何兆国
教授
Department: 月球与行星科学国家重点实验室
Office: A505
E-mail: zghe@must.edu.mo
Academic Qualification

PHD: National Space Science Center, CAS,Space Physics

BSc & MSc: Changsha University of Science and Technology, Physics


Teaching Area

Introduction to Space Weather

Magnetospheric Physics

Research Area

Space Weather

Magnetospheric Physics

Lunar Space Environment

Working Experience

2024.01-至今 澳门科技大学月球与行星科学国家重点实验室 副教授

2018.10-2024.01 中山大学大气科学学院  副教授

2016.09-2017.12 美国德克萨斯大学达拉斯分校物理系 访问学者

2015.08-2018.10 哈尔滨工业大学(深圳)机电学院 博士后


Academic Publication (selected)

1. Deng Z, He Z.*, et al., A parametric study on how lightning-generated whistler waves propagate up into the magnetosphere (2026). Earth and Planetary Physics, 10(4), 1-9.

2. Ding X, He Z.*, et al., Modeling the Leakage of Hiss Waves from the Plasmasphere (2026). Journal of Geophysical Research: Space Physics, 10.1029/2026JA035081.

3. Zhang S,  He, Z.* (2026). First Observation of a Distinct Spatial Asymmetry of Magnetospheric Kilometric Continuum Radiation from Van Allen Probes. Journal of Geophysical Research: Space Physics, 10.1029/2026JA035097.

4. Ding X, Wu Z*, He Z.*, et al., The global propagation of hiss waves originating from dynamic plasmaspheric plume. (2025). Geophysical Research Letters, https://doi.org/10.1029/2025GL119873.

5. Chen Z, Su Z*He Z.*, et al., Electromagnetic ion cyclotron waves in a magnetic reconnection exhaust at Earth's magnetopause (2025). Geophysical Research Letters, e2025GL116561.

6. He Z., Yu J, et al., Latitudinal distribution and propagation of lightning-generated whistler: a statistical study by Van Allen Probes observation and ray-tracing simulation (2025). Sci. China Earth Sci., https://doi.org/10.1007/s11430 024-1535-5.

7. Yan Q, He Z.*, et al., Contribution of Substorm-injected Electrons to the High-Frequency Plasmaspheric Hiss Generation: A Statistical Study by Van Allan Probes (2025). Geophysical Research Letters, e2024GL113866.

8. Ding X, He Z.*, et al., Radial and latitudinal distributions of the Exohiss under the effect of Landau damping (2024). Geophysical Research Letters, 10.1029/2024GL112567.

9. Yang C, Yue J, Yang H, He Z.*, et al. Contribution of EMIC and chorus waves to the formation of the three-belt of ultra-relativistic electrons (2024). Journal of Geophysical Research: Space Physics, https://doi.org/10.1029/2024JA033380. 

10. Li Z, He Z.*, et al., Simulations on Levitation and Spatial Distribution of Charged Dust on the Moon Surface (2024). The Planetary Science Journal, 2024, 5(7): 156.

11. Yu J, Ren A, He Z.*, et al., Resonant Interactions Between Relativistic Electrons and EMIC Waves Modified by Partial Shell Proton Velocity Distributions (2024), Journal of Geophysical Research: Space Physics, doi: 10.1029/2023JA032355.

12. Yu J, Wang J, He Z.*, Chen Z, Li L, Cui J and Cao J (2023), Electron diffusion by chorus waves: effects of latitude dependent wave power spectrum. Front. Astron. Space Sci. 10:1333184. doi: 10.3389/fspas.2023.1333184. 

13. Wu, Z., Su, Z.*, He, Z.*, Zheng, H., Wang, Y. (2022). Magnetosonic waves above the lower hybrid frequency in cyclotron resonance with the Van Allen radiation belt electrons. Geophysical Research Letters, e2022GL100971.

14. Wu, Z., Su, Z.*, Goldstein, J., Liu, N., He, Z.*, Zheng, H., & Wang, Y. (2022). Nightside plasmaspheric plume‐to‐core migration of whistler‐mode hiss waves. Geophysical Research Letters, e2022GL100306.

15. Chen, Z., Su, Z.*, He, Z.*, Wu, Z., Dai, G., Wang, B., ... & Wang, Y. (2022). A rapid localized deceleration of Earth’s radiation belt relativistic electrons driven by storm proton injection. Geophysical Research Letters, e2022GL098810. 

16. Yu, J., Wang, J., He, Z.*, Liu, N., Li, K., Ren, A., ... & Cao, J. (2022). Combined Scattering of Suprathermal Electrons by Whistler‐Mode Chorus and Electromagnetic Ion Cyclotron Waves in the Low‐Density Plasmatrough. Journal of Geophysical Research: Space Physics, 127(8), e2022JA030640.

