个人简介
花漫,教授、博士生导师,分别于2016、2021年获武汉大学电波传播与天线专业学士学位、空间物理学博士学位,后赴美国加州大学洛杉矶分校从事博士后工作,2026年入选优秀青年科学基金项目(海外)。主要聚焦地球辐射带电子动力学和内磁层波粒相互作用研究。共发表SCI论文43篇(含Nature Comm.、GRL等第一/通讯作者19篇),其中ESI高被引论文1篇、《中国科学:地球科学》热点论文1篇。论文总引用830余次,H指数17。受邀会议报告9次,获国际地磁学与高空物理学协会青年科学家奖、国际日地物理学科委员会杰出青年科学家奖、UCLA博士后校长奖等;曾主持1项美国NSF项目。
课题项目
美国National Science Foundation / Geospace Environment Modeling (NSF/GEM) Award (项目名称“The Upper Limit of the Earth's Outer Radiation Belt Electron Fluxes”,2023.09 - 2026.08, 曾主持)
国家自然科学面上基金 (项目名称“宇宙线反照中子衰变(CRAND)影响地球内辐射带电子动态分布的建模研究”,2021.01 – 2025.12,参与)。
美国国家航空航天局(NASA),(项目名称“Ensemble Learning for Accurate and Reliable Uncertainty Quantification”,2020.10 – 2024.09,参与)。
论文著作
已发表SCI论文43篇,代表论文如下:
1. Hua, M., Sheng, T.*, Bortnik, J., Ma, D., Wang, Y., Lyons, L. R., et al. (2026). A neural network model of equatorial electric field structures in the inner magnetosphere. Geophysical Research Letters, 53, e2025GL120163. doi:10.1029/2025GL120163
2. Hua, M.*, Shi, X., Bortnik, J., Artemyev, A., Angelopoulos, V., Miyoshi, Y., et al. (2026). The Dominant role of the electron isotropy boundary in controlling Earth's outer radiation belt electron lifetimes. Geophysical Research Letters, 53, e2025GL120881. doi:10.1029/2025GL120881
3. Hua, M.*, Bortnik, J., Shen, Y., Angelopoulos, V., Mei, Y., Li, X., & Wilkins, C. (2026). Combining Van Allen Probes and CubeSat observations to estimate storm-time maximum outer radiation belt electron fluxes. Space Weather, 24, e2025SW004682. doi:10.1029/2025SW004682
4. Hua, M.*, Bortnik, J., Meredith, N. P., & Cayton, T. E. (2026). Estimating storm-time maximum fluxes of outer radiation belt electrons: Combining Van Allen Probes and GPS satellite observations. Journal of Geophysical Research: Space Physics, 131, e2025JA034644. doi:10.1029/2025JA034644
5. Hua, M.*, & Bortnik, J. (2025). Radiation belt electron acceleration inside the plasmasphere. Geophysical Research Letters. 52, e2024GL113502. doi:10.1029/2024GL113502
6. Hua, M.*, & Bortnik, J. (2024). Upper limit of outer belt electron acceleration and their controlling geomagnetic conditions: A comparison of storm and non-storm events. Geophysical Research Letters, 51, e2024GL109612. doi:10.1029/2024GL109612
7. Hua, M.*, Bortnik, J., & Ma, D. (2024). Machine-learning based identification of the critical driving factors controlling storm-time outer radiation belt electron flux dropouts. Geophysical Research Letters, 51, e2024GL108268. doi:10.1029/2024GL108268
8. Hua, M.*, Bortnik, J., & Ma, D. (2023). Dependence of electron flux dropouts in the Earth's outer radiation belt on energy and driving parameters during geomagnetic storms. Journal of Geophysical Research: Space Physics, 128, e2023JA031882. doi:10.1029/2023JA031882
9. Hua, M.*, Bortnik, J., Spence, H. E., & Reeves, G. D. (2023). Testing the key processes that accelerate outer radiation belt relativistic electrons during geomagnetic storms. Frontiers in Astronomy and Space Science, 10:1168636. doi:10.3389/fspas.2023.1168636
10. Hua, M.*, Bortnik, J., Kellerman, A. C., Camporeale, E., & Ma, Q. (2023). Ensemble Modeling of Radiation Belt Electron Acceleration by Chorus Waves: Dependence on Key Input Parameters. Space Weather. 21, e2022SW003234. doi:10.1029/2022SW003234
11. Hua, M.*, Bortnik, J., Chu, X., Aryan, H., & Ma, Q. (2022). Unraveling the Critical Geomagnetic Conditions Controlling the Upper Limit of Electron Fluxes in the Earth's Outer Radiation Belt. Geophysical Research Letters, 49, e2022GL101096. doi:10.1029/2022GL101096
12. Hua, M.*, Bortnik, J., & Ma, Q. (2022). Upper Limit of Outer Radiation Belt Electron Acceleration Driven by Whistler-Mode Chorus Waves. Geophysical Research Letters, 49, e2022GL099618. doi:10.1029/2022GL099618
13. Hua, M.*, Bortnik, J., Kellerman, A. C., Camporeale, E., & Ma, Q. (2022). Ensemble Modeling of Radiation Belt Electron Flux Decay Following a Geomagnetic Storm: Dependence on Key Input Parameters. Space Weather, 20, e2022SW003051. doi:10.1029/2022SW003051
