• Chinese Optics Letters
  • Vol. 23, Issue 3, 030602 (2025)
Yaya Mao1,2,3, Bo Liu1,2,3,*, Jingrui Huang4, Jianxin Ren1,2,3..., Shuaidong Chen1,2,3, Xiangyu Wu1,2,3, Yongfeng Wu1,2,3, Xiumin Song1,2,3, Zhipeng Qi1,2,3 and Jie Cui1,2,3|Show fewer author(s)
Author Affiliations
  • 1Institute of Optics and Electronics, Nanjing University of Information Science & Technology, Nanjing 210044, China
  • 2Jiangsu Key Laboratory for Optoelectronic Detection of Atmosphere and Ocean, Nanjing University of Information Science & Technology, Nanjing 210044, China
  • 3Jiangsu International Joint Laboratory on Meteorological Photonics and Optoelectronic Detection, Nanjing University of Information Science & Technology, Nanjing 210044, China
  • 4School of Computer Science and Technology, Tongji University, Shanghai 201804, China
  • show less
    DOI: 10.3788/COL202523.030602 Cite this Article Set citation alerts
    Yaya Mao, Bo Liu, Jingrui Huang, Jianxin Ren, Shuaidong Chen, Xiangyu Wu, Yongfeng Wu, Xiumin Song, Zhipeng Qi, Jie Cui, "Three-dimensional dynamic probabilistic shaping high-security transmission scheme based on dual physical layer encryption for seven-core fibers," Chin. Opt. Lett. 23, 030602 (2025) Copy Citation Text show less
    System algorithm block diagram.
    Fig. 1. System algorithm block diagram.
    Attractor diagram of the new five-dimensional entangled chaotic system.
    Fig. 2. Attractor diagram of the new five-dimensional entangled chaotic system.
    Schematic diagram of dynamic probabilistic shaping.
    Fig. 3. Schematic diagram of dynamic probabilistic shaping.
    Fourth-order Rubik’s cube encryption concept diagram.
    Fig. 4. Fourth-order Rubik’s cube encryption concept diagram.
    Rubik’s cube encryption example diagram.
    Fig. 5. Rubik’s cube encryption example diagram.
    Experimental setup. DSP, digital signal process; AWG, arbitrary waveform generator; MZM, Mach–Zehnder modulator; EDFA, erbium-doped fiber amplifier; PS, power splitter; DL, delay line; VOA, variable optical attenuator; PD, photodiode; MSO, mixed-signal oscilloscope; OLT, optical line terminal; ONU, optical network unit.
    Fig. 6. Experimental setup. DSP, digital signal process; AWG, arbitrary waveform generator; MZM, Mach–Zehnder modulator; EDFA, erbium-doped fiber amplifier; PS, power splitter; DL, delay line; VOA, variable optical attenuator; PD, photodiode; MSO, mixed-signal oscilloscope; OLT, optical line terminal; ONU, optical network unit.
    BER performance of DPS-CAP signals in 7-core fiber.
    Fig. 7. BER performance of DPS-CAP signals in 7-core fiber.
    BER curves of encrypted DPS-3D-CAP and encrypted 3D-CAP in 7-core fiber at the same bit rate.
    Fig. 8. BER curves of encrypted DPS-3D-CAP and encrypted 3D-CAP in 7-core fiber at the same bit rate.
    BER measurements with a tiny change in initial value.
    Fig. 9. BER measurements with a tiny change in initial value.
    Yaya Mao, Bo Liu, Jingrui Huang, Jianxin Ren, Shuaidong Chen, Xiangyu Wu, Yongfeng Wu, Xiumin Song, Zhipeng Qi, Jie Cui, "Three-dimensional dynamic probabilistic shaping high-security transmission scheme based on dual physical layer encryption for seven-core fibers," Chin. Opt. Lett. 23, 030602 (2025)
    Download Citation