WU Zhichao

Editor:李洁Date:2023-09-22ClickTimes:


WU Zhichao

Sex: Male     Date of birth: August 1992

Nationality: Han     Degree: PhD

Graduated from: Huazhong University of Science and Technology   Title: Associate professor

Political status: CPC member   Email: wuzhichao@cug.edu.cn

Office: Room 609, No. 2 Teaching Building

Main experiences:

2019.7-present: associate professor at the School of Mechanical Engineering and Electronic Information, China University of Geosciences

2017.12-2018.12: Joint Training PhD at Optoelectronics Research Centre, the University of Southampton

2015.9-2016.3: exchange student at the School of Electrical and Electronic Engineering, Nanyang Technological University

2014.9-2019.6: PhD at the School of Optical and Electronic Information, Huazhong University of Science and Technology

2010.9-2014.6: Bachelor at the School of Optical and Electronic Information, Huazhong University of Science and Technology

Research fields:

1. Development and application of ultrafast fiber laser

2. Dynamic characterization of solitons in optical fiber resonators

3. Linear optical sampling high-speed signal analysis equipment

Scientific research programs:

1. University-enterprise collaboration program: “Picosecond fiber laser pulse full-field information characterization system”, PI

2. Wuhan knowledge innovation special project: “Ultrafast pulse characterization based on linear optical sampling and nonlinear Fourier transforms”, PI

3. Youth Program of National Natural Science Foundation of China: “Research on key technologies of tunable fiber dual comb for polarization multiplexing”, PI

4. University-enterprise collaboration program: “New ultrafast laser pulse measurement technology”, PI

5. Youth Program of National Natural Science Foundation of Hubei Province: “Research on the polarization characteristics of soliton scalar vector in all polarization maintaining fiber resonator”, PI

6. Open Fund of Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology: “Study on the generation and regulation mechanism of polarization multiplexed cavity solitons”, participant

7. Program supported by the Fundamental Research Funds for the Central Universities, PI

8. National major scientific instrument and equipment development program: “Development of core components for coherence detection and all-optical sampling”, participant

Admission information:

3-5 postgraduates are admitted every year. Welcome the undergraduates and postgraduates who are good at thinking independently and love scientific research, with reading and writing skills in English, programming ability and experimental ability, and knowledge in electronic engineering, optical engineering, physics, mathematics and other related science and engineering disciplines.

Patents:

1. Wu Zhichao, Li Jingwen, Huang Tianye, Pan Jianxing, Xu Zhaoyu. A device and method for measuring and characterizing soliton pulses based on linear optical sampling

2. Wu Zhichao, Zeng Jia, Huang Tianye. Higher order vector soliton generation system and method based on passive resonant cavity

3. Wu Zhichao, Yan Pan, Huang Tianye. A bidirectional mode-locked fiber laser for generating a double optical comb

4. Wu Zhichao, Hua Shuhao, Huang Tianye. A vector soliton laser

5. Huang Tianye, Xiao Pan, Wang Yong, Pan Jianxing, Wu Zhichao et al. A dual optical frequency comb generation system and method based on a fiber ring resonant cavity

6. Huang Tianye, Wu Zhichao, Wei Qian. A polarization locked vector soliton all polarization-maintaining fiber laser

7. Huang Tianye, Wu Zhichao, Wei Qian. A mode-locked fiber laser with adjustable number of solitons

8. Huang Tianye, Wu Zhichao, Wei Qian. A device and method for homologous double optical comb generation

Publications (as first author or corresponding author):

1. Jing Zhang, Chen Wang, Yunkang Chen, Yudiao Xiang, Tianye Huang, Perry Ping Shum, Zhichao Wu*. Fiber structures and material science in optical fiber magnetic field sensors. Frontiers of Optoelectronics, 2022, 15: 34

2. Zhe Yu, Zhichao Wu*, Yutian Wang, Huan He, Jingwen Li, Chaoyu Xu, Tianye Huang, Deming Liu, Luming Zhao, Yuwen Qin, Songnian Fu. Linear optical sampling enabled soliton nonlinear frequency spectrum classification. Optics Express, 2022, 30(18): 32381-32390

3. Jia Zeng, Dan Luo, Chaoyu Xu, Jianxing Pan, Zhichao Wu*, Tianye Huang. Numerical investigation of extra-cavity vector soliton molecules manipulation. Laser Physics, 2022, 32: 085102

4. Zhichao Wu, Shuhao Hua, Chaoyu Xu, Yuzhen Zhao, Jianxing Pan, Dan Luo, Jing Zhang, Tianye Huang. Extra-cavity manipulation from traditional scalar to flexible vector solitons, Journal of the Optical Society of America B, 2022, 39(8): 2181-2185

