山东大学学报(理学版) ›› 2017, Vol. 52 ›› Issue (11): 44-48.doi: 10.6040/j.issn.1671-9352.0.2017.236
刘鸽1,刘青青2,张建中1
LIU Ge1, LIU Qing-qing2, ZHANG Jian-zhong1
摘要: 通过分析一般的基于John von Neumann随机数提取机制的随机数生成方案,提出了一种改进的有效生成真随机数的方案。此方案只需制备一种单量子态进行测量,应用John von Neumann提取机制对数据做处理,最后得到平衡随机序列。与之前的方案相比,改进后的方案更加简洁,且初始阶段所需粒子由Bell态简化成了单量子态。在对大量随机序列做统计后估算误差,进一步提出了简单的生成非平衡随机数的方法。
中图分类号:
[1] 吴双.量子随机数发生器和量子信息直传方案研究[D].长沙:国防科学技术大学,2006. WU Shuang. A study of quantum random number generator and quantum secure direct communication in a noisy channel[D]. Changsha: National University of Defense Technology, 2006. [2] WAYNE M A, JEFFREY E R, AKSELROD G M, et al. Photon arrival time quantum random number generation[J]. Journal of Modern Optics, 2009, 56(4):516-522. [3] QI B, CHI Y M, LO H K, et al. High-speed quantum random number generation by measuringphase noise of a single-mode later[J]. Optics Letter, 2000, 35(3):312-314. [4] 汪超,黄鹏,黄端,等.基于光放大器的量子随机数发生器[J].密码学报,2014,1(2):180-186. WANG Chao, HUANG Peng, HUANG Duan, et al. Unbiased QRGN based on optical parametric amplifier[J]. Journal of Cryptologic Research, 2014, 1(2):180-186. [5] 王建民,谢天宇,张鸿飞,等.无后处理高速量子随机数产生器设计[J].核电子学与探测技术,2015,35(1):31-35. WANG Jianmin, XIE Tianyu, ZHANG Hongfei, et al. Design of no post-processing high-speed quantum random number generator[J]. Nuclear Electronics and Detection Technology, 2015, 35(1):31-35. [6] 金杰,罗敏,宫月红.一种基于热噪声的真随机数发生器的设计与实现[J].微电子学与计算机,2015,32(10):7-11. JIN Jie, LUO Min, GONG Yuehong. Design and implementation of a true random number generator based on MOSFET thermal noise[J]. Microelectronics and Computer, 2015, 32(10):7-11. [7] NEUMANN J. Various techniques used in connection with random digits[J]. Applied Math Series, 1951. [8] 邓乐,毛敏,张涌,等.应用伪随机序列的量子密码术[J].量子光学学报,1999,5(3):172-176. DENG Le, MAO Min, ZHANG Yong, et al. Quantum cryptography using pseudo-random sequences[J]. Journal of Quantum Optics, 1999, 5(3):172-176. [9] 张仿.随机数在加密技术中的应用分析[J].计算机应用软件,2004,21(12):105-107. ZHANG Fang. Analysis and application of random number in encryption[J]. Computer Applications and Software, 2004, 21(12):105-107. [10] 唐光召.量子随机数发生器的理论与实验研究[D].长沙:国防科学技术大学,2013. TANG Guangzhou. Theoretical and experimental study on quantum random number generation[D]. Changsha: National University of Defense Technology, 2013. [11] 曾贵华.量子密码学[M].北京:科学出版社,2006. ZENG Guihua. Quantum cryptography[M]. Beijing: Science Press, 2006. [12] 许曼莉.量子信息安全中随机源的研究[D].合肥:中国科学技术大学,2015. XU Manli. Research of the random resource on the security of quantum information [D]. Hefei: University of Science and Technology of China, 2015. [13] BENNETT C H, BRASSARD G. Quantum crytography: publick key distribution and cointossing[C] // Proceedings of IEEE Internation Conference on Computers, Systems and Signal Processing. New York: IEEE, 1984, 560:175-179. [14] 胡嘉仲,王向斌.基于诱骗态方法的量子密钥分发[J].中国科学:物理学 力学 天文学, 2011,41(4):459-465. HU Jiazhong, WANG Xiangbin. Quantum key distribution with the decoy-state method[J]. Scienia Sinica(Physica, Mechanica & Astronomica), 2011, 41(4):459-465. |
[1] | 王文华,曹怀信*,李玮. (A,B)-量子测量[J]. J4, 2012, 47(4): 70-76. |
|