张帅
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  • 电子邮箱:004001@nuist.edu.cn
  • 入职时间:2025-05-09
  • 所在单位:大气物理学院
  • 学历:博士研究生毕业
  • 性别:
  • 学位:理学博士学位
  • 在职信息:在岗
  • 个人简介
  • 研究方向
  • 社会兼职
  • 教育经历
  • 工作经历
  • 团队成员
  • 其他联系方式

欢迎加入临近空间环境特性与效应全国重点实验室

教育经历:

2015-09 至 2021-12, 山东大学, 空间科学与物理学院地球物理学, 博士

2019-11 至 2020-10, 伦敦大学学院, 穆拉德空间科学实验室, 空间物理学, 联合培养博士生

2010-09 至 2014-06, 山东大学, 空间科学与物理学院应用物理学, 学士

工作经历:

2022-02 至 2024-06南方科技大学

2024-06 至 2025-05, 中国极地研究中心(中国极地研究所)

研究方向

空间物理,空间天气,深空探测太阳风-磁层-电离层-大气耦合日球层边界区域研究

主持项目

国家自然科学基金青年科学基金项目, 42404166, 等离子体层羽状结构对磁层超低频波动的影响, 2025-01,30万元主持

上海市“超级博士后”激励计划,空间等离子体波动对极区电离层、中高层大气的影响,2024-09,60万元,主持

中国博士后科学基金第73批面上资助, 2023M731505, 地球辐射带中波动的时空尺度及其决定因素, 2023-06, 8万元主持

一作/通讯文章

  1. Zhang, S., Liu, K. J., Shi, Q. Q., Tian, A. M., Yao, F. (2024). The Shape of the Heliosphere Derived from the IBEX Ribbon. The Astrophysical Journal Letters. https://doi.org/10.3847/2041-8213/ad992a.

  2. Lu, Z. Y., Li, J. C., Zhang, S., Degeling, A. W., Shen C., Dong J. Q., Shi, Q. Q.,  Tian, A. M. (2024). Statistical Properties of Pc4-5 ULF Waves in Plasmaspheric Plumes. Geophysical Research Letters, 51. e2023GL107514https://doi.org/10.1029/2023GL107514.

  3. Zhang, S., Rae, I. J., Liu, K. J., Watt, C. E. J., Tian, A. M., Shi, Q. Q., et al. (2024). Effects of Plasma Density on the Spatial and Temporal Scale Sizes of Plasmaspheric Hiss. Journal of Geophysical Research: Space Physics. https://doi.org/10.1029/2023JA031955.

  4. Zhang, S., Rae, I. J., Watt, C. E. J., Degeling, A. W., Tian, A. M., Shi, Q. Q., et al. (2021). Determining the global scale size of chorus waves in the magnetosphere. Journal of Geophysical Research: Space Physics. https://doi.org/10.1029/2021JA029569.

  5. Zhang, S., Rae, I. J., Watt, C. E. J., Degeling, A. W., Tian, A. M., Shi, Q. Q., et al. (2021). Determining the temporal and spatial coherence of plasmaspheric hiss waves in the magnetosphere. Journal of Geophysical Research: Space Physics, 126. https://doi.org/10.1029/2020JA028635.

  6. Zhang, S., Tian, A. M., Degeling, A. W., Shi, Q. Q., Wang, M. M., Hao, Y. X., et al. (2019). Pc4‐5 Poloidal ULF Wave Observed in the Dawnside Plasmaspheric Plume. Journal of Geophysical Research: Space Physics, 124. https://doi.org/10.1029/2019JA027319

  7. Zhang, S., Tian, A. M., Shi, Q. Q., Li, H. L., Degeling, A. W., Rae, I. J., et al. (2018). Statistical study of ULF waves in the magnetotail by THEMIS observations. Annales Geophysicae, 36, 1335-1346. https://doi.org/10.5194/angeo-36-1335-2018.

  8. Zhang, S., Tian, A. M., Shi, Q. Q., Sun, W.J., Yao, Z. H., & Fu, S. Y., Zong, Q. G., Pu, Z. Y. (2016). A statistical study of the plasma sheet in the near and middle earth magnetotail. Chinese Journal of Geophysics, 59(1), 1-8. https://doi.org/10.1002/cjg2.20207.

  9. 张帅, 田安民, 史全岐, 孙为杰, 尧中华, 傅绥燕, 宗秋刚, 濮祖荫. 2016. 中近磁尾等离子体片统计特性研究. 地球物理学报,59(2), 411-418. https://doi.org/10.6038/cjg20160201.

合作文章

  1. Zhou,Y. J., He, Fei., Shi, Q. Q., Zhang, S., et al. (2025). Penetration of Plasmapause Surface Waves Into the Plasmaspheric Plume. Journal of Geophysical Research: Space Physics. https://doi.org/10.1029/2024JA033690.

  2. Zhou, J. Y., Liu, K. J., Jarvinen, R., ..., Zhang, S., et al. (2024). Hybrid Simulations of the Martian Magnetotail Twist. The Astrophysical Journal.https://doi.org/10.3847/1538-4357/ad8159.

  3. Wang, M. M., Liu, T., Zhang, H., ...., Zhang, S., et al. (2024). Statistical Analysis of Whistler Precursors Upstream of Foreshock Transient Shocks: MMS Observations. Geophysical Research Letters. https://doi.org/10.1029/2023GL105617.