5. Zhichao Wu, Jia Zeng, Jianxing Pan, Chaoyu Xu, Dan Luo, Jing Zhang, Tianye Huang. Vector Soliton Molecules Manipulation Using Projected Super-Position Technique. IEEE Photonics Technology Letters, 2022, 34(2): 105-108

6. Yifeng Xiao, Shi He, Mo Li, Weiguo Sun, Zhichao Wu*, Wei Dai, Cheng Lu. Structural evolution and phase transition mechanism of MoSe2 under high pressure. Scientific Reports, 2021, 11: 22090

7. Jianxing Pan, Tianye Huang, Yutian Wang, Zhichao Wu*, Jing Zhang, Luming Zhao. Numerical investigations of cavity soliton distillation in Kerr resonators using the nonlinear Fourier transform. Physical Review A, 2021, 104: 043507

8. Gangshun Zhang, Tianye Huang, Zhichao Wu*, Xin Tu, Xiangli Zhang, Dapeng Luo, Rongrong Lei, Guizhen Xu, Wang Zhang. Design of an on-chip sensor operating near the dispersion turning point with ultrahigh sensitivity. Journal of the Optical Society of America B, 2021, 38(9): 2786-2791

9. Chaoyu Xu, Tianye Huang, Zhichao Wu*, Lei Han, Jing Zhang, Dianhong Wang. L-band compact Q-switched fiber laser based on a thulium-doped fiber saturable absorber. Applied Optics, 2021, 60(23): 6843-6848

10. Zhichao Wu, Bingye Zhan, Lu Li, Tianye Huang, Qian Wei, Dazhong Zhang, Perry Ping Shum. Vector soliton generation from a compact all-polarization-maintaining fiber laser. Laser Physics Letters, 2021, 18(2): 025103

11. Zhichao Wu, Qian Wei, Bingye Zhan, Tianye Huang, Ming Zhu, Lu Li, Perry Ping Shum. Manipulation of soliton bunches generated from a polarization-route-assisted vector fiber laser. Photonics Journal, 2021, 13(1): 1501108

12. Qian Wei, Beibei Yu, Tianye Huang, Zhichao Wu*, Pan Huang, Jianxing Pan, Perry Ping Shum. Mid-infrared high repetition mode-locked laser based on cross-band all-optical injection modulation. Laser Physics Letters, 2020, 17(6): 065101

13. Zhichao Wu, Qian Wei, Pan Huang, Songnian Fu, Deming Liu, Tianye Huang. Nonlinear polarization evolution mode-locked YDFL based on all-PM fiber cavity. Photonics Journal, 2020, 12(2): 1501807

14. Zhichao Wu, Qian Wei, Pan Huang, Dapeng Luo, Xiangli Zhang, Songnian Fu, Luming Zhao, Deming Liu, Ping Shum, Tianye Huang. Single-axis soliton molecule and multiple solitons generation from a vector fiber laser. Optics Express, 2020, 28(4):5212-5220

15. Tianye Huang, Dazhong Zhang, Seongwoo Yoo, Qian Wei, Raghuraman Sidharthan, Zhichao Wu*, Bin Yan, Chaolong Song, Zhuo Cheng. Reconfigurable multiwavelength fiber laser based on multimode interference in highly germanium-doped fiber. Applied Optics, 2020, 59(4):1163-1168

16. Zuying Xu, Zhichao Wu*, Songnian Fu, Ming Tang, Tianye Huang, Deming Liu. Peak-power-clamping in an all-polarization-maintaining Q-switched mode-locking fiber laser. Optics Express, 2019, 27(26):37614-37621

17. Zhichao Wu, Songnian Fu, Kai Jiang, Jue Song, Ming Tang, Ping Shum and Deming Liu. Switchable thulium-doped fiber laser from polarization rotation vector to scalar soliton. Scientific Reports, 2016, 6: 34844

18. Zhichao Wu, Deming Liu, Lei Li, Ming Tang, Songnian Fu, Luming Zhao. Scalar-vector soliton fiber laser mode-locked by nonlinear polarization rotation. Optics Express, 2016, 24(16): 18764-18771

19. Zhichao Wu, Songnian Fu, Changxiu Chen, Ming Tang, Ping Shum and Deming Liu. Dual-state dissipative soliton from an all-normal-dispersion Erbium-doped fiber laser: continuous wavelength tuning and multi-wavelength emission. Optics Letters, 2015, 40(12): 2684-2687