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In this paper, chaotic light generated by semiconductor laser with optical feedback is employed as physical entropy source to generate high-speed random sequence. The relationship between autocorrelation coefficient of chaotic signal and run number of random sequence is analyzed. Based on the analysis, the changes of random sequence run number are further investigated at different ratios between laser relaxation oscillation frequency fr and random sequence generation rate fn. The results show that random sequence run can easily meet the requirement for run test of NIST SP800-22 when the ratio between fr and fn satisfies the equation of fr/fn=(2k+1)/4. When k in the equation is equal to 1, the maximal rate fn=4fr/3 of random sequence is obtained.
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Keywords:
- chaos light /
- random number generator /
- relaxation oscillation frequency /
- random sequence's runs
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[15] Kanter I, Aviad Y, Reidler I, Cohen E, Resenbluh M 2010 Nat. Photon. 4 58
[16] Hirano K, Yamazaki T, Morikatsu S, Okumura H, Aida H, Uchida A, Yoshimori S, Yoshimura K, Harayama T, Davis P 2010 Opt. Express 18 5512
[17] Li P, Wang Y C, Zhang J Z 2010 Opt. Express 18 20360
[18] Harayama T, Sunada S, Yoshimura K, Davis P, Tsuzuki K, Uchida A 2011 Phys. Rev. A 83 031803
[19] Hirano K, Amano K, Uchida A, Naito S, Inoue M, Yoshimori S, Yoshimura K, Davis P 2009 IEEE J. Quantum Electron. 45 1367
[20] NIST Special Publication 800-22, http: / / csrc. nist. gov/groups/ST /toolkit/rng/documentation_software. html, 2001
[21] Jiang J P 2000 Semiconductor Laser 1 (Beijing : Publishing House of Electronics Industry) p112—114 (in Chinese) [江剑平 2000 半导体激光器 第一版 (北京: 电子工业出版社) 第112—114页]
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[1] Lei X J, Liu G B 2010 Study On Optical Communications 162 64 (in Chinese) [雷雄俊, 刘光斌 2010 光通信研究 162 64]
[2] Su G P 2002 Ph. D. Dissertation (Beijing: Graduate University of Chinese Academy of Sciences) (in Chinese) [苏桂平 2002 博士学位论文 (北京: 中国科学院研究生院)]
[3] Xin Q, Zeng X Y, Zhang G Q, Guo Y W 2004 Microelectronics & Computer 21 143 (in Chinese) [辛茜, 曾晓洋, 张国权, 郭亚炜 2004 微电子学与计算机 21 143]
[4] Bucci M, Germani L, Luzzi R, Trifiletti A, Varanonuovo M 2003 IEEE Trans. Computers 52 403
[5] Qi B, Chi Y M, Lo H K, Qian L 2010 Opt. Lett. 35 312
[6] Wang A B, Wang Y C, Wang J F 2009 Opt. Lett. 34 1144
[7] Wang Y C, Zhang G W, Wang A B, Wang B J, Li Y L, Guo P 2007 Acta Phys. Sin. 56 4372 (in Chinese) [王云才, 张耕玮, 王安帮, 王冰洁, 李艳丽, 郭萍 2007 56 372]
[8] Argyris A, Hamacher M, Chlouverakis K E, Bogris A, Syvridis D 2008 Phys. Rev. Lett. 100 194101
[9] Wang Y C, Tang J H, Zhang M J Chinese Patent ZL 200710062140.1 2007 (in Chinese) [王云才, 汤君华, 张明江 中国发明专利 ZL200710062140.1 2007]
[10] Zhang Y Y, Zhang J Z, Zhang M J, Wang Y C 2011 Chinese Optics Letters 9 031404
[11] Chen S S, Zhang J Z, Yang L Z, Liang J S, Wang Y C 2011 Acta Phys. Sin. 60 010501 (in Chinese) [陈莎莎, 张建忠, 杨玲珍, 梁君生, 王云才 2011 59 010501]
[12] Zhang J B, Zhang J Z, Yang Y B, Liang J S, Wang Y C 2010 Acta Phys. Sin. 59 7679 (in Chinese) [张继兵, 张建忠, 杨毅彪, 梁君生, 王云才 2010 59 7679]
[13] Uchida A, Amano K, Inoue M, Hirano K, Natio S, Someya H, Owada I, Kurashige T, Shiki M, Yoshimori S, Yoshimura K, Davis P 2008 Nat. Photon. 2 728
[14] Reidler I, Avaid Y, Rosenbuuh M, Kanter I 2009 Phys. Rev. Lett. 103 024102
[15] Kanter I, Aviad Y, Reidler I, Cohen E, Resenbluh M 2010 Nat. Photon. 4 58
[16] Hirano K, Yamazaki T, Morikatsu S, Okumura H, Aida H, Uchida A, Yoshimori S, Yoshimura K, Harayama T, Davis P 2010 Opt. Express 18 5512
[17] Li P, Wang Y C, Zhang J Z 2010 Opt. Express 18 20360
[18] Harayama T, Sunada S, Yoshimura K, Davis P, Tsuzuki K, Uchida A 2011 Phys. Rev. A 83 031803
[19] Hirano K, Amano K, Uchida A, Naito S, Inoue M, Yoshimori S, Yoshimura K, Davis P 2009 IEEE J. Quantum Electron. 45 1367
[20] NIST Special Publication 800-22, http: / / csrc. nist. gov/groups/ST /toolkit/rng/documentation_software. html, 2001
[21] Jiang J P 2000 Semiconductor Laser 1 (Beijing : Publishing House of Electronics Industry) p112—114 (in Chinese) [江剑平 2000 半导体激光器 第一版 (北京: 电子工业出版社) 第112—114页]
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