  4. Bai, S. C., Shi, Q. Q., Shen, X. C, ...., Zhang, S., et al. (2024). Whistler-mode Waves inside Short Large-Amplitude Magnetic Field Structures: Characteristics and Generation Mechanisms. Journal of Geophysical Research: Space Physics. https://doi.org/10.1029/2023JA032392.

  5. Bai, S. C., Shi, Q. Q., Zhang, H., ...., Zhang, S., et al. (2023). Electron Dynamics and Whistler‐Mode Waves Inside the Short Large‐Amplitude Magnetic Field Structures. Journal of Geophysical Research: Space Physics, 128, e2023JA031816. https://doi.org/10.1029/2023JA031816.

  6. Yao, F., Liu, K. J., Yu, X. D., Wang, Y., Xiong, Y., Zhang S. (2023). Scattering of Radiation Belt Electrons by Fast Magnetosonic Waves: Considering the Kinetic Effects. Geophysical Research Letters, 50, e2023GL103292. https://doi.org/10.1029/2023GL103292.

  7. Watt C. E. J., Allison H. J., Bentley S. N., ...., Zhang S., et al. (2022). Temporal variability of quasi-linear pitch-angle diffusion. Front. Astron. Space Sci. 9:1004634. https://doi.org/10.3389/fspas.2022.1004634.

  8. Yao, S. T., Shi, Q. Q., Zong, Q. G., ...., Zhang, S., et al. (2021). Low-frequency Whistler Waves Modulate Electrons and Generate Higher-frequency Whistler Waves in the Solar Wind. The Astrophysical Journal. https://doi.org/10.3847/1538-4357/ac2e97.

  9. Zhu, X. Q., Wang M. M., Shi, Q. Q., …., Zhang, S., et al. (2021). Motion of classic and spontaneous hot flow anomalies observed by Cluster. Journal of Geophysical Research: Space Physics. https://doi.org/10.1029/2021JA029418.

  10. Ma, X., Tian, A. M., Shi, Q. Q., …., Zhang, S., et al. (2021). Electron pitch angle distributions in compressional Pc5 waves by THEMIS-A observations. Geophysical Research Letters. https://doi.org/10.1029/2021GL095730.

  11. Zhu, Y.-F., Gu, S.-J., Zhou, X.-Z., ...., Zhang, S., et al. (2020). Drift-bounce resonance between charged particles and ultralow frequency waves: Theory and observations. Journal of Geophysical Research: Space Physics, 125, e2019JA027067. https://doi.org/10.1029/2019JA027067.

  12. Wang, M. M., Yao, S. T., Shi, Q. Q., ...., Zhang, S., et al. (2018). Propagation properties of foreshock cavitons: cluster observations. Science China Technological Sciences, 63. https://doi.org/10.1007/s11431-018-9450-3.

  13. Tian, A. M., Shi, Q. Q., Degeling, A., ...., Zhang, S. (2018). Analytical model test of methods to find the geometry and velocity of magnetic structures, Sci China Tech. Sci. https://doi.org/10.1007/s11431-018-9350-1.

  14. Bai, S. C., Shi, Q. Q., Tian, A. M., and Zhang, S. (2018). Cold-dense Plasma Sheet and Its Impact on the Spatial Distributions of the Magnetotail Plasma Sheet, Chinese Journal of Space Science, 38(4): 444-451. https://doi.org/10.11728/cjss2018.04.444.

  15. Zhao, S. Q., Tian, A. M., Shi, Q. Q., ...., Zhang, S., et al. (2016). Statistical study of magnetotail flux ropes near the lunar orbit. Sci China Tech Sci, 59: 1-6. https://doi.org/10.1007/s11431-015-0962-3.

参加会议

2024.08 2024中国极地科学学术年会,太原

2023.08 行星科学一级学科建设专题研讨会,威海

2023.04 第二十届全国日地空间物理学研讨会,福州

2023.03 第五届青年行星论坛,三亚

2021.04 第十九届全国日地空间物理学研讨会,海口

2021.04 欧洲地球物理学会(EGU)2021 年度年会,线上

2020.12 美国地球物理学会(AGU)2020 年度年会,线上

2020.05 欧洲地球物理学会(EGU)2020 年度年会,线上

2020.01 磁层、电离层和日地耦合(MIST)第 2 次会议,英国伦敦

2019.08 “空间物理关键区域耦合过程” 2019 年度研讨会,威海

2019.07 第十六届亚洲大洋洲地球科学(AOGS)年会,新加坡

2019.05 第十八届全国日地空间物理学研讨会,西宁

2018.12 美国地球物理学会(AGU)2018 年度年会,美国华盛顿

2018.08 “空间物理关键区域耦合过程” 2018 年度研讨会,威海

2018.05 国际空间科学研讨会(ISSI),北京

2017.08 “空间物理关键区域耦合过程” 2017 年度研讨会,威海

2017.08 第四届全球华人空间天气科学大会,北京

2017.05 第十七届全国日地空间物理学研讨会,青岛

2016.12 美国地球物理学会(AGU)2016 年度年会,美国旧金山

2016.10 第十届空间天气会议,武汉

2016.09 第十二届海峡两岸空间/太空科学双边研讨会,昆明

2016.07 第十三届亚洲大洋洲地球科学(AOGS)年会,北京

2015.06 第十四届国际太阳风大会,威海

2015.06 第十六届全国日地空间物理学研讨会,长沙