Stable High-Speed Encryption Key Distribution via Synchronization of Chaotic Optoelectronic Oscillators
暂无分享,去创建一个
Ann Dooms | Guy Verschaffelt | Guy Van der Sande | Guy Van der Sande | Fabian Böhm | Fabian Bohm | Sevada Sahakian
[1] James F Buckwalter,et al. Forward bias operation of silicon photonic Mach Zehnder modulators for RF applications. , 2017, Optics express.
[2] Edward Ott,et al. Complex dynamics and synchronization of delayed-feedback nonlinear oscillators , 2009, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[3] Guang Gong,et al. XOR Encryption Versus Phase Encryption, an In-Depth Analysis , 2015, IEEE Transactions on Electromagnetic Compatibility.
[4] Damien Rontani,et al. Common-signal-induced synchronization in photonic integrated circuits and its application to secure key distribution. , 2017, Optics express.
[5] G. S. Vernam,et al. Cipher Printing Telegraph Systems For Secret Wire and Radio Telegraphic Communications , 1926, Transactions of the American Institute of Electrical Engineers.
[6] Laurent Larger,et al. Optoelectronic oscillators with time-delayed feedback , 2019, Reviews of Modern Physics.
[7] Kun Qiu,et al. Secure key distribution based on chaos synchronization of VCSELs subject to symmetric random-polarization optical injection. , 2017, Optics letters.
[8] Atsushi Uchida,et al. Synchronization by injection of common chaotic signal in semiconductor lasers with optical feedback. , 2009, Optics express.
[9] Laurent Larger,et al. Chaos-based communications at high bit rates using commercial fibre-optic links , 2005, Nature.
[10] Lei Zhang,et al. Ultrafast physical random bit generation from a chaotic oscillator with a silicon modulator. , 2018, Optics letters.
[11] Lars Keuninckx,et al. Encryption key distribution via chaos synchronization , 2017, Scientific Reports.
[12] Jun Muramatsu,et al. Information-theoretic secure key distribution based on common random-signal induced synchronization in unidirectionally-coupled cascades of semiconductor lasers. , 2013, Optics express.
[13] K. Alan Shore,et al. Physics and applications of laser diode chaos , 2015 .
[14] Laurent Larger,et al. Complexity in electro-optic delay dynamics: modelling, design and applications , 2013, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[15] Wei Pan,et al. Fast physical and pseudo random number generation based on a nonlinear optoelectronic oscillator , 2015 .
[16] Takeshi Koshiba,et al. Physical implementation of oblivious transfer using optical correlated randomness , 2017, Scientific Reports.
[17] A. Uchida,et al. Fast physical random bit generation with chaotic semiconductor lasers , 2008 .
[18] Romain Modeste Nguimdo,et al. Digital key for chaos communication performing time delay concealment. , 2011, Physical review letters.
[19] Jun Muramatsu,et al. Secure key distribution using correlated randomness in lasers driven by common random light. , 2012, Physical review letters.
[20] Claude E. Shannon,et al. Communication theory of secrecy systems , 1949, Bell Syst. Tech. J..
[21] Romain Modeste Nguimdo,et al. Fast random bits generation based on a single chaotic semiconductor ring laser. , 2012, Optics express.