• Chinese Journal of Lasers
  • Vol. 49, Issue 4, 0406001 (2022)
Chaoren Wu1、2, Hua Gao1、2, Longsheng Wang1、2、*, Yuanyuan Guo1、2, Anbang Wang1、2, and Yuncai Wang1、2
Author Affiliations
  • 1Key Laboratory of Advanced Transducers & Intelligent Control System, Ministry of Education, Taiyuan University of Technology, Taiyuan, Shanxi 030024, China
  • 2College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan, Shanxi 030024, China
  • show less
    DOI: 10.3788/CJL202249.0406001 Cite this Article Set citation alerts
    Chaoren Wu, Hua Gao, Longsheng Wang, Yuanyuan Guo, Anbang Wang, Yuncai Wang. High-Speed Secure Key Distribution Based on Symmetric Phase-Shift-Keying Chaos Synchronization[J]. Chinese Journal of Lasers, 2022, 49(4): 0406001 Copy Citation Text show less
    Schematic of proposed key distribution scheme
    Fig. 1. Schematic of proposed key distribution scheme
    Time series, RF spectra, and cross correlation curve of chaotic driving signal before and after passing through the M-Z interferometer. (a)(c) Time series; (b)(d) RF spectra; (e) cross correlation curve
    Fig. 2. Time series, RF spectra, and cross correlation curve of chaotic driving signal before and after passing through the M-Z interferometer. (a)(c) Time series; (b)(d) RF spectra; (e) cross correlation curve
    Time series and cross correlation curves with and without M-Z interferometer under Kj=0.2. (a) Time series of DFB-D and DFB-A with or without M-Z interferometer; (b) cross correlation curve of chaotic signals from DFB-D and DFB-A without M-Z interferometer; (c) cross correlation curve of chaotic signals from DFB-D and DFB-A with M-Z interferometer
    Fig. 3. Time series and cross correlation curves with and without M-Z interferometer under Kj=0.2. (a) Time series of DFB-D and DFB-A with or without M-Z interferometer; (b) cross correlation curve of chaotic signals from DFB-D and DFB-A without M-Z interferometer; (c) cross correlation curve of chaotic signals from DFB-D and DFB-A with M-Z interferometer
    Time series and scatter plots of DFB-A and DFB-B. (a)(b) Phase difference Δϕ=0; (c)(d) phase difference Δϕ=π
    Fig. 4. Time series and scatter plots of DFB-A and DFB-B. (a)(b) Phase difference Δϕ=0; (c)(d) phase difference Δϕ=π
    Phase-shift-keying code and short-time cross correlation curve between DFB-A and DFB-B. (a) Phase-shift-keying code; (b) short-time cross correlation curve
    Fig. 5. Phase-shift-keying code and short-time cross correlation curve between DFB-A and DFB-B. (a) Phase-shift-keying code; (b) short-time cross correlation curve
    Probability distribution of chaos synchronization recovery time
    Fig. 6. Probability distribution of chaos synchronization recovery time
    Influence of parameter mismatch on chaos synchronization and bit error rate (BER). Influence of phase parameter mismatch on (a) chaotic synchronization and (b) BER; (c) influence of intrinsic parameter mismatch on chaotic synchronization; influence of intrinsic parameter mismatch on BER under (d) R=1.0, (e) R=0.5, and (f) R=0.2
    Fig. 7. Influence of parameter mismatch on chaos synchronization and bit error rate (BER). Influence of phase parameter mismatch on (a) chaotic synchronization and (b) BER; (c) influence of intrinsic parameter mismatch on chaotic synchronization; influence of intrinsic parameter mismatch on BER under (d) R=1.0, (e) R=0.5, and (f) R=0.2
    BER as a function of retained ratio when eavesdropper intercepts and quantizes the chaotic drive signal from key distribution system with and without M-Z interferometer
    Fig. 8. BER as a function of retained ratio when eavesdropper intercepts and quantizes the chaotic drive signal from key distribution system with and without M-Z interferometer
    Chaoren Wu, Hua Gao, Longsheng Wang, Yuanyuan Guo, Anbang Wang, Yuncai Wang. High-Speed Secure Key Distribution Based on Symmetric Phase-Shift-Keying Chaos Synchronization[J]. Chinese Journal of Lasers, 2022, 49(4): 0406001
    Download Citation