17. Yang, C., Wang, Z., Xiao, F.*, He, Z.*, Xie, Y., Zhang, S., ... & Zhou, Q. (2022). Correlated observations linking loss of energetic protons to EMIC waves. Science China Technological Sciences, 65(1), 131-138. 

18. He, Z., Yu, J., Li, K., Liu, N., Chen, Z., & Cui, J. (2021). A comparative study on the distributions of incoherent and coherent plasmaspheric hiss. Geophysical Research Letters, 48(7), e2021GL092902.

19. He, J., Jin, Y., Xiao, F.*, He, Z.*, Yang, C., Xie, Y., ... & Zhang, S. (2021). The influence of various frequency chorus waves on electron dynamics in radiation belts. Science China Technological Sciences, 64(4), 890-897.

20. He, Z., Yu, J., Chen, L., Xia, Z., Wang, W., Li, K., & Cui, J. (2020). Statistical study on locally generated high‐frequency plasmaspheric hiss and its effect on suprathermal electrons: Van Allen Probes observation and quasi‐linear simulation. Journal of Geophysical Research: Space Physics, 125(10), e2020JA028526.

21. He, Z., Yan, Q., Zhang, X., Yu, J., Ma, Y., Cao, Y., & Cui, J. (2020). Precipitation loss of radiation belt electrons by two‐band plasmaspheric hiss waves. Journal of Geophysical Research: Space Physics, 125(10), e2020JA028157.

22. He, Z., Chen, L., Liu, X., Zhu, H., Liu, S., Gao, Z., & Cao, Y. (2019). Local generation of high‐frequency plasmaspheric hiss observed by Van Allen Probes. Geophysical Research Letters, 46(3), 1141-1148.

23. He, Z., Yan, Q., Ma, Y., & Cao, Y. (2018). Precipitation loss of Van Allen radiation belt electrons by hiss waves outside the plasmasphere. Astrophysics and Space Science, 363(4), 1-6.

24. He, Z., Chen, L., Zhu, H., Xia, Z., Reeves, G. D., Xiong, Y., ... & Cao, Y. (2017). Multiple‐satellite observation of magnetic dip event during the substorm on 10 October 2013. Geophysical Research Letters, 44(18), 9167-9175.

25. He, Z., Yan, Q., Chu, Y., & Cao, Y. (2016). Wave‐driven gradual loss of energetic electrons in the slot region. Journal of Geophysical Research: Space Physics, 121(9), 8614-8623. 

26. He, Z., Zong, Q., Liu, S., Wang, Y., Lin, R., & Shi, L. (2014). Frequency sweep rates of rising tone electromagnetic ion cyclotron waves: Comparison between nonlinear theory and Cluster observation. Physics of Plasmas, 21(12), 122309.

27. He, Z., Zhu, H., Liu, S., Zong, Q., Wang, Y., Lin, R., ... & Gong, J. (2015). Correlated observations and simulations on the buildup of radiation belt electron fluxes driven by substorm injections and chorus waves. Astrophysics and Space Science, 355(2), 245-251.

28. He, Z., Xiao, F., Zong, Q., Wang, Y., Chen, L., Yue, C., & Zhang, S. (2011). Multi-satellite observations on the storm-time enhancements of energetic outer zone electron fluxes driven by chorus waves. Science China Technological Sciences, 54(8), 2209-2216.

29. Wang, X., Cui, J., He, Z.*, Gu, H., Yi, S., & Wu, X. (2026). Thermal Effects of Acoustic-gravity Waves in Titan’s Upper Atmosphere and Their Implications for Atmospheric Jeans Escape. The Astrophysical Journal, 998(2), 265.

30. Wang, X., Cui, J., He, Z.*, Gu, H., Yi, S. and Wu, X., 2026. Effects of Acoustic-gravity Waves on the Total Electron Content of the Martian Ionosphere. Monthly Notices of the Royal Astronomical Society, p.stag606. 

31. 何兆国,俞江,丁香玲,陈祖政,刘倪纲,叶雨光,崔峻,宗秋刚.2025.闪电哨声波的纬向分布和传播:基于范艾伦探测器观测的统计和射线追踪模拟研究.中国科学:地球科学,55(4):1338–1345,doi:10.1360/N072024-0271. 

32.何兆国 . 2011.多卫星联合观测磁暴时合声波驱动的外辐射带高能电子通量的增强. 中国科学:技术科学, 54: 2209-2216, doi: 10.1007/s11431-011-4445-6.


Books
Patents
Professional Certification and Awards
Professional Society Membership

中国空间科学学会青年委员