14. Hua, M.*, Bortnik, J., Ma, Q., & Bernhardt, P. A. (2022). Radiation Belt Electron Acceleration Driven by Very-Low-Frequency Transmitter Waves in Near-Earth Space. Geophysical Research Letters, 49, e2022GL099258. doi:10.1029/2022GL099258
15. Hua, M., Ni, B.*, Li, W., Ma, Q., Gu, X., Fu, S., et al. (2021). Statistical distribution of bifurcation of Earth's inner energetic electron belt at tens of keV. Geophysical Research Letters, 48, e2020GL091242. doi:10.1029/2020GL091242
16. Hua, M., Li, W.*, Ni, B.* et al. (2020). Very-Low-Frequency transmitters bifurcate energetic electron belt in near-earth space. Nature Communications, 11, 4847. doi:10.1038/s41467-020-18545-y
17. Hua, M., Li, W.*, Ma, Q., Ni, B., Nishimura, Y., Shen, X.‐C., & Li, H. (2019). Modeling the Electron Flux Enhancement and Butterfly Pitch Angle Distributions on L shells < 2.5. Geophysical Research Letters, 46, 10967–10976. doi:10.1029/2019GL084822
18. Hua, M., Ni, B.*, Li, W., Gu, X., Fu, S., Shi, R., et al. (2019). Evolution of radiation belt electron pitch angle distribution due to combined scattering by plasmaspheric hiss and magnetosonic waves. Geophysical Research Letters, 46(6), 3033–3042. doi:10.1029/2018GL081828 (ESI高被引文章)
19. Hua, M., Ni, B.*, Fu, S., Gu, X., Xiang, Z., Cao, X., et al. (2018). Combined Scattering of Outer Radiation Belt Electrons by Simultaneously Occurring Chorus, Exohiss, and Magnetosonic Waves. Geophysical Research Letters, 45(19), 10,057–10,067. doi:10.1029/2018GL079533
20. Meredith, N. P.*, Bortnik, J., Hua, M., Cayton, T. E., Clilverd, M. A., Daggitt, T. A., & Bunting, K. A. (2025). Solar wind and geomagnetic conditions that lead to the largest relativistic electron fluxes in GPS orbit. Space Weather, 23, e2025SW004633. doi:10.1029/2025SW004633
21. Ma, D.*, Bortnik, J., Ma, Q., Hua, M., & Chu, X. (2024). Simulating the Earth’s outer radiation belt electron fluxes and their upper limit: A unified physics-based model driven by the AL Index. Geophysical Research Letters, doi:10.1029/2024GL109169
22. Ma, D.*, Bortnik, J., Ma, Q., Hua, M., & Chu, X. (2024). Machine Learning Interpretability of Outer Radiation Belt Enhancement and Depletion Events. Geophysical Research Letters, 51, e2023GL106049, doi:10.1029/2023GL106049
23. Troyer, R. N.*, Jaynes, A. N., Hartley, D. P., Meredith, N. P., Hua, M., Bortnik, J. (2024). Substorm Driven Chorus Waves: Decay Timescales and Implications for Pulsating Aurora. Journal of Geophysical Research: Space Physics, 129, e2023JA031883. doi:10.1029/2023JA031883
24. Kim, H. J.*, Noh, S. J., Lee, D. Y., Lyons, L., Bortnik, J., Nagai, T., Choe, W., & Hua, M. (2023). Can strong substorm-associated MeV electron injections be an important cause of large radiation belt enhancements? Frontiers in Astronomy and Space Sciences, 10. doi:10.3389/fspas.2023.1128923
学术任职
Physical Review Letters, Space Weather, Geophysical Research Letters, Journal of Geophysical Research: Space Physics, Earth, Planets and Space等杂志审稿人
Geospace Environment Modeling (GEM) 关于“Radiation Belts as a System of Systems”重点研究专题的联合主席(2025 – 2029)
美国National Science Foundation (NSF), National Aeronautics and Space Administration (NASA) 基金评审人
2025 AGU Fall Meeting关于“Radiation Belt Dynamics: Wave-Particle Interactions and Radiation Belt Modeling” (SM13C, SM14B, SM21B)会议专题组联合主席
荣誉奖励
2024年 The Scientific Committee on Solar-Terrestrial Physics (SCOSTEP) Distinguished Young Scientist Award
2022年 UCLA Chancellor’s Award for Postdoctoral Research
2022年 2022年中国地球物理学会杰出博士学位论文奖 (第1名)
2021年 International Association of Geomagnetism and Aeronomy (IAGA) Early Career Award
2020年 Excellent Poster Presentation Award (EPPA) in the 9th VERSIM Workshop (第1名)
2020年 中国地球科学联合学术年会学生优秀论文奖
2019年 Outstanding Student Presentation Award (OSPA) in the 2019 AGU Fall Meeting
2016年 第十届全国空间天气学研讨会优秀青年论文奖
招生培养
欢迎有意向攻读空间物理学、地球物理学专业的硕士、博士和博士后,对理论研究、数据分析和机器学习感兴趣,以及有意向出国深造的同学跟我联系!