简单、可靠、易实现的优点, 更利于产品的产业推广。

关键词: 量子光学, 小型化量子随机数发生器, 二值法, 互补金属氧化物半导体

Abstract: To meet the miniaturization and integrated application of quantum random number generator (QRNG), a QRNG based on light emitting diode (LED) light source and complementary metal oxide semiconductor (CMOS) detection is designed. Quantum random numbers ensure the high security of random numbers based on the inherent characteristics of optical quantum, and their low cost and high speed processing methods also have high application value. However, traditional data sampling methods based on high-speed analog-to-digital converter (ADC) have the problems of high cost, complex system, and high post-processing requirements. In addition, the imperfection of ADC sampling also introduces pseudo-random characteristics, reducing the random number characteristics of the system, thus limiting its further commercial application and promotion. In the QRNG proposed in this paper, a binary method based on voltage comparison is proposed, which utilizes the randomness of the detection voltage between pixels, and uses the voltage difference between adjacent pulses in the output voltage sequence detected with CMOS pixels as a random number entropy source to obtain a quantum random number sequence. This method has the advantages of simplicity, reliability and easy realization, which is more conducive to the industrial promotion of products.

Key words: quantum optics, miniaturized quantum random number generator, binary method, complementary metal oxide semiconductor

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