Dr. ZHANG Honghui

Publications

Dr. ZHANG Honghui
Title:

Lecturer

Education Background:
Ph.D. The Chinese University of Hong Kong
B.E. Huazhong University of Science and Technology (with distinction in Optoelectronic Engineering)
Phone

+86 0755 23516652

Teaching Area

GE Foundation-Nature; GE Areas-Area B

Research

Optical communication system, optical signal processing, nonlinear fiber optics.

PublicationsInfo

C. Shu, Y. Zhang, and H. Zhang, “Cross Phase Modulation in an SOI Waveguide for Programmable Optical Frequency Comb Generation,” Proc. 2021 Photonics Switch. Comput., Tu4C.1.

Y. Zhang, H. Zhang, and C. Shu, “Magnification of Slow Light Delay Using Four-Wave Mixing Interferometer on a Silicon Chip,” in OSA Nonlinear Optics 2021, NTu1B.4.

H. Zhang, Q. Zhang, and C. Shu. “Carrier Enhancement for Multichannel Kramers–Kronig Detection via Self-Seeded Brillouin Amplification.” OFC 2021, F1B.3.

H. Zhang, Q. Zhang, Q. Xie, and C. Shu. “Enhanced CSPR for multichannel Kramers-Kronig receiver by self-seeded stimulated Brillouin scattering.” Opt. Lett., 46 (3), 661-664, 2021.

H. Zhang, Q. Xie, Q. Zhang, and C. Shu. “One-to-Sixteen Wavelength Multicast of Optical Single-Sideband OFDM Signals Using a Single Pulsed Pump.” IEEE J. Sel. Top. Quantum Electron., 27 (2), 1-6, 2020.

H. Zhang, Q. Xie, and C. Shu. “Cross-Phase Modulation Based Wavelength Multicasting Using a Single High-Repetition-Rate Pulsed Pump Generated from the Temporal Talbot Effect.” CLEO 2020, JTu2E.6.

H. Zhang, Q. Zhang, C. Huang, and C. Shu. “Transmission Impairment Mitigation for Single-Sideband Signals by Optical Phase Conjugation.” IEEE Photon. Technol. Lett., 32 (3), 150-153, 2019.

H. Zhang, Q. Zhang, C. Huang, and C. Shu. “Optical Phase Conjugation Enhanced Direct Detection with Kramers-Kronig Receiver.” in OFC 2019, pp. 1-3.

Q. Xie, H. Zhang, and C. Shu. “Programmable Schemes on Temporal Waveform Processing of Optical Pulse Trains.” J. Light. Technol., 38 (2), 339-345, 2019.

C. Shu, Q. Xie, and H. Zhang., “Fiber-based Temporal Waveform Processor Enabled by Discrete Fourier Transform of Fractional-Rate Modulated Optical Pulse Train.” in MWP 2019, pp. 1-2.

Publications

10
Total